Handbook of Soil Analysis pp 133-165 | Cite as
Mineralogical Analysis by Infra-Red Spectrometry
Chapter
Keywords
Near Infrared Spectroscopy Binding Agent Clay Sample Mineralogical Analysis Infrared Reflectance Spectroscopy
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.
Preview
Unable to display preview. Download preview PDF.
References
- Chang C.-W., Laird DA, Mausbach M. et Hurburgh CR Jr (2001) Near-Infrared Reflectance Spectroscopy-Principal Components regression analysis of soil properties. Soil Sci. Soc. Am. J., 65, 480-490Google Scholar
- Dardenne P, Sinnaev G et Baeten V (2000) Multivariate calibration and chemometrics for near infrared spectroscopy: which method. Journal of Near Infrared Spectroscopy, 8, 229-237CrossRefGoogle Scholar
- Duyckaerts G (1959) The infra red analysis of solid substances. Analyst, 84, 201-214CrossRefGoogle Scholar
- Farmer VC et Palmieri F (1975) The characterization of soil minerals by Infrared spectroscopy. In: Soil components-2- Inorganic components, Gieseking JE ed., Springer, 573-670Google Scholar
- Fröhlich F (1980) Néoformation de silicates ferrifères amorphes dans la sédimentation pélagique récente. Bull. Minéral., 103, 596-599Google Scholar
- Fröhlich F (1989) Les silicates dans l’environnement pélagique de l’océan indien du cénozoïque. Mémoire Muséum National d’Histoire Naturelle, Paris, XLVI, 206pGoogle Scholar
- Keller WD et Pickett FE (1949) Absorption of IR radiation by powdered silice minerals. Am. Miner., 34, 855-868Google Scholar
- Liu LG et Mernagh TP (1992) Phase transitions and Raman spectra of anatase and rutile at high pressures and room temperature. Eur. J. Mineral, 4, 45-22Google Scholar
- Nail SL, White JL et Hem SL (1976) IR studies of development of order in aluminium hydroxide gels. J. Pharm. Sci., 65, 231-234CrossRefGoogle Scholar
- Nyquist RA et Kagel O (1971) Infrared spectra of inorganic compounds., Academic Press, New YorkGoogle Scholar
- Stubican V et Roy R (1961) Infrared spectra of layer silicates. J. Am. Ceram. Soc., 44, 625CrossRefGoogle Scholar
- Wada K (1966) Deuterium exchange of hydroxyl groups in allophane. Soil Sci. Plant Nutr., 12, 176-182Google Scholar
- Weir CE Lippincott ER Van Valkenburg A et Bunting EN (1959) Infra-red studies in the 1 and 15 microns region to 30 000 atmospheres. J. Res. Natl. Bur. Stud., 63A, 55Google Scholar
Chronobibliography
- Tuddenham WM et Lyon R.P (1960) Infrared techniques in the identification and measurement of minerals. Anal. Chem., 32, 1630-1634CrossRefGoogle Scholar
- Mitchell BD Farmer VC et Mc Hardy WJ (1964) Amorphous inorganic materials in soils. Academic Press. Adv. Agron., 16, 327-383Google Scholar
- Hayashi H et Oinuma K (1965) Relationship between infrared absorption spectra in the region of 450-900 cm-1 and chemical composition of chlorite. Am. Miner., 50, 476-483Google Scholar
- Hayashi H et Oinuma K (1967) Si-O absorption band near 1000 cm-1 OH absorption bands of chlorite. Am. Miner., 52, 1206-1210Google Scholar
- Russell JD, McHardy WJ et Fraser A.R (1969) Imogolite: a unique alumino-silicate. Clay Miner., 8, 87-99CrossRefGoogle Scholar
- Wada K et Greenland DJ (1970) Selective dissolution and differential infrared spectroscopy for characterization of amorphous constituents in soil clays. Clay Miner., 8, 241-254CrossRefGoogle Scholar
- Conley RT (1972) Infra-red spectroscopy. Allyn-Bacon, 2nd. EditionGoogle Scholar
- Fieldes M, Furkert R.J et Wells N (1972) Rapid determination of constituants of whole soils using IR absorption. N. Z. J. Sci., 15, 615-627Google Scholar
- Miller RGT et Stace BC (1972) Laboratory methods in Infrared spectroscopy., Heyden and SonGoogle Scholar
- Farmer VC (1974) The Infrared spectra of minerals. Minerals Sci. (London).Google Scholar
- Stepanov IS (1974) Interpretation of the IR spectra of soils. Pochvovedenie, 6, 76-88Google Scholar
- Gadsden JA(1975) Infrared spectra of minerals and related inorganic compounds., ButterworthGoogle Scholar
- Griffiths PR (1975) Chemical infrared fourier transform spectroscopy., Wiley, New York Chemical Analysis, 43Google Scholar
