Skip to main content
Log in

Bibliography section

  • Published:
Journal of Radioanalytical Chemistry Aims and scope Submit manuscript

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Activation analysis

  • Abu-Samra, A., McKown, D. M., Vogt, J. R., Guthrie, R., England, J. (Univ. of Missouri, Columbia): Determination of chromium levels in blood sera by activation analysis. Trans. Amer. Nucl. Soc. 15 (1972) No. 1, 151–2. 18th Annual American Nuclear Society Conference, Las Vegas, Nev., 18 June, 1972. CONF-720607, see also Nucl. Sci. Abstr. 26 (1972) No. 42703.

    Google Scholar 

  • Adams, F., Maenhaut, W., Hoste, J. (Ghent Univ., Ghent, Belgium): Instrumental neutron activation analysis of germanium. Anal. Chim. Acta 61 (1972) 127–31, see also Nucl. Sci. Abstr. 26 (1972) No. 45218.

    Article  CAS  Google Scholar 

  • Agard, E. T. (Univ. of Toronto, Toronto, Canada): In-vivo neutron activation analysis and associated dosimetry. Thesis, 1971, see also Nucl. Sci. Abstr. 26 (1972) No. 47680.

  • Albert, Ph. (CNRS, Vitry-sur-Seine, France): Activation analysis with thermal neutrons. Modern Analytical Techniques for Metals and Alloys, Pt. 2. Bunshah, R.F. (Ed.) Wiley, New York, 1970, 687–754, see also Nucl. Sci. Abstr. 26 (1972) No. 45208.

    Google Scholar 

  • Albert, Ph. (CNRS, Vitry-sur-Seine, France): General conclusions on the methods of activation analysis. Modern Analytical Techniques for Metals and Alloys, Pt. 2. Bunshah, R. F. (Ed.) Wiley, New York, 1970, 881–4, see also Nucl. Sci. Abstr. 26 (1972) No. 45212.

    Google Scholar 

  • Andreev, A. V., Barit, I. Ya., Duev, L. T., Evdokimov, Yu. B., Ivanov, N. F., Katsaurov, L. N., Kuznetsov, A. N. Pronman, I. M., Solnyshkov, A. I., Tarvid, G. S., Tsepakin, S. G., Yakshin, K. V.: Neutron generator NG-150 for activation analysis. Prirody i Tekhn. Eksp. No. 5 (1972) 262–3 (in Russian), see also Ref. Zh. Khim. 6 (1973) No. D 32.

    Google Scholar 

  • Anon. (Inst. Geol. i Geofiz. Akad. Nauk SSSR, Sib. Otd. USSR): Nuclear-geophysical methods, (Sb. Yaderno-geofiz. metody) Nauka, Novosibirsk, 1972, 384 p. (in Russian), see also Ref. Zh. Khim. 4 (1973) No. G 162.

  • Anon.: Nuclear physical methods for elemental analysis and geophysical assay. (Tr. VNII yader. geofiz. i geokhimii, vyp. 13) Nedra, Moskva, 1972, 97 p. (in Russian), see also Ref. Zh. Khim. 1 (1973) No. G. 98.

  • Anon.: Stable cesium analysis by neutron activation of plants from the Nevada test site. 1972. TID-25954, 373–5, see also Nucl. Sci. Abstr. 26 (1972) No. 45192.

  • Anovski, T., Memedovic, T., Rastvovac, M., (Boris Kidric Inst. of Nucl. Sci., Vinca, Belgrade, Yugoslavia): Determination of certain elements in human serum albumin by neutron activation analysis. J. Radioanal. Chem. 12 (1972) 483–89.

    Article  CAS  Google Scholar 

  • Bankert, S. F., Sauter, G. D., Bloom, S. D. (Inst. Elec. Electron Eng., Univ. of California, Davis): Charged particle activation analysis for trace impurities in water. Trans. Nucl. Sci. NS-19 (1972) 191–3. From Nuclear Science Symp. San. Francisco, California, 3 Nov. 1971. CONF-711111, see also Nucl. Sci. Abstr. 26 (1972) No. 42710.

    CAS  Google Scholar 

  • Becker, D. A. (National Bureau of Standards, Washington, D.C., USA): Trace analysis for platinum in glasses by neutron activation. Anal. Chim. Acta 61 (1972) 1–6, see also Nucl. Sci. Abstr. 26 (1972) No. 45217.

    Article  CAS  Google Scholar 

  • Bennett, T., Cavers, D., D'Auria, J. M. (Simon Fraser Univ., Burnaby, British Columbia): Fast neutron activation analysis high resolution gamma spectroscopy. J. Radioanal. Chem. 13 (1973) 201–212.

    Article  CAS  Google Scholar 

  • Berzin, A. K., Khrynin, B. A., Yakovlev, B. M.: Determination of beryllium in beryllium ore samples by the photoneutron methods. Sb. Yaderno-geofiz. metody, Nauka, Novosibirsk, 1972, 162–6 (in Russian), see also Ref. Zh. Khim. 6 (1973) No. G 124.

    Google Scholar 

  • Bishay, T. Z. (Scottish Res. Reactor Centre, East Kilbride, Glasgow, Scotland): Purity control of aluminium metal. J. Radioanal. Chem. 13 (1973) 87–105.

    Article  CAS  Google Scholar 

  • Blankov, E. B., Blankova, T. H., Rusyaev, V. G., Yakubson, K. I. M.: Neutron activation analysis in geology and geophysics, Nauka, Moskva, 1972, 328 p. (in Russian), see also Ref. Zh. Khim. 24 (1972) No. G 115.

    Google Scholar 

  • Blankova, T. N., Rusyaev, V. G., Bochkarev, B. N.: Activation analysis of oil for vanadium. Sb. Yaderno-geofiz. metody, Nauka, Novosibirsk, 1972, 181–4 (in Russian), see also Ref. Zh. Khim. 6 (1973) No. G 128.

    Google Scholar 

  • Blankova, T. H., Rusyaev, V. G.: Possibility of the activation analysis of vanadium in the presence of aluminium. Sb. Yaderno-geofiz. metody, Nauka, Novosibirsk, 1972, 184–9 (in Russian), see also Ref. Zh. Khim. 6 (1973) No. G. 113.

    Google Scholar 

  • Bornemisza-Pauspertl, A.: Possibility for the nondestructive analysis of plant samples through the fast neutron activation method. ATOMKI Közlem. 13 (1971) 173–80, see also Nucl. Sci. Abstr. 26 (1972) No. 46675.

    CAS  Google Scholar 

  • Brune, D.: Fast neutrons in chemical analysis. Kem. tijdskr. 84 (1972) No. 7-8, 36–38, 41 (in Swedish), see also Ref. Zh. Khim. 2 (1973) No. G 55.

    Google Scholar 

  • Brune, D., Lorenzen, J., Witalis, E. (Aktiebolaget Atomenergi, Studsvik, Sweden): Depth distribution studies of carbon in steel surfaces by means of charged particle activation analysis with an account of heat and diffusion effects in the sample. AE-451, 1972, 47 p., see also Nucl. Sci. Abstr. 26 (1972) No. 45466.

  • Brunfelt, A. O., Steinnes, E. (Mineralogical-Geological Museum, Univ. of Oslo, Norway, Inst. for Atomenergi, Isotope Labs., Kjeller, Norway): Determination of rare earths in silicate rocks by epithermal neutron activation and a simple group separation J. Radioanal. Chem. 13 (1973) 11–20.

    Article  CAS  Google Scholar 

  • Bujdosó, E., Fehér, I., Kardos, G.: Activation and decay tables of radioisotopes. Akadémiai Kiadó, The Publishing House of the Hungarian Academy of Sciences, Budapest; Elsevier, Amsterdam, 1973, 575 p.

    Google Scholar 

  • Bunus, F. T., Murgalescu, S. (Inst. of Atomic Phys., Bucharest, Romania): Determination of inorganic impurities in vinyl chloride by activation analysis. Talanta 19 (1972) No. 3, 327–7, see also Nucl. Sci. Abstr. 26 (1972) No. 45204.

    Article  Google Scholar 

  • Burton, T. D., Swindle, D. L., Schweikert, E. A. (Center for Trace Characterization, Dept. of Chem., Texas A and M Univ. College Station, Texas, USA): A nondestructive proton activation method for determination of sulfur: application to petroleum products. Radiochem. Radioanal. Letters 13 (1973) 191–98.

    CAS  Google Scholar 

  • Carpenter, B. S., LaFleur, P. D., (National Bureau of Standards, Washington, D. C., USA): Nitrogen determination in biological samples using the nuclear track technique. Trans. Amer. Nucl. Soc. 15 (1972) 118 p., 18th Annual American Nuclear Society, Conf. Las Vegas, Nev., 18 June 1972. CONF-720607, see also Nucl. Sci. Abstr. 26 (1972) No. 42726.

  • Chattopadhyay, A., Benett, L. G. I., Jervis, R. E. (Univ, of Toronto, Canada): Activation analysis of environmental pollutants. Can. J. Chem. Eng. 50 (1972) 189–93, see also Nucl. Sci. Abstr. 26 (1972) No. 45198.

    Article  CAS  Google Scholar 

  • Chiba, M., Inoue, Y., Tajiri, Y. (National Res. Inst. for Metals, Tokyo, Japan): Determination of silicon dioxide in iron and steel-making slags and fluorspars by 14 MeV neutron activation and high-resolution gamma-ray spectrometry. J. Radioanal. Chem. 12 (1972) 519–28.

    Article  CAS  Google Scholar 

  • Coote, G. E., Whitehead, N. E., McCallum, G. J. (Inst. of Nuclear Sci. Dept. of Sci. and Industrial Res., Lower Hutt, New Zealand): A rapid method of obsidian characterisation by inelastic scattering of protons. J. Radioanal. Chem. 12 (1972) 491–96.

    Article  CAS  Google Scholar 

  • Dams, R., Rahn, K. A., Robbins, J. A., Nifong, G. D., Winchester, J. W. (Inst. of Nucl. Res., Ghent, Belgium): Multielement analysis of air pollution particulates by nondestructive neutron activation. Proc. of the Second International Clean Air Congress, Englund, H. M., (Ed.) New York, Acad. Press. Inc., 1971, 509–16 p. CONF-701-229, see also Nucl. Sci. Abstr. 26 (1972) No. 45207.

    Google Scholar 

  • Desai, H. B., Iyer, R. K., (Anal. Chem. Div., Bhabha Atomic Res. Center, Modular Labs., Trombay, Bombay, India): A simple method of neutron-flux normalisation for large sized samples: determination of parts per billion levels of copper in distilled water by neutron activation analysis. Radiochem. Radioanal. Letters 13 (1973) 75–81.

    CAS  Google Scholar 

  • De Soete, D., Gijbels, R., Hoste, J.: Neutron activation analysis, Wiley-Interscience, London, 1972, 836 p., see also Ref. Zh. Khim. 1 (1973) No. G 34.

