Microchimica Acta

, Volume 122, Issue 3–4, pp 279–293 | Cite as

Organolead speciation in environmental samples: a review

  • Krystyna Pyrzyńska
Original Papers

Abstract

The speciation of organolead in some environmental samples is reviewed. Sampling, storage and pretreatment methods for water, soil, sediment and air samples are discussed before an assessment of recent developments in analytical methods.

Key words

organolead speciation environmental samples review 

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References

  1. [1]
    U. Evors, H. W. Schlipkoter, in:Metals and Their Compounds in the Environment (E. Merian, ed.), VCH, New York, 1991.Google Scholar
  2. [2]
    M. Radojevic, R. M. Harrison, Sci.Total Environ. 1987,59, 157.Google Scholar
  3. [3]
    R. ŁobińskiAnalyst 1994,119, 615.Google Scholar
  4. [4]
    T. Nielsen, E. Egsgaard, E. Larsen, G. Schroll,Anal. Chim. Acta 1981,124, 1.Google Scholar
  5. [5]
    R. M. Harrison, P. D. H. Laxen,Nature 1978,275, 738.Google Scholar
  6. [6]
    C. N. Hewitt, S. J. De Mora, R. M. Harrison,Mar. Chem. 1984,15, 189.Google Scholar
  7. [7]
    R. Łobiński, F. C. Adams,Analusis 1992,20, M28.Google Scholar
  8. [8]
    D. Chakraborti, W. Dirkx, R. Van Cleuvenbergen, F. C. Adams, Sci.Total Environ. 1989,84, 249.Google Scholar
  9. [9]
    R. Lobiński, J. Szpunar-Łobińska, F. C. Adams, P. L. Teissedre, J. C. Cabanis,J. Assoc. Off. Anal. Chem. 1993,76, 1262.Google Scholar
  10. [10]
    R. M. Harrison, M. Radojevic, S. J. Wilson, Sci.Total Environ. 1986,50, 129.Google Scholar
  11. [11]
    C. Witte, J. Szpunar-Łobińska, R. Łobiński, F. C. Adams,Appl. Organomet. Chem. 1994,8, 621.Google Scholar
  12. [12]
    R. Łobinski, C. F. Boutron, J. P. Candelone, S. Hong, J. Szpunar-Łobińska, F. C. Adams,Environ. Sci. Technol. 1994,28, 1459.Google Scholar
  13. [13]
    Y. K. Chau, P. T. S. Wong, G. A. Bengert, J. L. Dunn,Anal. Chem. 1984,56, 271.Google Scholar
  14. [14]
    S. G. Jiang, D. Chakraborti, F. C. Adams,Anal. Chim. Acta 1987,196, 271.Google Scholar
  15. [15]
    W. R. A. De Jonhge, D. Chakraborti, F. C. Adams,Anal. Chem. 1980,52, 1974.Google Scholar
  16. [16]
    R. Łobiński, C. F. Boutron, J. P. Candelone, S. Hong, J. Szpunar-Łobińska, F. C. Adams,Anal. Chem. 1993,65, 2510.Google Scholar
  17. [17]
    R. Łobiński, C. F. Boutron, J. P. Candelone, S. Hong. J. Szpunar-Łobińska, F. C. Adams,Environ. Sci. Technol. 1994,28, 1467.Google Scholar
  18. [18]
    R. Łobiński, J. Szpunar-Łobinska, F. C. Adams,Analusis 1994,22, M54.Google Scholar
  19. [19]
    J. R. Kramerr, E. H. Allen (eds.),Metal Speciation: Theory, Analysis and Application, Lewis, Chelsea, 1988.Google Scholar
  20. [20]
    R. M. Harrison, S. Rapsomanikis (eds.),Environmental Analysis Using Chromatography Interfaced with Atomic Spectroscopy, Ellis Horwood, Chichester, 1989.Google Scholar
  21. [21]
    G. E. Batley (ed.),Trace Element Speciation: Analytical Methods and Problems, CRC, Boca Raton, 1989.Google Scholar
  22. [22]
    T. M. Florence, G. E. Batley,CRC Crit. Rev. Anal. Chem. 1980,9, 219.Google Scholar
  23. [23]
    R. M. Harrison,CRC Crit. Rev. Anal. Chem. 1984,15, 1.Google Scholar
  24. [24]
    L. Ebdon, S. Hill, R. W. Ward,Analyst 1986,111, 1113.Google Scholar
  25. [25]
    L. Ebdon, S. Hill, R. W. Ward,Analyst 1987,112, 1.Google Scholar
  26. [26]
    A. Mizuike,Pure Appl. Chem. 1987,59, 555.Google Scholar
  27. [27]
    M. Betti, P. Papoff,CRC Crit. Rev. Anal. Chem. 1988,19, 271.Google Scholar
  28. [28]
    K. Robards, P. Starr, E. Palisalides,Analyst 1991,116, 1247.Google Scholar
  29. [29]
    Y. K. Chau,Analyst 1992,117, 571.Google Scholar
  30. [30]
    J. C. Van Loon, R. R. Barefoot,Analyst 1992,117, 563.Google Scholar
  31. [31]
    N. P. Vela, L. O. Olson, J. A. Caruso,Anal. Chem. 1993,65, 585A.Google Scholar
  32. [32]
    J. Szpunar-Łobińska, C. Witte, R. Łobiński, F. C. Adams,Fresenius J. Anal. Chem. 1995,351, 351.Google Scholar