- Brame EG, Grasselli JG (1976) Infrared and Raman spectroscopy., Marcel Dekker, 1AGoogle Scholar
- White JL, Nail SL et Hem SL (1976) Infrared technique for distinguishing between amorphous and crystalline aluminium hydroxide phase. Proceedings. 7th Conference. clay Mineral Petrology (Czechoslovakia), 51-59Google Scholar
- Marel HW, Van der et Beutelspacher H (1976) Atlas of infrared spectroscopy of clay minerals and their mixtures., Elsevier AmsterdamGoogle Scholar
- Proshina NV (1976) Use of infrared spectroscopy for identification of soil samples. Nauch. dokl. Vsshei Shk., Biol. Naudi, 3, 114-118Google Scholar
- Brame EG, Grasselli JG (1977) Infrared and Raman spectroscopy., Marcel Dekker, 1B, 1CGoogle Scholar
- Hlavay J, Jonas K, Elek S et Inczedy J (1977) Characterization of the particle size and the cristallinity of certain minerals by infrared spectrophotometry and instrumental methods. I - Investigations on clay minerals. Clays Clay Miner., 25, 451-456CrossRefGoogle Scholar
- Hlavay J, Jonas K, Elek S et Inczedy J (1978) Characterization of the particle size and the crystallinity of certain minerals by infrared spectrophotometry and other instrumental methods. II-Investigation on quartz and feldspar. Clays Clay Miner., 26, 139-143CrossRefGoogle Scholar
- Ferraro JR et Basile LJ (1978) Fourier transform infrared spectroscopy. Applications to chemical systems., Academic, New York, vol. 1Google Scholar
- Slonimskaya MV, Besson G, Dainyak LG, Tchoubar C et Drits VA (1978) Interpretation of the IR spectra of celadonites and glaucomites in the region of OH-streching frequencies. Clay Miner., 21, 377-388CrossRefGoogle Scholar
- Smith AL (1979) Applied infrared spectroscopy: fundamentals, techniques and analytical problem-solving., Wiley, New York, vol. 54 (chemical analysis).Google Scholar
- Farmer VC (1979) The role of infrared spectroscopy in a soil research institute: characterization of inorganic materials. Eur. Spectrosc. News, 25, 25-27Google Scholar
- Ferraro JR et Basile LJ (1979) Fourier transform infrared spectroscopy. Applications to chemical systems., Academic, vol. 2Google Scholar
- Hlavay J et Inczedy J (1979) Sources of error of quantitative determination of the solid crystalline minerals by inrared spectroscopy. Acta Chim., (Budapest), 102, 11-18Google Scholar
- Olphen H Van et Fripiat JJ (1979) Data handbook for clay materials and other non-metallic minerals., PergamonGoogle Scholar
- Martin AE (1980) Infrared interferometric spectrometers. In Vibrational spectra and structure, Durig J.R. ed., Elsevier, Amsterdam, vol. 8Google Scholar
- Pouchert CJ (1981) The Aldrich library of infrared spectra., Aldrich Chemical Co, 1850 pGoogle Scholar
- Shika A, Osipova NN et Sokolova TA (1982) Feasibility of characterizing the mineralogical composition of soils by infrared spectrophotometry. Moscow Univer. Soil Sci. Bull., 37, 34-40Google Scholar
- Theng BKG, Russel M, Churchman GJ et Parfitt RL (1982) Surface properties of allophane, halloysite and imogolite. Clays Clay miner., 30, 143-149CrossRefGoogle Scholar
- Ferraro JR et Basile LJ (1983) Fourier transform infrared spectroscopy. Applications to chemical systems., Academic, New York , vol. 3Google Scholar
- Fysh SA et Fredericks PM (1983) Fourier transform infrared studies of aluminous goethites and hematites. Clays clay Miner., 31, 377-382CrossRefGoogle Scholar
- Velde B (1983) Infra-red OH-stretch bands in potassic micas, talcs and saponites: influence of electronic configuration and site of charge compensation. Am. miner., 68, 1169-1173Google Scholar
- Gillette PC et Koenig JL (1984) Objective criteria for absorbance subtraction. Appl. Spectrosc., 38, 334-337CrossRefGoogle Scholar
- Kosmas CS, Curi N, Bryant RB et Franzmeier DP (1984) Charactrization of iron oxide minerals by second-derivative visible spectroscopy. Soil Sci. Soc. Am. J., 48, 401-405Google Scholar
- Prost R (1984) Etude par spectroscopie infra-rouge à basse température de groupes OH de structure de la kaolinite, de la dickite et de la nacrite. Agronomie, 4, 403-406CrossRefGoogle Scholar