    Google Scholar 

  • Dombrovski, C. S., Wallach, S., Shukla, K. K., Cohn, S. H., (Brookhaven National Lab., Upton, N. Y., USA): Radioisotope determination of whole-body magnesium by in vivo neutron activation. BNL-16919, 1971, 17 p. CONF-710553-1. From first Intern. Symp. on Magnesium Deficit in Human Pathology. Vittel, France, 9 May, 1972., see also Nucl. Sci. Abstr. 26 (1972) No. 47655.

  • Engelmann, Ch. (CEN de Saclay, Gifsur-Yvette, France): Activation analysis with gamma rays and charged particles. Modern Analytical Techniques for Metals and Alloys, Pt. 2. Bunshah, R. F. (Ed.), Wiley, New York, 1970, 777–865, see also Nucl. Sci. Abstr. 26 (1972) No. 45210.

    Google Scholar 

  • Filatova, T. P., Viktorov, B. V., Chernova, M. A., Yarmarkin, V. K.: Determination of the impurities in tantalum of high purity by neutron activation, Elektron. tekhnika. Nauchn.-tekhn. Sb. Radiodetali 1 (1972) No. 26, 55–8 (in Russian), see also Ref. Zh. Khim. 1 (1973). No. G 128.

    Google Scholar 

  • Foti, S., Delucchi, E., Akamian, V. (Naval Ordnance Lab., White Oak, Md., USA): Determination of picogram amounts of99Tc by neutron activation analysis. Anal. Chim. Acta 60 (1972) 261–8, see also Nucl. Sci. Abstr. 26 (1972) No. 47673.

    Article  CAS  Google Scholar 

  • Foti, S., Delucchi, E., Akamian, V. (Naval Ordnance Lab., White Oak, Md., USA): Determination of picogram amounts of technetium in environmental samples by neutron activation analysis. Anal. Chim. Acta. 60 (1972) 269–76, see also Nucl. Sci. Abstr. 26 (1972) No. 47674.

    Article  CAS  Google Scholar 

  • Friedmann, M. H., Tanner, J. T., Miller, E. (Food and Drug Administration, Washington, D.C., USA): Rapid instrumental analysis for mercury in biological materials by neutron activation. Trans. Amer. Nucl. Soc. 15 (1972) No. 1, 150–1. 18th Annual American Nuclear Society Conf. Las Vegas. Nev., 18 June, 1972. CONF-720607, see also Nucl. Sci. Abstr. 26 (1972) No. 42702.

    Google Scholar 

  • Godha, Sh. (Kinki Univ., Osaka, Japan): Activation analysis of arsenic, copper, and antimony in sea water. Bull. Chem. Soc. Japan 45 (1972) 1704–8, see also Nucl. Sci. Abstr. 26 (1972) No. 47669.

    Article  Google Scholar 

  • Goeiy, J. J. M. De., Houtman, J. P. W., Tjioe, P. S., Koeman, J. H. (Interuniv. Reactor Inst., Delft, The Netherlands): Mercury distribution levels observed in various ecosystems as determined by neutron activation analysis. IRI-133-72-4, 1971, 27 p., see also Nucl. Sci. Abstr. 26 (1972) No. 47657.

  • Görner, W., Förster, H. (Zentralinst. für Kernforschung Rossendorf; VEB Mansfeld Kombinat W. Pieck, Forschungszentrum, Forschungsinst. für NE-Metalle, Freiberg, DDR): Nondestructive determination of rhodium in platinum by epithermal reactor neutron activation analysis. J. Radioanal. Chem. 12 (1972) 497–504.

    Article  Google Scholar 

  • Gray, D., Kay, M., Vogt, J. R., Luckey, T. D. (Univ. of Missouri, Columbia): Activation analyses of stable elements used as nutritional markers. Trans. Amer. Nucl. Soc. 15 (1972) No. 1, 149, 18th Annual American Nuclear Society Conf. Las Vegas, Nev., 18 June, 1972, CONF-720607, see also Nucl. Sci. Abstr. 26 (1972) No. 42700.

    Google Scholar 

  • Gray, D., McKown, D. M., Kay, M., Eichor, M., Vogt, J. R., (Inst. Elec. Electron. Eng., Univ. of Missouri, Colubmia, USA): Determination of trace-element levels in atmospheric pollutants by instrumental neutron activation analysis. Trans. Nucl. Sci. NS-19 (1972) 194–8. From Nuclear Science Symp. San Francisco, California, 3 Nov. 1971. CONF-711111, see also Nucl. Sci. Abstr. 26 (1972) No. 42711.

    CAS  Google Scholar 

  • Gross, Ch., Gaetano, G., Tucker, T. N., Baker, J. A. (Langley Res. Center, Hampton, Va., USA): Comparison of infrared and activation analysis results in determining the oxygen and carbon content in silicon. J. Electrochem. Soc. 119 (1972) No. 7, 926–29, see also Nucl. Sci. Abstr. 26 (1972) No. 42713.

    CAS  Google Scholar 

  • Guinn, V. P., Heydorn, K. (Univ. of California, Irvine, USA): Instrumental neutron activation analysis of lead matrices for mercury. Trans. Amer. Nucl. Soc. 15 (1972) No. 1, 70 18th Annual American Nuclear Society Conf., Las Vegas, Nev., 18 June, 1972. CONF-720607, see also Nucl. Sci. Abstr. 26 (1972) No. 42697.

    Google Scholar 

  • Guinn, V. P., Kishore, R., Folsom, T. R., Hodge, V. F., Sargent, M. C. (Univ. of California, Irvine, USA): Neutron activation analysis measurements of Hg, Se and Zn levels in albacore and dolphins. Trans. Amer. Nucl. Soc. 15 (1972) No. 1, 68–9. 18th Annual American Nuclear Society Conf., Las Vegas, Nev., 18 June, 1972. CONF-720607, see also Nucl. Sci. Abstr. 26 (1972) No. 42696.

    Google Scholar 

  • Gunnink, R., Niday, J. B. (Lawrence Livermore Lab., California Univ., Livermore, Calif., USA): Computerized Quantitative analysis by gamma-ray spectrometry. Vol. 1. Description of the GAMANAL program. UCRL-51061 (Vol. 1), 1 March 1972, 78 p., see also Nucl. Sci. Abstr. 26 (1972) No. 45265.

  • Gunnink, R., Niday, J. B. (Lawrence Livermore Lab., California Univ., Livermore, Calif., USA): Computerized quantitative analysis by gamma-ray spectrometry. Vol. 4. Auxiliary programs for GAMANAL. UCRL-51061 (Vol. 4.) 1 June 1972. 38 p., see also Nucl. Sci. Abstr. 26 (1972) No. 47704.

  • Habanec, J, Zárobský, M., Petřina, A., Janoušek, Z. (Inst. of Nucl. Phys., Czechoslovak Acad. of Sci., Řež Czechoslovakia, Inst. of Inorg. Syntheses, Czechoslovak Acad. of Sci., Řež Czechoslovakia): Analysis of light element compounds by means of proton elastic scattering. J. Radioanal. Chem. 13 (1973) 213–23.

    Article  CAS  Google Scholar 

  • Haerdi, W.: Activation des éléments traces par les particules nucléaires et dosage des radioisotopes formés par spectrométrie gamma. Mitt. Geb. Lebensmitteluntersuch. und Hyg. 63 (1972) No. 2, 223–9, see also Ref. Zh. Khim. 8 (1973) No. G 33.

    CAS  Google Scholar 

  • Huckabee, J. W., Cartan, F. O., Kennington, G. S. (Oak Ridge National Lab., Tenn. USA): Environmental influence on trace elements in hair of 15 species of mammals. ORNL-TM-3747, June 1972. 38 p., see also Nucl. Sci. Abstr. 26 (1972) No. 42693.

  • Huckabee, J. W.: (Univ. of Wyoming, Laramie, Wyo., USA): Neutron activation analysis of trace elements in hair. Thesis, 1971, 75 p., see also Nucl. Sci. Abstr. 26 (1972) No. 45214.

  • Jaskólska, H., Rowińska, L., Walis, L., Radwan, M. (Inst. of Nucl. Res., Swierk, Poland): Determination of trace amounts of some elements in Armco steel by the neu

  • Kartashev, E. R., Markun, N. Yu., Chulkin, V. L., Shtan, A. S.: On the possibility of the simultaneous determination of aluminium and sodium concentrations in flowing solutions by activation. Tr. VNII radiats. tekhn. 7 (1972) 114–8 (in Russian), see also Ref. Zh. Khim. 1 (1973) No. G 126.

    Google Scholar 

  • Kliment, V., Tölgyessy, J. (Technical Univ., Bratislava, Czechoslovakia): Continuous neutron activation analysis of flowing solutions. Part 3. Investigation of optimum analyzing conditions. Isotopenpraxis 8 (1972) 143–5 (in German), see also Nucl. Sci. Abstr. 26 (1972) No. 47670.

    CAS  Google Scholar 

  • Koda, Y. (Government Industrial Res. Inst., Nagoya Hirate-machi, Kita-ku, Nagoya, Japan): Specific activities of radioactive elements from fission product mixtures. J. Radioanal. Chem. 13 (1972) 255–65.

    Article  Google Scholar 

  • Kosorok, J. R. (Inst. Elec. Electron. Eng., Battelle-Northwest, Richland, Washington, USA): Computer system for radionuclide analysis. Trans. Nucl. Sci. NS-19 (1972) No. 1, 640–4. From Nuclear Science Symp., San Francisco, California, 3 Nov. 1971. CONF-711111, see also Nucl. Sci. Abstr. 26 (1972) No. 42712.

    CAS  Google Scholar 

  • Kowalski, H., Reimers, P. (Commission of the European Communities, Brussels, Belgium): Non-destructive analysis of medieval gold coins. Kerntechnik 14 (1972) 265–8 (in German), see also Nucl. Sci. Abstr. 26 (1972) No. 47672.

    Google Scholar 

  • Kudo, K., Iso, H., Shigematsu, T. (Ibaraki Electrical Communication Lab., Nippon Telegraph and Telephone Public Corp., Tokai, Ibaraki, Japan): Substoichiometric determination of indium and tin by radioactivation analysis. J. Radioanal. Chem. 12 (1972) 451–59.

    Article  CAS  Google Scholar 

  • Laverlochère, J. (CEN, Grenoble, France): Activation analysis with fast neutrons. Modern Analytical Techniques for Metals and Alloys. Pt. 2. Bunshah, R. F. (Ed.), Wiley, New York, 1970, 755-75 p., see also Nucl. Sci. Abstr. 26 (1972) No. 45209.

    Google Scholar 

  • Laverlochère, J. (CEN, Grenoble, France): Use of computers in activation analysis. Modern Analytical Techniques for Metals and Alloys. Pt. 2. Bunshah, R. F. (Ed.). Wiley, New York, 1970, 867–80 p., see also Nucl. Sci. Abstr. 26 (1972) No. 45211.

    Google Scholar 

  • Lawas, I. C., Del Callar, A., Feria, J. A. (Univ. of the Philippines, College of Medicine Manila, Philippines; Philippine Atomic Res. Center, Philippine Atomic Energy Commission, Manila, Philippines): Neutron activation analysis of urinary stonnes. J. Radioanal. Chem. 13 (1973) 75–86.

    Article  CAS  Google Scholar 

  • Lee, Bong K. (Pennsylvania State Univ., University Park, USA): Trace element analysis of human lung tissue by neutron activation analysis. Trans. Amer. Nucl. Soc. 15 (1972) No. 1, 150, 18th Annual American Nuclear Society Conf., Las Vegas, Nev., 18 June, 1972. CONF-720607, see also Nucl. Sci. Abstr. 26 (1972) No. 42701.

    Google Scholar 

  • Lee, Ch., Yim, Y. Ch., Chung, K. S. (Atomic Energy Res. Inst., Seoul, Korea): Determination of individual lanthanide elements by neutron activation using a new comparator technique. J. Korean Nucl. Soc. 4 (1972) 83–9, see also Nucl. Sci. Abstr. 26 (1972) No. 42709.

    CAS  Google Scholar 

  • Leipunskaya, D. I., Savosin, S. I., Drynkin, V. I., (and others): Gold assay on geological samples by neutron activation with preliminary crucible fusion. Ind. Lab. USSR (Engl. Transl.) 37 (1971) No. 12, 1894–6. Transl. from Zavods. Lab. 37 (1971) No. 12, 1471-3, see also Nucl. Sci. Abstr. 26 (1972) No. 45200.

    Google Scholar 

  • Lindfors, B. (Reactor Lab., State Inst. for Technical Res., Otaniemi, Finland): Neutron source activation equipment INELKY. NP-19313, Feb. 1972. 28 p. (in Finnish), see also Nucl. Sci. Abstr. 26 (1972) No. 48182.

  • Lobanov, E. M., Babaev, A., Khaidarov, A. (Phys.-Technical Inst., Dushanbe, USSR): Neutron activation determination of tantalum in minerals. Dokl. Akad. Nauk Tadzh. SSR. 15 (1972) 21–3 (in Russian), see also Nucl. Sci. Abstr. 26 (1972) No. 42694.

    CAS  Google Scholar 

  • Lovett, D. B. (General Electric Co., Pleasanton, Calif., USA): Track etch analysis of uranium particles as a tracer system. Trans. Amer. Nucl. Soc. 15 (1972) No. 1, 121–3. 18th Annual American Nuclear Society Conf., Las Vegas, Nev., 18 June, 1972. CONF-720607, see also Nucl. Sci. Abstr. 27 (1972) No. 42698.

    Google Scholar 

  • Lukens, H. R. (Gulf Radiation Technology, San Diego, California, USA): Instruction manual for oil slick identification by trace element patterns measured with neutron activation analysis. GULF-RT-A-10973, 74 p., 30 May, 1972., see also Nucl. Sci. Abstr. 26 (1972) No. 47656.

  • Lukens, H. R., Bryan, D. E., (Gulf Radiation Techn., San Diego, California, USA): Material identification by activation analysis. Trans. Amer. Nucl. Soc. 15 (1972) No. 1, 148–9. 18th Annual American Nuclear Society Conf., Las Vegas, Nev., 18 June, 1972. CONF-720607., see also Nucl. Sci. Abstr. 26 (1972) No. 42699.

    Google Scholar 

  • Maillard, M. J., Maziere, B., Comar, D. (CEN de Fontenay-aux-Roses, France): Simple and rapid procedure for strontium determination in rat plasma using neutron activation. Bull. Soc. Chim. France No. 4 (1972) 1679–81 (in French), see also Nucl. Sci. Abstr. 26 (1972) No. 45202.

    Google Scholar 

  • Majteles, M. (Inst. Elec. Electron Eng., Pacific Gas and Electric Co., Emeryville, California, USA): Gamma spectrum analysis on time-sharing computers. Trans. Nucl. Sci. NS-19 (1972) No. 1, 651–3. From Nuclear Science Symp. San Francisco, California, 3 Nov. 1971. CONF-711111, see also Nucl. Sci. Abstr. 26 (1972) No. 42801.

    Google Scholar 

  • Maletskos, C. J. (Cancer Res. Inst., New England Deaconnes Hospital, Boston, Mass., USA): Activation analysis in research and forensic medicine. Final Progress Report July 1, 1971-September 30, 1971. COO-3371-15, 6 p., see also Nucl. Sci. Abstr. 26 (1972) No. 42692.

  • Miranskii, I. A., Ramazanov, R. Sh.: Determination of microquantities of elements in rocks and ores by instrumental activation methods and summation spectrometers. At. Energ. (USSR) 33 (1972) 706–7 (in Russian), see also Nucl. Sci. Abstr. 26 (1972) No. 47679.

  • Neeb, K. H., Neidl, H., Stoeckert, H. (Siemens AG, Erlangen, Germany): Use of a Ge(Li) detector in radiochemical analysis. Part 2. Determination of U and Th contents in microsamples of ThO2-UO2 nuclear fuels. Z. Anal. Chem. 259 (1972) 265–8 (in German), see also Nucl. Sci. Abstr. 26 (1972) No. 42706.

    Article  CAS  Google Scholar 

  • Ohno, Sh., Hiki, M., Yatazawa, M. (National Inst. of Radiological Sci., Chiba, Japan): Determination of some transition elements in soil by neutron activation analysis. Radioisotopes (Tokyo) 21 (1972) No. 7, 411–14, see also Nucl. Sci. Abstr. 26 (1972) No. 47660.

    Google Scholar 

  • Okada, M. (Japan Atomic Energy Res. Inst., Tokai, Ibaraki, Japan): Revised chart for the estimation of radioactivity due to thermal neutron irradiation. J. Radioanal. Chem. 12 (1972) 557–62.

    Article  CAS  Google Scholar 

  • Olafsson, J., Riley, J. P., (Univ. of Liverpool): Some data on the marine geochemistry of rheunium. Chem. Geol. 9 (1972) 227–30, see also Nucl. Sci. Abstr. 26 (1972) No. 47678.

    Article  CAS  Google Scholar 

  • Palmer, H. E. (Battelle-Northwest, Richland, Washington, USA): Determination of total body calcium through37Ar release after neutron activation. Trans. Amer. Nucl. Soc. 15 (1972) No. 1, 42, 18th Annual American Nuclear Society Conf. Las Vegas, Nev., 18 June, 1972. CONF-720607, see also Nucl. Sci. Abstr. 26 (1972) No. 42695.

    Google Scholar 

  • Pawaskar, P. B., Reddy, G. R., Sankar Das, M. (Bhabha Atomic Res. Centre, Trombay, India): Activation analysis with a Pu-Be neutron source. Indian. J. Technol. 10 (1972) 80–2, see also Nucl. Sci. Abstr. 26 (1972) No. 45199.

    CAS  Google Scholar 

  • Peisach, M. (C.N.R.S. Lab. “Pierre Süe”, C.E.N. Saclay, Gif-sur-Yvette, France): Isotopic determination of48Ca by photon activation. J. Radioanal. Chem. 13 (1972) 193–200.

    Article  Google Scholar 

  • Plantin, L. O. (King Gustaf V Res. Inst., Stockholm, Sweden): A meth od for the determination of Mn, Cu, Zn, K and Na in small tissue biopsies by neutron activation analysis. J. Radioanal. Chem. 12 (1972) 441–49.

    Article  CAS  Google Scholar 

  • Post, R. G., Wacks, M. E. (Univ. of Arizona, Tucson, USA): Techniques for source determination in the Tucson basin. Proc. of the Second International Clean Air Congress. Englund, H. M. (Ed.) New York, Acad. Press. Inc. 1971. 410–18 p. CONF-701229, see also Nucl. Sci. Abstr. 26 (1972) No. 45206.

    Google Scholar 

  • Prasad, K. N. (Pennsylvania State Univ., Univ. Park, Pa., USA): Investigation into the application of post-cutting chip activation analysis to the study of tool wear. Thesis. 1971. 96 p., see also Nucl. Sci. Abstr. 26 (1972) No. 45713.

  • Raics, P.: Possibility for the determination of235U/238U ratios by the238U(n, 2n) reaction. ATOMKI Közlem. 13 (1971) 165–71 (in Hungarian). see also Nucl. Sci. Abstr. 26 (1972) No. 47676.

    CAS  Google Scholar 

  • Razeghi, M., Parsa, B. (Tehran Univ. Nuclear Center, Tehran, Iran): The determination of microimpurities in quartz samples by the radioactivation method of analysis. Radiochem. Radioanal. Letters 13 (1973) 95–100.

    CAS  Google Scholar 

  • Riviere, R., Girault, M., Stulzaft, O., Comar, D. (Hospitalier Frederic Joliot, Orsay, France): Iodine activation analysis in biological media. Conf. of INSERM on Experimental Methodology in Thyroidian Physiology and Physiopathology. Lyon, France, 21 Oct. 1971. CONF-711053, see also Nucl. Sci. Abstr. 26 (1972) No. 42707.

  • Ryabukhin, Yu. S., Uspenskii, V. A., Lyskova, M. N., (Inst. of Medical Radiology. Moscow; Engineering-Phys. Inst., Moscow; USSR): Use of stable bromine with subsequent neutron activation analysis to determine extracellular fluid parameters in humans. Med. Radiol. 17 (1972) 24–30 (in Russian), see also Nucl. Sci. Abstr. 26 (1972) No. 42708.

    CAS  Google Scholar 

  • Saltmarsh, M. J., van der Woude, A., Ludemann, C. A. (Oak Ridge National Lab., Tenn., USA): Measurement of surface contamination using oxygen-ion induced X rays. Appl. Phys. Lett. 21 (1972) No. 2, 64–7, see also Nucl. Sci. Abstr. 26 (1972) No. 42729.

    Article  CAS  Google Scholar 

  • Schiller, P., Cook, G. B., Kitzinger-Skáková, A., Wölfl, E. (IAEA Lab. Seibersdorf, Vienna, Austria): The influence of the season variation for gold determination in plants by neutron activation analysis. Radiochem. Radioanal. Letters 13 (1972) 283–86.

    Google Scholar 

  • Schmitz, J., Schneider, J., Vogg, H.: Praktische Erfahrungen mit der Neutronenaktivierungsanalyse von Wässern. GWF-Wasser/Abwasser 113 (1972) No. 7, 318–24, see also Ref. Zh. Khim. 2 (1973) No. G 151.

    CAS  Google Scholar 

  • Shalpykov, A. Sh., Navalikhin, L. V., Umurzakov, B. S.: Some features of the determination of oxygen in alkali halide crystals by fast neutron activation. Sb. Elektron i ionnie processi v nemetall kristallakh. Ilim, Frunze, 1972, 12–22 (in Russian), see also Ref. Zh. Khim. 6 (1972) No. G 160.