- Kodama H (1985) Infrared spectra of minerals. Reference guide to identification and characterization of minerals for the study of soils. Res. Branch, Agric. Can. Tech. Bull., 1EGoogle Scholar
- Mulla DJ, Low PF et Roth CB (1985) Measurement of the specific surface area of clays by internal reflectance spectroscopy. Clays Clay Miner., 33, 391-396CrossRefGoogle Scholar
- Keller RJ (1986) The Sigma library of FT-IR spectra., Sigma chemical Co, vols. 1-2, 2894 pGoogle Scholar
- Griffiths et Haseth PR (1986) Fourier transform infrared spectrometry., Chemical Analysis Series, Vol. 83, Wiley New York, 672 pGoogle Scholar
- Russel JD (1987) Infrared spectroscopy of inorganic compounds. In Laboratory methods in infra-red spectroscopy, Willis H.ed., Wiley, New YorkGoogle Scholar
- Johannsen PG, Krobok MP et Holzapfel WB (1988) High-pressure FT-IR spectrometry., Bruker report, 39-43Google Scholar
- Pouchert CJ (1989) The Aldrich library of FT-IR Spectra., Aldrich Chemical Co, vols. 1-3, 4800 pGoogle Scholar
- Mottana A et Burragato F (1990) Absorption spectroscopy in mineralogy., Elsevier, Amsterdam, Oxford, New York, Tokyo, 294 pGoogle Scholar
- Delvigne JE (1998) Atlas of Micromorphology of mineral alteration and weathering. The Canadian Mineralogist, special publication 3, Ottawa et IRD (ex-Orstom), ParisGoogle Scholar
- Silverstein RM et Webster FX (1998) Spectrometric Identification of organic compounds. Wiley New York, 482 pGoogle Scholar
- McHale JL (1999) Molecular spectroscopy., Prentice-Hall, London, Sydney, Toronto, 463 pGoogle Scholar
- Gillon D, Joffre R et Ibrahima A.(1999) Can litter decomposability be predicted by near infrared reflectance spectroscopy. Ecology, 80, 175-186CrossRefGoogle Scholar
- Confalonieri M, Fornasier F, Ursino A, Boccardi F, Pintus B et Odoardi M (2001) The potential of near infrared reflectance spectroscopy as a tool for the chemical characterisation of agricultural soils. J. Near Infrared Spectrosc., 9, 123-131CrossRefGoogle Scholar
- Joffre R, Ảgren GI, Gillon D et Bosatta E (2001) Organic matter quality in ecological studies: theory meets experiment. Oikos, 93, 451-458CrossRefGoogle Scholar
- Fearn T (2001) Standardisation and calibration transfer for near infrared instruments: a review. J. Near Infrared Spectrosc., 9, 229-244CrossRefGoogle Scholar
- Ludwig B et Khanna PK (2001) Use of near infrared spectroscopy to determine inorganic and organic carbon fractions in soil and litter. In Assessment methods for soil carbon, Lal R, Kimble JM, Follet RF et Stewart BA ed., Lewis, UKGoogle Scholar
- Ozaki Y, Sasic S et Jiang JH (2001) How can we unravel complicated near infrared spectra? - Recent progress in spectral analysis methods for resolution enhancement and band assignments in the near infrared region. J. Near Infrared Spectrosc., 9, 63-95CrossRefGoogle Scholar
- Reeves J B et McCarty G W (2001) Quantitative analysis of agricultural soils using near infrared reflectance spectroscopy and a fibre-optic probe. J. Near Infrared Spectrosc., 9, 1, 25-34CrossRefGoogle Scholar
- Tso, Ritchie GE, Gehrlein L et Ciurczak EW (2001) A general test method for the development, validation and routine use of disposable near infrared spectroscopic libraries. J. Near Infrared Spectrosc., 9, 165-184CrossRefGoogle Scholar
- Fidencio PH, Poppi RJ et de Andrade JC (2002) Determination of organic matter in soils using radial basis function networks and near infrared spectroscopy. Anal. Chem. Acta., 453, 125-134CrossRefGoogle Scholar
- Coûteaux MM, Berg B and Rovira P (2003) Near infrared reflectance spectroscopy for determination of organic matter fractions including microbial biomass in coniferous forest soils. Soil Biol. Biochem., 35, 1587-1600CrossRefGoogle Scholar
- Brown DJ, Shepherd KD, Walsh MG, Dewayne Mays M and Reinsch TG (2005). Global soil characterization with VNIR diffuse reflectance spectroscopy. Geoderma, doi:10.1016/j.geoderma.2005.04.025Google Scholar
Copyright information
© Springer-Verlag Berlin Heidelberg 2006