    Google Scholar 

  • Sharipov, E. B., Abdullaev, A. A., Zhuk, L. I., Khasanov, A. S.: Simultaneous determination of iron. zinc, and selenium in mineral water. Izv. Akad. Nauk UzSSR, Ser. Fiz-mat. Nauk, No. 5 (1972) 62 (in Russian), see also Ref. Zh. Khim. 5 (1973) No. G 158.

    Google Scholar 

  • Shtan, A. S. (Ed.): Radiatsionnaya tekhnika, Vyp. 6. (Radiation technology, No. 6) Atomizdat, Moscow, 1971, 256 p. (in Russian), see also Nucl. Sci. Abstr. 26 (1972) No. 45432.

    Google Scholar 

  • Slunečko, J., Kosta, L., Kenda, B.: Simultaneous nondestructive determination of fluorine and titanium in procelain enamels by photon activation analysis. Vestn. Slow. Kem. Drust. 18 (1971) No. 1-4, 5–10, see also Ref. Zh. Khim. 2 (1973) No. G 147.

    Google Scholar 

  • Smith, D. B., Forster, R. A., Menlove, H. O., Forehand, H. M. (Los Alamos Sci. Lab., N. Mex., USA):252Cf fuel rod assay system: inplant performance. Trans. Amer. Nucl. Soc. 15 (1972) No. 1, 174, 18th Annual American Nuclear Society Conf., Las Vegas, Nev., 18 June, 1972, CONF-720607, see also Nucl. Sci. Abstr. 26 (1972) No. 42704.

    Google Scholar 

  • Soriou, M., Popescu, G. (Inst. de Fizica Atomica, Bucharest, Romania): New method for potassium determination by neutron activation in mineral and rock samples. Ann. Soc. Geol. Belg. 94 (1971) No. 2, 132 p. European Conf. of Geochronology, 6 Sep. 1971, Brussels, Belgium. CONF-7100953-4, see also Nucl. Sci. Abstr. 26 (1972) No. 45197.

  • Stefanov, G., Daieva, L. (Geological Inst., Sofia, Bulgaria): Non-destructive determination of microquantities of iridium in soil samples through activation analysis. Isotopenpraxis 8 (1972) 146–8 (in German), see also Nucl. Sci. Abstr. 26 (1972) No. 47671.

    CAS  Google Scholar 

  • Steinnes, E. (Inst. for Atomenergi, Kjeller, Norway): Determination of Mn in high-purity iron by neutron activation analysis after pre-irradiation separation. Radiochim. Acta 17 (1972) 119–20, see also Nucl. Sci. Abstr. 26 (1972) No. 45216.

    CAS  Google Scholar 

  • Suvorov, A. V.: Determination of some elements by the photoneutron method. Sb. Yaderno-geofiz. metody, Nauka, Novosibirsk, 1972, 137–9 (in Russian), see also Ref. Zh. Khim. 5 (1973) No. G 121.

    Google Scholar 

  • Taczanowski, S. (Inst. of Nucl. Techn., Acad. of Minig and Metallurgy, Cracow, Poland): Optimum sample shape for 14 MeV neutron activation analysis. J. Radioanal. Chem. 12 (1972) 535–42.

    Article  CAS  Google Scholar 

  • Tamura, M. (National Res. Inst. for Pollution and Resources, Kawaguchi, Japan): Flux monitoring method suitable for rapid activation analysis with 14 MeV neutrons. Radioistopes (Tokyo) 21 (1972) No. 7, 397–403, see also Nucl. Sci. Abstr. 26(1972) No. 47658.

    CAS  Google Scholar 

  • Török, G., Schelenz, R. Fischer, E. (Bundesforschungsanstalt für Lebensmittelfrischhaltung, Karlsruhe, GFR): Development of methods for the application of neutron activation analysis to the determination of trace elements in foods. Progress Report. October 1–December 31. 1971. BFL-1//1972, Feb. 1972. 23 p. (in German), see also Nucl. Sci. Abstr. 26 (1972) No. 45189.

  • Tsuji, H., Fujiwara, Y., Okamoto, M., Nanba, N., Kusaka, Y. (Konan Univ., Kobe, Japan): Radioactivation analysis with looped sample irradiation method. Oxygen determination in petroleum solvent by 14 MeV neutrons. Radioistopes (Tokyo) 21 (1972) No. 7, 404–10 (in Japanese), see also Nucl. Sci. Abstr. 26 (1972) No. 47659.

    CAS  Google Scholar 

  • Umaroy, M. U.: Elaboration of an activation method for the determination of nickel, vanadium, manganese and copper in crude oil and its distillates of Lyal-Mikar and Iyzyl-Tumshuk areas. Sb. Vopr, gidrokhimii prirod. vod aridn. Zony SSSR, Tashkent, 1971, 82–91 (in Russian), see also Ref. Zh. Khim. 2 (1973) No. G 121.

  • Van der Linden, R., De Corte, F., Hoste, J. (Inst. for Nucl. Sci. Ghent Univ., Ghent, Belgium): The multiplication of errors due to the application of a relative multiple comparator method. J. Radioanal. Chem. 13 (1973) 169–79.

    Article  Google Scholar 

  • Van der Mark, W., Das, H. A. (Reactor Centrum Nederland, Petten, The Netherlands): The determination of fluorine in bone by fast neutron activation analysis. J. Radional. Chem. 13 (1973) 107–34.

    Article  Google Scholar 

  • Van Grieken, R., Speecke, A., Hoste, J., (Inst. for Nucl. Sci., Ghent Univ., Ghent, Belgium): Geometry errors in 14 MeV neutron activation analysis. J. Radioanal. Chem. 13 (1972) 225–33.

    Article  Google Scholar 

  • Varvaritsa, V. P., Isaev, V. S., Kozlov, O. V., Kohkov, E. D., Lavrentev, Yu. D., Mamikonyan, S. V., Ostroumov, G. V., Priyalgovskii, S. M., Tokareva, D. V., Filatov, V. I., Tokareva, D. V., Filatov, V. I., Yakubovich, A. L.: Roentgeno-radiometric analyser AZhR-1 for iron group elements in industrial samples. Tr. VNII radiats. tekhn. 7 (1972) 157–61 (in Russian), see also Ref. Zh. Khim. 1 (1973) No. D 29.

    Google Scholar 

  • Vogt, J. R.: Activation analysis. Ann. N. Y. Acad. Sci. 199 (1972) 137–44, see also Ref. Zh. Khim. 1 (1973) No. G 145.

    CAS  Google Scholar 

  • Vyazinkov, E. P., Flasson, V. V.; Determination of fluorine in rock samples by the neutron activation method. Sb. Yaderno-geofiz. metody, Nauka, Novosibirsk, 1972, 198–202 (in Russian), see also Ref. Zh. Khim. 6 (1973) No. G 114.

    Google Scholar 

  • Welch, R. M., Allaway, W. H. (Plant, Soil, and Nutrition Lab., Cornell Univ., Ithaca, N. Y.): Vanadium determination in biological materials at nanogram levels by a catalytic method. Anal. Chem. 44 (1972) No. 9, 1644–7, see also Nucl. Sci. Abstr. 26 (1972) No. 45203.

    Article  CAS  Google Scholar 

  • Weng, P., Tsa, Chao-ming, Su, Shian-jang, Huang, Chenhung, Chu, Tieh-chi: Background activity of Taiwan. Hoken Butsuri 6 (1971) 131–6, see also Nucl. Sci. Abstr. 26 (1972) No. 48041.

    CAS  Google Scholar 

  • Whitworth, J. B. (Univ. of Texas, Austin, Texas, USA): Development and application of a systematic approach to elemental analysis in forensic investigations. Thesis, 1971, 235 p., see also Nucl. Sci. Abstr. 26 (1972) No. 45213.

  • Wichmann, P. A.: Application of neutron activation to the determination of elements in boreholes. Rev. Inst. Fr. Petrole Ann. Combust. Liquides 26 (1971) No. 9, 715–29 (in French), see also Nucl. Sci. Abstr. 26 (1972) No. 45567.

    CAS  Google Scholar 

  • Youmans, A. H. (Dresser Industries, Inc., USA): Thermal neutron radioactivity logging method, US Patent 3, 665, 195. 23 May 1972. Filed 16 Oct. 1969, see also Nucl. Sci. Abstr. 26 (1972) No. 45561.

  • Youmans, A. H. (Dresser Industries, Inc., USA): Well logging method for determining the presence of aluminium an magnesium, US Patent 3, 662, 173, 9 May 1972. Filed 27 Oct. 1969, see also Nucl. Sci. Abstr. 26 (1972) No. 45559.

  • Zelts, L. van, Aten, A. H. W. Jr. (Inst. voor Kernphysisch, Onderzoek, Amsterdam, The Netherlands): Titanium and calcium content of meteorites. Radiochim. Acta 17 (1972) 115–6, see also Nucl. Sci. Abstr. 26 (1972) No. 45215.

    Google Scholar 

  • Zmijewska, W. (Inst. of Nucl. Res., Warsaw, Poland): Activation methods of analysis. Wiad. Chem. 25 (1971) 99–122 (in Polish), see also Nucl. Sci. Abstr. 26 (1972) No. 45201.

    Google Scholar 

Analysis by nuclear absorption and scattering

  • Ball, D. J., Buck, T. M., MacNair, D., Wheatley, G. H. (Bell Telephone Labs., Inc., Allentown, Pa., USA): Investigation of low-energy ion scattering as a surface analytical technique. Surface Sci. 30 (1972) 69–90, see also Nucl. Sci. Abstr. 26 (1972) No. 47711.

    Article  CAS  Google Scholar 

  • Bauman, H. D.: Quick, reliable TiO2 analysis provided with a new instrument. Pulp and Paper 46 (1972) 120–1.

    Google Scholar 

  • Cecal, A. (Dept. of Chem. Al. I. Cuza Univ., Jassy, Romania): A quantitative method for the analysis of ternary systems. J. Radioanal. Chem. 12 (1972) 529–33.

    Article  CAS  Google Scholar 

  • Matfield, R. S. (UK At. Energy Auth. Res. Group, England): The detection of hydrogen in cellulose acetate by neutron radiography. UK AERE-R 6700. 1972, 14 p., see also Ref. Zh. Khim. 6 (1973) No. D 11.

  • Mamikonyan, S. V., Meltser, L. V., Filatov, V. I.: Determination of low-level potassium concentration in solutions by roentgeno-radiometric method. Tr. VNII radiats. tekhn. 7 (1972) 148–56 (in Russian), see also Ref. Zh. Khim. 1 (1973) No. G 55.

    Google Scholar 

  • Nikitin, V. N., Obolentsev, L. A., Sidorov, V. A.: Quantitative determination of zirconium in ore samples and concentrates by roentgeno-radiometric method. Sb. Yaderno-Geofiz. Metody, Nauk, Novosibirsk, 1972, 178–80 (in Russian), see also Ref. Zh. Khim. 6 (1973) No. G 123.

    Google Scholar 

  • Selyutin, E. G.: Experiences with the use of roentgeno-radiometric method for the determination of tantalum in powder samples. Yaderno-Geofiz. Metody, Nauka, Novosibirsk, 1972, 174–8 (in Russian), see also Ref. Zh. Khim. 6 (1973) No. G 122.

    Google Scholar 

  • Shmonin, L. I., Ostapenko, V. F., Mager, E. V., Enker, M. B.: Radiometric determination of the concentration of base metals in polymetallic ores. Sb. Yaderno-Geofiz. Metody, Nauka, Novosibirsk, 1972, 113–5 (in Russian), see also Ref. Zh. Khim. 5 (1973) No. G 122.

    Google Scholar 

  • Sotnichenko, I. N., Taranets, F. T.: Neutron absorption method for the exact analysis of boron. Sb. Yaderno-Geofiz. Metody, Nauka, Novosibirsk, 1972, 222–7 (in Russian), see also Ref. Zh. Khim. 6 (1973) No. G 76.

    Google Scholar 

  • Vakhtin, B. S., Filippov, E. M.: Neutron-neutron method with resonance neutrons and its use for the determination of silver, gold and boron in samples. Sb. Yaderno-Geofiz. Metody, Nauka, Novosibirsk, 1972, 235–42 (in Russian), see also Ref. Zh. Khim. 6 (1973) No. G 65.

    Google Scholar 

Isotope dilution analysis

  • Angoso, M., Jimeno, F., Grau, A., Dominquez, G. (Junta de Energia Nucl., Madrid, Spain): Isotopic dilution determination of lebaycid in oranges. J. Radioanal. Chem. 13 (1973) 148–54.

    Article  Google Scholar 

  • Kyrš, M., Kandiyotti, R., Vrana, T. (Nucl. Res. Inst., Řež near Prague, Czechoslovakia; Chem. Engng. Dept., Middle East Technical Univ., Ankara, Turkey): The influence of the statistical error in radioactivity counting on the precision of isotope dilution analysis. Part 2. J. Radioanal. Chem. 12 (1972) 505–12.

    Article  Google Scholar 

  • Kyrš, M., Kandiyotti, R. (Nucl. Res. Inst., Řež near Prague, Czechoslovakia; Chem. Engng. Dept., Middle East Technical Univ., Ankara, Turkey): The influence of the statistical error in radioactivity counting on the precision of isotope dilution analysis. Part 3. J. Radioanal. Chem. 13 (1973) 181–92.

    Article  Google Scholar 

  • Pichlmayer, F., Schmidt, A. (Österreichische Studiengesellschaft für Atomenergie G.m.b.H., Seiberdorf, Austria): Determination of the90Sr content in coated particles by the isotopic dilution method. SGAE-2008. Mar. 1972. 4 p. PH-116/72, see also Nucl. Sci. Abstr. 26 (1972) No. 42714.

Instrumentation, analysis by activity measurements

  • Aleksandrov, B. M., Solovev, S. M., Tyvin, L. I., Eismont, V. P.: X-ray fluorescence analysis of heavy elements by an α-X coincidence method. At. Energ. (USSR) 32 (1972) 491–3 (in Russian), see also Nucl. Sci. Abstr. 26 (1972) No. 45270.

    Google Scholar 

  • Campbell, A. R. (Mound Lab., Miamisburg, Ohio, USA): Radioactive series decay program. MLM-1907, 16 Aug. 1972. 11 p., see also Nucl. Sci. Abstr. 26 (1972) No. 47876.

  • Décombaz, M., Gostely, J.-J., Lerch, P. (Inst. d'Electrochimie et Radiochimie de l'Ecole Polytechnique Fédérale de Lausanne, Lausanne, Suisse): Une méthode rapide de mesure des impuretés radioactives dans les solutions. Radiochem. Radioanal. Letters 13 (1973) 139–49.

    Google Scholar 

  • Gingrich, J. E., Lovett, D. B. (General Electric Co., Pleasanton, California, USA): Track etch technique for uranium exploration. Trans. Amer. Nucl. Soc. 15 (1972) 118–9, see also Nucl. Sci. Abstr. 26 (1972) No. 42936.

    Google Scholar 

  • Grundon, N. J., Ascher, C. J., (Univ. of Queensland, St. Lucia, Australia): Improved method for determination of35S in plant material using oxygen flask combustion and liquid scintillation counting. J. Agr. Food Chem. 20 (1972) 794–8, see also Nucl. Sci. Abstr. 26 (1972) No. 45266.

    Article  CAS  Google Scholar 

  • Lefevre, H., Godement, A. (Commissariat a l'Energie Atomique Centre d'Etudes de Bruyeres-le-Châtel B. P. 61, 92. Montrouge, France): Analyse de traces de tritium de l'hélium-3 par scintillation liquide. Radiochem. Radioanal. Letters 13 (1973) 125–37.

    CAS  Google Scholar 

  • Moore, H. (Trapelo/West, Div. of LFE Corporation, Richmond, California, USA): Correction for change in activity during counting. J. Radioanal. Chem. 13 (1973) 165–68.

    Article  CAS  Google Scholar 

  • Polyakov, V. I., Chechetkin, Yu. V. (Scientific Res. Atomic Reactor Inst., Melekess, USSR): Determination of the concentration of gamma-emitting isotopes in extended sources without sampling. SRARJ-P-123, 1971. 28 p. (in Russian), see also Nucl. Sci. Abstr. 26 (1972) No. 45264.

  • Povinec, P., Chudý, M., Šeliga, M., Sáró, Š., Szarka, J. (Dept. of Nucl. Phys., Comenius Univ., Bratislava, Czechoslovakia): Tritium analysis with an ethane-filled proportional counter. J. Radioanal. Chem. 12 (1972) 513–8.

    Article  CAS  Google Scholar 

  • Prydz, S. (Fysisk Inst., Oslo, Univ., Norway): Some detection methods in radiochromatography and the measurement of tritium and other low-energy β-emitters. INIS-mf-262, 1971. 118 p., see also Nucl. Sci. Abstr. 26 (1972) No. 47702.

  • Rodin, N. N., Dembrovskii, M. A.: Use of the method of coincidences of X-ray and γ-quanta for the analysis of mixtures of radioisotopes. Sov. Radiochem. 13 (1971) No. 6, 899–902. Transl. from Radiokhimiya 13 (1971) No. 6, 875–9, see also Nucl. Sci. Abstr. 26 (1972) No. 42724.

    Google Scholar 

  • Sokolowska, A. (Dept. of Radiochem., Inst. of Nucl. Res., Warsaw, Poland): Determination of the radiochemical purity of methanol-14C formaldehyde-14C and ethanol-1-14C by radio gas chromatography. Radiochem. Radioanal. Letters 13 (1973) 287–99.

    CAS  Google Scholar 

  • Stewart, A., Weir, N. A. (Dept. of Chem., Lakehead, Univ., Thunder, Bay, Ontario, Canada): An evaluation of trapping compounds used for determining14CO2 by liquid scintillation counting. J. Radioanal. Chem. 13 (1973) 31–6.

    Article  CAS  Google Scholar 

  • Tyler, T. R., Chapin, L. R., Alvaro, R. F., Cox, J. L. (Merck Charp and Dohme Res. Labs., Rahway, New Jersey, USA): A comparison of combustion and low beta counting methods for determination of low levels of14C activity in animal tissue. J. Radioanal. Chem. 12 (1972) 475–82.

    Article  CAS  Google Scholar 

  • Vespalec, R., Pietrik, I., Morávek, J. (Power Res. Inst., Lab. Jaslovské Bohunice, Bratislava, Czechoslovakia): An automatic gaschromatographic analyser for the determination of the radioactivity of argon, krypton and xenon. J. Radioanal. Chem. 13 (1973) 155–64.

    Article  CAS  Google Scholar 

  • Zaitsev, Yu. A., Panteleev, L. I.; Application of the matrix method of spectrum processing for quantitative analysis of the four iodine isotope mistures (131I,132I,133I and135I). Sb. Radiokhim. analiz obektov vnesh. sredy, Gidrometeoizdat, Moskva, 1972, 131–40 (in Russian), see also Ref. Zh. Khim. 9 (1973) No. B 746.

    Google Scholar 

Analytical separation involving radioisotopes

  • Ahmed, A. K., Newton, G. W. A., Robinson, V. J. (Chem. Dept., Univ. of Manchester, Manchester, England): A fast separation for antimony produced in heavy-ion induced fission. J. Radioanal. Chem. 13 (1973) 135–39.

    Article  CAS  Google Scholar 

  • Akiha, F., Yuira, K., Aburai, T., Nozaki, T., Murakami, Y. (Hirosaki Univ., Japan): Production of carrier-free54Mn by the alpha particle bombardment of natural chromium. Nippon Kagaku Kaishi No. 5 (1972) 908–13 (in Japanese) see also Nucl. Sci. Abstr. 26 (1972) No. 45394.

    Google Scholar 

  • Akimov, V. K., Gamsakhyrdia, K. A., Murachasvili, U. A.: Separation of protactinium from niobium and tantalum. Tbilisis universitetis shromebi. Tr. Tbilis. Univ., A 4 (1972) 163–6 (in Russian), see also Ref. Zh. Khim. 23 (1972) No. G 42.

    Google Scholar 

  • Aly, H. F., Abdel-Hamid, M. M. (Atomic Energy Establishment, Cairo, UAR): New method for isolation of carrier-free35S and32P from neutron activated potassium chloride. Mikrochem. J. 17 (1972) 215–19, see also Nucl. Sci. Abstr. 26 (1972) No. 42846.

    Article  CAS  Google Scholar 

  • Anghileri, L. J. (Univ. of Colorado, Medical Center, Veterans Administration Hospital, Denver, Colorado, USA): Tha analytical control of the cationic aggregation in chromium complexes. J. Radioanal. Chem. 12 (1972) 543–45.

    Article  CAS  Google Scholar 

  • Artyukin, P. I., Startseva, E. A., Kotlyarevskii, I. L., Bobrova, J. M. (Inst. of Inorganic Chem., Novosibirsk, USSR): Extraction of a number of elements by dibutyl thiophosphoric acid from nitric acid solutions. Izv. Sib. Otd. Akad. Nauk SSSR, No. 9, Ser. Khim. Nauk No. 4, (1971) 131–3 (in Russian), see also Nucl. Sci. Abstr. 26 (1972) No. 42739.

    Google Scholar 

  • Bauer, D. J., Schultze, L. E., Lindstrom, R. E. (Bureau of Mines Reno, Nev. Reno Metallurgy Res. Center): Extraction process for upgrading Sm2O3 using selective stripping techniques. BM-RI-7663, 1972. 9 p., see also Nucl. Sci. Abstr. 26 (1972) No. 47720.

  • Caletka, R. (Nucl. Res. Inst., Řež-Prague, Czechoslovakia): Sorption of the polyvalent elements on silica gel. Part 1. Sorption of protactinium on silica gel from solutions of HCl and H2SO4. Collect. Czech. Chem. Commun. 37 (1972) No. 4, 1267–76, see also Nucl. Sci. Abstr. 26 (1972) No. 42819.

    CAS  Google Scholar 

  • Caletka, R. (Nuclear Res. Inst., Řež-Prague, Czechoslovakia): Sorption of polyvalent elements on silica gel. Part 2. Sorption of protactinium on silica gel from mixed aqueous solutions of HCl and HNO3. Collect. Czech. Chem. Commun. 37 (1972) 1494–1503, see also Nucl. Sci. Abstr. 26 (1972) No. 45389.

    CAS  Google Scholar 

  • Caletka, R. (Nucl. Res. Inst., Řež-Prague, Czechoslovakia): Sorption of polyvalent elements in silica gel. Part 3. Isolation of protactinium by sorption of silica gel from the solutions of HCl and H2SO4. Collect. Czech. Chem. Commun. 37 (1972) 1684–9, see also Nucl. Sci. Abstr. 26 (1972) No. 45390.

    CAS  Google Scholar 

  • Caletka, R. (Nucl. Res. Inst., Řež-Prague, Czechoslovakia): Sorption of polyvalent elements on silica gel. Part 4. Separation of the tetravalent and pentavalent protactinium. Collect. Czech. Chem. Commun. 37 (1972) 1690–2, see also Nucl. Sci. Abstr. 26 (1972) No. 45391.

    CAS  Google Scholar 

  • Chao-Ming, Tsai, Izawa, G., Shiokawa, T. (Dept. of Chem., Fac. of Sci., Tohoku Univ., Sendai Japan): The preparation of carrier-free potassium-43 combines with potassium-42 from calcium hydroxide using a linear accelerator. Radiochem. Radioanal. Letters 13 (1973) 179–83.

    Google Scholar 

  • Cohen, Y. (CEN de Saclay, Gif-sur-Yvette, France): Quality control of radiopharmaceutic products from isotopic generators. Ann. Pharm. Fr. 29 (1971) 191–200 (in French), see also Nucl. Sci. Abstr. 26 (1972) No. 47886.

    CAS  Google Scholar 

  • Csajka, M. (Central Res. Inst. for Phys., Budapest, Hungary): Fast radiochemical separation of rare earths from rock samples by retention on lanthanum oxalate. Radiochem. Radioanal. Letters 13 (1973) 151–9.

    CAS  Google Scholar 

  • Debska-Horecka, A., Pukas, T., Stronski, I. (Inst. of Inorganic Chem. and Technology, Technical Univ., Gliwice, Poland, Dept. of Chem. and Radiochem., Inst. of Nucl. Phys., Krakow-Bronowice, Pland): The preparation of high-purity magnesium oxide. Part 1. Separation of microquantities of calcium from macroquantities of magnesium. J. Radioanal. Chem. 13 (1973) 21–30.

    Article  CAS  Google Scholar 

  • Durham, J. L., Wagman, J., Fish, B. R., Secley, F. G. (National Environmental Res. Center, Triangle Park, N. C., USA): Radiochemical analysis of35SO2 adsorbed on PbO2. Anal. Lett. 5 (1972) 469–78, see also Nucl. Sci. Abstr. 26 (1972) No. 47714.

    CAS  Google Scholar 

  • Finston, H.L. (Dept. of Chem., Brooklyn, Coll., N.Y., USA): Applications of nuclear and radiochemical techniques in chemical analysis. NYO-3417-19, 1972. Progress Report. June 1, 1971–May 31, 1972, 9 p., see also Nucl. Sci. Abstr. 26 (1972) No. 47703.

  • Gillette, R. K., Curtis, M. I., Nunn, E. B., Frye, J. O., Bishop, C. T. (Mound Lab., Miamisburg, Ohio, USA): Investigation into the determination of plutonium in soil by a fusion procedure. MLM-1901, 15 June 1972., see also Nucl. Sci. Abstr. 26 (1972) No. 42722.

  • Guillaume, M. (Lab. d'Application des Radioéléments Univ. de Liège, Belgique): Separation des constituants du couple nucléaire Mo−Tc sur filtre d'acide pertitanique. Radiochem. Radioanal. Letters 13 (1973) 307–18.

    Google Scholar 

  • Guseva, L. I., Grigoreva, S. I., Tikhomirova, G. S.: New method of separation of Bk(III) from Ce(III) on an anion-exchange resin. Sov. Radiochem. (Engl. Transl.) 13 (1972) No. 5, 802–4. Trans. From Radiokhimiya 13 (1971) No. 5, 778–80, see also Nucl. Sci. Abstr. 26 (1972) No. 35855.

    Google Scholar 

  • Helus, F., Maier-Borst, W. (Deutsches Krebsforschungszentrum Inst. für Nuklearmedizin, Heidelberg, GFR): The production and separation of carrier-free111In. Radiochem. Radioanal. Letters 13 (1973) 271–8.

    CAS  Google Scholar 

  • Kordyukevich, V. O., Rudenko, N. P. (Inst. of Nucl. Sci. Phys., Moscow State Univ., Moscow, USSR): Solvent extraction of iridium 8-mercaptoquonolinate. Radiochem. Radioanal. Letters 13 (1973) 259–62.

    CAS  Google Scholar 

  • Kurcbart, H., Quiroga, S., Caro, R. A., Radicella, R. (Dept. of Radioisotopes, Comision Nacional de Energie Atomica, Buenos Aires, Argentina, Cátedra de Fisica, Fac. de Farmacia y Bioquimica, Univ. de Buenos Aires, Argentina): Microdetermination of iodine in carrier-free131I solutions. J. Radioanal. Chem. 12 (1972) 547–52.

    Article  CAS  Google Scholar 

  • Llyod, M. H., Tallent, O. K., (Oak Ridge National Lab., Tenn., USA): New solvent extraction process for preparation of PuO2 solutions. Trans. Amer. Nucl. Soc. 15 (1972) No. 1, 230–1. 18th Annual American Nuclear Society Conf., Las Vegas, Nev., 18 June, 1972. CONF-720607, see also Nucl. Sci. Abstr. 26 (1972) No. 42828.

    Google Scholar 

  • Marmol, P., de, Van Tigchelt, H. (CEN/SCK, Mol. Belgium): Fast radiochemical procedure for separating germanium from fission products. Radiochim. Acta 17 (1972) 52–4, see also Nucl. Sci, Abstr. 26 (1972) No. 47729.

    Google Scholar 

  • Novikov, Yu., P., Ivanova, S. A., Myasoedov, B. F. (The Vernadsky Inst. of Geochem. and Anal. Chem. of the Acad. of Sci. of the USSR, Moscow, USSR): Co-precipitation of heptavalent neptunium on inorganic carriers. Radiochem. Radioanal. Letters 13 (1972) 355–60.

    Google Scholar 

  • Oniciu, L., Cook, G. B. (International Atomic Energy Agency Lab., Seibersdorf, Vienna, Austria): Preliminary study of quality control of99mTc from99Mo generators. J. Radioanal. Chem. 13 (1973) 247–54.

    Article  CAS  Google Scholar 

  • Owene, C. W. (Dept. of Chem., Univ. of New Hampshire, Durham, USA): A rapid ion-exchange separation of radioactive sulfur anions. Radiochem. Radioanal. Letters 13 (1973) 325–7.

    Google Scholar 

  • Riedel, A. (Dept. of Nucl. Chem., Technical Univ. of Prague, Prague, Czechoslovakia): Systematic study of the extraction of metals using n-benzoyl-n-phenylhydroxylamine. J. Radioanal. Chem. 13 (1972) 125–34.

    Article  Google Scholar 

  • Rudenko, N. P., Kordyukevich, V. O. (Inst. of Nucl. Phys., Moscow State Univ., Moscow, USSR): Solvent extraction of platinum 8-mercapto-quinolinate. Radiochem. Radioanal. Letters 13 (1973) 263–70.

    CAS  Google Scholar 

  • Sahakundu, S. M., Marathe, S. G., Rao, V. K., Bhargava, V. K., Iyer, R. H. (Radiochem. Div., Bhabha Atomic Res. Centre, Bombay, India): A new method for the radiochemical separation of copper from fission products. J. Radioanal. Chem. 13 (1973) 37–40.

    Article  CAS  Google Scholar 

  • Salas, G. N. de., Bianco, A. J., Mitta, A. E. A. (Comision Nacional de Energia Atomica, Buenos Aires, Argentina): Determination of inorganic radioiodides in131I labelled compounds by means of instantaneous thin layer chromatography. Radiochim. Acta 17 (1972) 58 p., see also Nucl. Sci. Abstr. 26 (1972) No. 47716.

    Google Scholar 

  • Shigematsu, T., Nishimura, S., Tanabe, T., Konda, Y. (Kyoto Univ., Japan): Solvent extraction of europium by Versatid Acid 911. J. Jap. Inst. Metals 36 (1972) 445–50 (in Japanese), see also Nucl. Sci. Abstr. 26 (1972) No. 45277.

    CAS  Google Scholar 

  • Shvedov, V. P., Semanov, G. N., (Leningrad Lensoviet Inst. of Technology, Leningrad, USSR): Electrofocusing of inorganic ions. J. Radioanal. Chem. 12 (1972) 413–9.

    Article  CAS  Google Scholar 

  • Yushkan, E. I., Rovinskii, F. Ya., Stutkin, E. D., Iokhelson, S. B., Tsybulnik, G. S.: Rapid method of determining90Sr,89Sr, and91Y in aerosol samples. Sov. Radiochem. 13 (1971) No. 6, 895–8. Transl. from Radiokhimiya 13 (1971) No. 6, 872–5, see also Nucl. Sci. Abstr. 26 (1972) No. 42723.

    Google Scholar 

Analysis using radioactive reagents

  • Jesenák, V., Naum, M. M., Tölgyessy, J. (Dept. of Silicate Technology, Dept. of Radiochem. and Radiation Chem., Slovak Technical Univ., Bratislava, Czechoslovakia): Radio-release determination of hydrogen fluoride in air using radioactive kryptonate of silica. Radiochem. Radioanal. Letters 13 (1973) 199–205.

    Google Scholar 

  • Malik, W. U., Singh, B. P., Jain, J. P. (Chemical Labs., Univ. of Roorkee, Roorkee, India): Evidence for the existence of colloidal precipitates in metal cyanides by radiometric titration. J. Radioanal. Chem. 12 (1972) 553–6.

    Article  CAS  Google Scholar 

  • Martynov, A. M., Shamaev, V. I.: Radiometric method for the determination of cadmium in zinc preparates. Tr. Mosk. Khim. Tekhnol. Inst. im. D. I. Mendeleeva 71 (1972) 240–1 (in Russian) see also Ref. Zh. Khim. 4 (1973) No. G 208.

    CAS  Google Scholar 

  • Ömböly, Cs., Szarvas, T., Végh, G. (Inst. for Isotopes of the Hungarian Acad. of Sci., Budapest, Hungary): Radiometric titration based on colloidal and slow precipitate formation. J. Radioanal. Chem. 13 (1973) 59–65.

    Article  Google Scholar 

  • Ömböly, Cs., Szarvas, T., Végh, G. (Inst. for Isotopes of the Hungarian Acad. of Sci., Budapest, Hungary): Investigation and radiometric determination of saturated and unsaturated aliphatic monocarboxilic acids and aromatic dicarboxylic acids. J. Radioanal. Chem. 13 (1973) 67–74.

    Article  Google Scholar 

  • Shamaev, V. I., Martynov, A. M., Ukhovskaya, A. G.: Radiometric method for the determination of tungsten in molybdenum preparates. Tr. Mosk. Khim. Tekhnol. Inst. im. D.I. Mendeleeva 71 (1972) 237–9 (in Russian), see also Ref. Zh. Khim. 4 (1973) No. G 187.

    CAS  Google Scholar 

  • Shamaev, V. I., Savkin, M. E., Churilova, M. A.: Radiometric method for the determination of chromium in vanadium preparates. Tr. Mosk. Khim. Tekhnol. Inst. im. D. I. Mendeleeva 71 (1972) 234–6 (in Russian), see also Ref. Zh. Khim. 4 (1973) No. G 209.

    CAS  Google Scholar 

  • Tölgyessy, J., Dillinger, P. (Dept. of Radiochem. and Radiation Chem., Slovak Technical Univ., Jánska 1, Bratislava, Czechoslovakia): Radioactive kryptonates in volumetric analysis. Part 12. End-point detection by radioactive kryptonates of amalgams. Radiochem. Radioanal. Letters 13 (1973) 117–24.

    Google Scholar 

Environmental monitoring A. Results

  • Anderson, K. D. (New York State Dept. of Environmental Conservation, Albany, USA): Environmental radioactivity measurement experience near a fuels reprocessing plant. Trans. Amer. Nucl. Soc. 15 (1972) No. 1, 544–5. 18th Annual American Nuclear Society Conf., Las Vegas, Nev., 18 June, 1972. CONF-720607, see also Nucl. Sci. Abstr. 26 (1972) No. 42948.

    Google Scholar 

  • Anon.: Data. Section I. Milk and food. Radiat. Data Rep. 13 (1972) No. 6, 347–59, see also Nucl. Sci. Abstr. 26 (1972) No. 45552.

  • Anon.: Data. Section II. Water. Radiat. Data Rep. 13 (1972) No. 6, 360–6, see also Nucl. Sci. Abstr. 26 (1972) No. 45537.

  • Anon.: Data. Section III. Air and deposition. Radiat. Data Rep. 13 (1972) No. 6, 367–76, see also Nucl. Sci. Abstr. 26 (1972) No. 45523.

  • Anon. (Division Estudies Ambientalis, Comision Nacional de Energia Atomica, Buenos Aires, Argentina): Compilation of the results of monitoring90Sr and137Cs due to fallout in the Argentine Republic. NP-19357, 1972, 11 p. (in Spanish), see also Nucl. Sci. Abstr. 26 (1972) No. 45520.

  • Anon. (EURATOM Joint Nuclear Centre, Ispra, Italy): Protection Service, Site Survey and Meteorology Section, HASL-257. 1 July 1972, p. III. 53–8, see also Nucl. Sci. Abstr. 26 (1972) No. 45519.

  • Anon. (Health and Safety Lab., New York Operations Office (AEC), N. Y., USA): Fallout program. Quarterly summary report, March 1–June 1, 1972. Appendix. HASL-257 (App.), 1 July 1972, 437 p., see also Nucl. Sci. Abstr. 26 (1972) No. 45512.

  • Anon.: Cycling of stable cesium in a desert ecosystem. TID-25954, 376-8, see also Nucl. Sci. Abstr. 26 (1972) No. 45193.

    Google Scholar 

  • Bennett, B. G.:90Sr in human bone: 1971 results for New York City and San Francisco. HASL-257, 1 July 1972, p. I. 51–70, see also Nucl. Sci. Abstr. 26 (1972) No. 45538.

  • Boulanger, R., de Maere, X. (Centre d'Etudes de l'Energie Nucléaire, Mol, Belgium): Radioactive fallout measurements at Mol. NP-19344, 1968, 103 p. (in French), see also Nucl. Sci. Abstr. 26 (1972) No. 42951.

  • Bowen, V. T., Metcalf, W. G., Burke, J. C. (Woods Hole Oceanographic Institution, Mass., USA): Shallow-water90Sr anomaly about the Antilles Arc, 1970. J. Mar. Res. 30 (1972) No. 1, 112–20 and NYO-2174-124, see also Nucl. Sci. Abstr. 26 (1972) No. 45533.

    Google Scholar 

  • Brar, S. S. (Argonne National Lab., Ill., USA):137Cs in various Chicago foods. (Collection Months, January and April 1972) HASL-257, 1 July 1972, p. III. 45–52, see also Nucl. Sci. Abstr. 26 (1972) No. 45540.

  • Essington, E. H., Forslow, E. J. (Teledyne Isotopes, Las Vegas, Nev., USA): Distribution of radioactivity in and near the Rainier rubble chimney. NVO-1229-180, Sep. 1971, 91 p., see also Nucl. Sci. Abstr. 26 (1972) No. 45483.

  • Fetterolf, C. M., Seeburger, D. J.: Radioactivity in Lake Michigan water and biota, vicinity of Big Rock Point nuclear reactor, 1960–1969. Proc. 14th Conf. on Great Lakes Research, Ann Arbor, Mich., Intern. Assoc. for Great Lakes Research, 1971, 211–8. CONF-710431, see also Nucl. Sci. Abstr. 26 (1972) No. 45535.

  • Firsakova, S. A., Shirshov, V. A., (All-Union Sci. Res. Inst. of Fodders, Lugovaya, USSR): Degree of contamination of pasture fodder by90Sr in 1965–1967. Agrokhimiya No. 11 (1971) 128–231 (in Russian), see also Nucl. Sci. Abstr. 26 (1972) No. 48059.

    Google Scholar 

  • Glowiak, B. J., Palczynski, R. J., (Technical Univ., Wroclaw, Poland): Dependence between radioactivity and concentration of atmospheric aerosols. Proc. of the 1972 Clean Air Conf., Parkville, Australia, Clean Air Society of Australia and New Zealand, 1972, p. 155–61, CONF-720451, see also Nucl. Sci. Abstr. 26 (1972) No. 45521.

  • Gregory, L. P. (National Radiation Lab., Christchurch, New Zealand): Fallout from nuclear weapons tests conducted by France in the South Pacific from June to August 1971 and comparisons with previous test series. NRL-F-47, Mar. 19721 41 p., see also Nucl. Sci. Abstr. 26 (1972) No. 42947.

  • Gudoksen, P. H., Londeken, C. L., Gatrousis, C., Anspangh, L. R. (Lawrence Livermore Lab., California, Univ., Livermore, USA): Environmental levels of radioactivity in the vicinity of the Lawrence Livermore Laboratory January through December 1971. UCRL-51242, 14 June 1972, 47 p., see also Nucl. Sci. Abstr. 26 (1972) No. 45513.

  • Hardy, E. P., Jr. (Health and Safety Lab., New York Operations Office (AEC), N. Y., USA): Fallout program. Quarterly Summary Report, March 1, 1972–June 1, 1972. HASL-257, 1 July 1972, 201 p., see also Nucl. Sci. Abstr. 26 (1972) No. 45511.

  • Hardy, E. P., Volchok, H. L., Krey, P. W.:90Sr fallout in Utah. HASL-257, 1 July 1972, p. I. 71–94, see also Nucl. Sci. Abstr. 26 (1972) No. 45525.

  • Hardy, E. P., Krey, P. W., Volchok, H. L.: Plutonium fallout in Utah. HASL-257, 1 July 1972, p. I. 95–118, see also Nucl. Sci. Abstr. 26 (1972) No. 45526.

  • Herceg, J. E. (Comp.) (Los Alamos Sci. Lab., N. Mex., USA): Environmental monitoring in the vicinity of the Los Alamos Scientific Laboratory, July–December 1971. LA-4970, July 1972, 48 p., see also Nucl. Sci. Abstr. 26 (1972) No. 48032.

  • Kauranen, P., Miettinen, J. K.: Specific activity of210Pb in the environment. COO-3011-1, Paper 48. May 1972, 11 p. see also Nucl. Sci. Abstr. 26 (1972) No. 48055.

  • Krey, P. W., Krajewski, B. T.: Updating stratospheric inventories to July 1971. HASL-257, 1 July 1972, p. I. 33–50, see also Nucl. Sci. Abstr. 26 (1972) No. 45518.

  • Lerman, A. (Northwestern Univ., Evanston, Ill., USA):90Sr in the Great Lakes: concentration model. J. Geophys. Res. 77 (1972) 3256–64, see also Nucl. Sci. Abstr. 26 (1972) No. 45532.

    CAS  Google Scholar 

  • Lowder, W. M. (Atomic Energy Commission, New York, USA): Environmental radiationdosimetry near large nuclear power stations. Trans. Amer. Nucl. Soc. 15 (1972) No. 1, 545, 18th Annual American Nuclear Society Conf., Las Vegas, Nev., 18 June, 1972. CONF-720607, see also Nucl. Sci. Abstr. 26 (1972) No. 42950.

    Google Scholar 

  • Nelson, D. M., Romberg, G. P., Prepejchal, W. (Argonne National Lab., Ill., USA): Radionuclide concentrations near the Big Rock Point nuclear power station. Proc. 14th Conf. on Great Lakes Research, Ann Arbor, Mich., Intern. Assoc. for Great Lakes Research, 1971, 268–76. CONF-710-431, see also Nucl. Sci. Abstr. 26 (1972) No. 45536.

  • Noshkin, V. E., Bowen, V. T. (Woods Hole Oceanographic Institution, Mass., USA): Concentrations and distributions of long-lived fallout radionuclides in open ocean sediments. COO-3563-3, 1972, 22 p, see also Nucl. Sci. Abstr. 26 (1972) No. 45531.

  • Noshkin, V. E., Bowen, V. T., Wong, K. M., Burke, J. C. (Woods Hole Oceanographic Institution, Mass., USA): Plutonium in North Atlantic Ocean organism; ecological relationships. 3rd National Symp. on Radioecology, Oak Ridge, Tenn., 10 May 1971. NYO-2174-130, 1971, 19 p. CONF-710501-55, see also Nucl. Sci. Abstr. 26 (1972) No. 45541.

  • Rahola, T., Miettinen, J. K.: Radionuclides in plants (1971) and reindeer muscle (1972) from Finnish Lapland. COO-3011-1, Paper 45. Preliminary Report. May 1972, 6 p., see also Nucl. Sci. Abstr. 26 (1972) No. 48052.

  • Raikov, L., Naumov, Z., Milchev, M., Dimitrova, E. (Inst. of Soil Sci., Sofia, Bulgaria): Total β-radioactivity and40K content in Brown Forest soils of the Central Balkans and the Northwestern Rhodopes. Gorskostop. Nauka 7 (1970) 27–35 (in Bulgarian), see also Nucl. Sci. Abstr. 26 (1972) No. 48040.

    CAS  Google Scholar 

  • Robertson, D. E., Silker, W. B., Langford, J. C., Perkins, R. W. (Battelle-Northwest, Richland, Wash., USA): Transport and depletion of radionuclides in the Columbia River. Trans. Amer. Nucl. Soc. 15 (1972) 66 p. 18th Annual American Nuclear Society Conf., Las Vegas, Nev., 18 June, 1972. CONF-720607, see also Nucl. Sci. Abstr. 26 (1972) No. 42963.

  • Schell, W. R., Jokela, T., Eanle, R. (Lab. of Radiation Ecology, Washington Univ., Seattle, USA): Natural210Pb and210Po in a marine environment. RLO-2225-T-14-4, 1971,29p., see also Nucl. Sci. Abstr. 26 (1972) No. 45544.

  • Schulze, H. A., Randow, F., (Univ., Rostock, GDR): Artificial radioactivity of fallout and food in the northern districts of GRD in the year 1969. Z. Gesam. Hyg. ihre Grenzgeb. 17 (1971) 255–7 (in German) see also Nucl. Sci. Abstr. 26 (1972) No. 45546.

    CAS  Google Scholar 

  • Vinogradov, A. P., Dervits, A. P., Dobkina, E. I. (Inst. of Geochem. and Anal. Chem., Moscow, USSR): Concentration of14C in the troposphere during 1953 to 1971. Geokhimiya 2 (1972) 131–6 (in Russian), see also Nucl. Sci. Abstr. 26 (1972) No. 42958.

    Google Scholar 

  • Volchok, H. L.: High fallout in the Western United States. An Explanation. HASL-257, 1 July 1972, p.I. 18–32, see also Nucl. Sci. Abstr. 26 (1972) No. 45517.

B. Methods

  • Bagliano, G., Fratarcangeli, S., Lalli, M. G., Toeroe, I. (Comitato Nazionale per l'Energia Nucleare, Rome, Italy): Measurement of137Cs and90Sr in soil. RT-PROT-72-11, 30 March, 1972 (in Italian), see also Nucl. Sci. Abstr. 26 (1972) No. 45263.

  • Bakai, N. N., Petrov, S. V., Raevskii, R. N.: Rapid method for the separation of cerium-137 from soil and sediment samples. Sb. Radiokhim. analiz obektov vnesh. sredy, Gidrometeoizdat, Moskva, 1972, 78–9 (in Russian), see also Ref. Zh. Khim. 9 (1973) No. B 755.

    Google Scholar 

  • Biernacka, M., Jagielak, J., Zak, A. (Centrale Lab. Ochrony Radiolog., Warsaw, Poland): Continuous measurements of222Rn concentration in air. CLOR-88/D, 1972, 11 p. (in Polish), see also Nucl. Sci. Abstr. 26 (1972) No. 48034.

  • Bobovnikova, Ts. I., Rovinskii, F. Ya. (Eds.): Radiochemical analysis of environmental objects. Proc. 3rd Radiochem. Symp., Obninsk, June 21–24, 1970, and 4th Radiochem. Symp., Leningrad, Mai 25–28, 1971. (Sb Radiokhim. analiz obektov vnesh. sredy). Gidrometeoizdat, Moskva, 1972, 142 p. (in Russian), see also Ref. Zh. Khim. 8 (1973) No. B 779.

  • Bockharev, V. M.: Determination of radioactive isotopes of cobalt in environmental and biological samples. Sb. Radiokhiom. analiz obektov vnesh. sredy, Gidrometeoizdat, Moskva, 1972, 47–9 (in Russian), see also Ref. Zh. Khim. 9 (1973) No. B 748.

    Google Scholar 

  • Bochkarev, V. M., Pakholkov, V. S.: Determination of tellurium-132 in samples of biological origin. Sb. Radiokhim. analiz obekov vnesh. sredy, Gidrometeoizdat, Moskva, 1972, 72–4 (in Russian), see als Ref. Zh. Khim. 9 (1973) No. B 754.

    Google Scholar 

  • Cahill, T. A., Sommerville, R. (Univ. of California, Davis, USA): Automatic analysis of atmospheric aerosols for research and monitoring purposes. Trans. Amer. Nucl. Soc. 15 (1972) 70–1. 18th Annual American Nuclear Society Conf., Las Vegas, Nev., 18 June, 1972. CONF-720607, see also Nucl. Sci. Abstr. 26 (1972) No. 42971.

    Google Scholar 

  • Dobosz, E. (Dept. of Radiation Hyg., Central Lab., for Radiological Protection, Warsaw, Poland): A simple method for determination of radioiodine. Radiochem. Radioanal. Letters 13 (1973) 381–84.

    CAS  Google Scholar 

  • Foote, R. S. (Texas Instruments Inc., Science Services Div., Dallas, USA): Measurement of radioactive fallout by field total absorption gamma-ray spectroscopy. Report No. 3. TID-26103, 30 Sept. 1964, 75 p., see also Nucl. Sci. Abstr. 26 (1972) No. 45527.

  • Ghysels, J. P: Determination of Pu in the environment by extraction and liquid scintillation counting. Ind. At. Spatialites 26 (1972) No. 1, 33–6. see also Nucl. Sci. Abstr. 26 (1972) No. 45268.

    Google Scholar 

  • Hairr, L. M., Wrenn, McDonald, E. (New York Univ., N. Y., USA): Environmental sampling for river sediments around a nuclear power station. Trans. Amer. Nucl. Soc. 15 (1972) 82–3. 18th Annual American Nuclear Society Conf., Las Vegas, Nev., 18 June, 1972. CONF-729697, see also Nucl. Sci. Abstr. 26 (1972) No. 42965.

    Google Scholar 

  • Hardcastle, J. E., Fuller, W. H., Hannapel, R. J. (Dept. of Agricultural Chem. and Soils, Univ. of Arizona, Tucson, Arizona, USA): Assay of89Sr in plant and soil samples by liquid scintillation counting. J. Radioanal. Chem. 13 (1973) 141–47.

    Article  CAS  Google Scholar 

  • Healy, J. W. (Inst. Elec. Electron. Engng. Los Alamos Sci. Lab., N. Mex.): Problems of plutonium measurement in the environment. Trans. Nucl. Sci. NS-19 (1972) No. 1, 219–23. From Nuclear Science Symp. San Francisco, California, 3 Nov. 1971. CONF-711111, see also Nucl. Sci. Abstr. 26 (1972) No. 42728.

    Article  CAS  Google Scholar 

  • Lebedev, V. M.: Methodological problems of the application of radiochemical analysis. Sb. Radiokhim. analiz. obektov vnesh. sredy, Gidrometeoizdat, Moskva, 1972, 109–19 (in Russian), see also Ref. Zh. Khim. 9 (1972) No. B 749.

    Google Scholar 

  • Mullins, J. W., Andrews, V. E., Dunn, L. M. (Inst. Elec. Electron. Engng. Wester Environmental Res. Lab., Las Vegas, New., USA): Techniques for monitoring and analysis of environmental tritium. Trans. Nucl. Sci. NS-19 (1972) 177–80. From Nuclear Science Symp. San Francisco, California, 3 Nov. 1971. CONF-711111, see also Nucl. Sci. Abstr. 26 (1972) No. 42956.

    CAS  Google Scholar 

  • Pogodin, R. I.: Determination of radioactive isotopes of cadmium in environmental samples. Sb. Radiokhim, analiz obektov vnesh. sredy, Gidrometeoizdat, Moskva, 1972, 66–7 (in Russian), see also Ref. Zh. Khim. 9 (1972) No. B 753.

    Google Scholar 

  • Pogodin, R. I.: Group separation of zirconium-95, antimony-125 and tellirium-132 by extraction methods. Sb. Radiokhim. analiz obektov vnesh. sredy, Gidrometeoizdat, Moskva, 1972, 74–5 (in Russian), see also Ref. Zh. Khim. 9 (1973) No. B 750.

    Google Scholar 

  • Sharonov, G. E.: Determiantion of radioactive isotopes of antimons in biological samples and soils. Sb. Radiokhim. analiz obektov vnesh. sredy, Gidrometeoizdat, Moskva, 1972, 70–2 (in Russian), see also Ref. Zh. Khim. 9 (1972) No. b 747.

    Google Scholar 

  • Shulepko, Z. S.: On the problems of the determination of131I in the atmosphere and its collection. Sb. Radiochim. analiz. obektov vnesh. sredy, Gidrometeoizdat, Moskva, 1972, 12–19 (in Russian), see also Ref. Zh. Khim. 9 (1973) No. B 780.

    Google Scholar 

  • Shulepko, Z. S.: Method for the separation of radioisotopes203Pb and210Pb. Sb. Radiokhim. analiz obektov vnesh. sredy. Gidrometeoizdat, Mosskva, 1972, 89–90 (in Russian), see also Ref. Zh. Khim. 8 (1973) No. B 781.

    Google Scholar 

  • Shusharina, N. M., Rovinskii, F. Ya.: Method for the determination of tritium in subsoils and soils, Sb. Radiokhim. Analiz obektov vnesh, sredy, Gidrometeoizdat, Moskva, 1972, 24–8 (in Russian), see also Ref. Zh. Khim. 9 (1973) No. B 751.

    Google Scholar 

  • Winkler, R., Hötzl, H. (Gesellschaft für Strahlen- und Umweltforschung m. b. H., Inst. für Strahlenschutz, Radiochemisch-analytische Abteilung, Neuherberg bei München, GRF): Rapid determination of low concentrations of long-lived alpha-emitters in the atmosphere by alpha-spectrometry. J. Radioanal. Chem. 13 (1973) 235–46.

    Article  CAS  Google Scholar 

  • Yuskhan, F. I., Iokhelson, S. B., Rovinskii, F. Ya., Sergeeva, E. I.: Method for the separation of lead-203. Sb. Radiokhim. analiz obektov vnesh. sredy, Gidrometeoizdat, Moskva, 1972, 91–3 (in Russian), see also Ref. Zh. Khim. 9 (1973) No. B 743.

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

About this article

Cite this article

Bock-Werthmann, W., Sansoni, B. & Bujdosó, E. Bibliography section. J. Radioanal. Chem. 16, 343–369 (1973). https://doi.org/10.1007/BF02517879

Download citation

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF02517879

Navigation