  33. [33]
    R. Łobiński, W. M. R. Dirkx, J. Szpunar-Łobińska, F. C. Adams,Anal. Chim. Acta 1994,286, 381.Google Scholar
  34. [34]
    P. D. H. Laxen, R. M. Harrison,Anal. Chem. 1981,53, 345.Google Scholar
  35. [35]
    B. Kinsella, R. L. Willix,Anal. Chem. 1982.54, 2614.Google Scholar
  36. [36]
    P. Ceson, G. Scarponi, I. Maret, Sci.Total Environ. 1984,37, 95.Google Scholar
  37. [37]
    M. Radojevic, R. M. Harrison,Atmos. Environ. 1987,21, 2403.Google Scholar
  38. [38]
    R. J. A. Van Clevenbergen, W. Dirkx, P. Quevauviller, F. Adams,Int. J. Environ. Anal. Chem. 1992,47, 21.Google Scholar
  39. [39]
    W. R. A. De Jonghe, W. E. Van Mol, F. C. Adams,Anal Chem. 1983,55, 1050.Google Scholar
  40. [40]
    D. C. Baxter,Fresenius J. Anal. Chem. 1995,351, 461.Google Scholar
  41. [41]
    W. F. Pickering,CRC Crit. Rev. Anal. Chem. 1981,12, 233.Google Scholar
  42. [42]
    M. Kersten, U. Foster,Water Sci. Technol,1986,18, 121.Google Scholar
  43. [43]
    D. E. Wells,Mikrochim. Acta 1992,109, 13.Google Scholar
  44. [44]
    R. Rapin, A. Tessier, P. G. Campbell, R. Carigan,Environ. Sci. Technol. 1986,20, 836.Google Scholar
  45. [45]
    R. Bartlett, B. James,Soil Sci. Soc. Am. J. 1980,44, 721.Google Scholar
  46. [46]
    A. G. Allen, M. Radojevic, R. M. Harrison,Environ. Sci. Technol. 1988,22, 517.Google Scholar
  47. [47]
    C. N. Hewitt, P. J. Metcalfe,Sci. Total Environ. 1989,84, 211 124, 1.Google Scholar
  48. [48]
    C. N. Hewitt, R. M. Harrison, M. Radojevic,Anal. Chim. Acta 1986,188, 229.Google Scholar
  49. [49]
    C. Nerin, B. Pons, M. Martinez, J. Cacho,Mikrochim. Acta 1994,112, 179.Google Scholar
  50. [50]
    W. R. A. De Jonghe, D. Chakraborti, F. C. Adams,Environ. Sci. Technol. 1981,15, 1217.Google Scholar
  51. [51]
    D. Chakroborti, J. R. A. Van Clevenbergen, F. C. Adams,Environ. Sci. Technol. 1986,20, 589.Google Scholar
  52. [52]
    D. Chakraborti, W. R. A. De Jonghe, W. A. Van Mol, R. J. A. Van Cheuvenbergen, F. C. Adams,Anal. Chem. 1984,56, 2692.Google Scholar
  53. [53]
    R. J. A. Van Cheuvenbergen, D. Chakraborti, F. C. Adams,Environ. Sci. Technol. 1986,20, 589.Google Scholar
  54. [54]
    M. Radojevic, R. M. Harrison,Environ. Technol. Lett. 1986,7, 519.Google Scholar
  55. [55]
    M. Radojevic, A. Allen, S. Rapsomanikis, R. M. Harrison,Anal. Chem. 1986 58, 658.Google Scholar
  56. [56]
    R. Łobiński, F. C. Adams,Anal. Chim. Acta 1992,262, 285.Google Scholar
  57. [57]
    J. Szpunar-Lobińska, M. Ceulemans, W. Dirkx, C. Witte, R. Łobiński, F. C. Adams,Mikrochim. Acta 1994,113, 287.Google Scholar
  58. [58]
    J. S. Blais, W. D. Marshall,J. Anal. At. Spectrom. 1989,4, 271.Google Scholar
  59. [59]
    D. S. Forsyth, W. D. Marshall,Anal. Chem. 1983,55, 2132.Google Scholar
  60. [60]
    M. P. Bratzel Jr., C. L. Chakrabarti,Anal. Chim. Acta 1972,61, 25.Google Scholar
  61. [61]
    A. W. Jarre, R. N. Markall, H. R. Potter,Environ. Res. 1981,25, 241.Google Scholar
  62. [62]
    M. Radojevic, R. M. Harrison,Environ. Technol. Lett. 1985,6, 129.Google Scholar
  63. [63]
    S. Tillekeratne, M. Hiraide, A. Mizuike,Mikrochim. Acta 1984,III, 69.Google Scholar
  64. [64]
    R. Morabito,Fresenius J. Anal. Chem. 1995,351, 378.Google Scholar
  65. [65]
    T. L. Chester, J. D. Pinkston, D. E. Raynie,Anal. Chem. 1994,66, 106R.Google Scholar
  66. [66]
    I. J. Barnabas, J. R. Dean,Analyst 1994,119, 2381.Google Scholar
  67. [67]
    D. S. Forsyth, W. D. Marshall,Anal. Chem. 1985,57, 1299.Google Scholar
  68. [68]
    D. S. Forsyth,Anal. Chem. 1987,59, 1742.Google Scholar
  69. [69]
    Y. K. Chau, P. T. S. Wong, O. Kramar,Anal. Chim. Acta 1983,146, 211.Google Scholar
  70. [70]
    J. S. Blais, W. D. Marshall,J. Environ. Qual. 1986,15, 255.Google Scholar
  71. [71]
    Y. Liu, V. Lapczvila, M. Alcaraz, W. F. Beckert,J. High Res. Chrom. 1994,17, 527.Google Scholar
  72. [72]
    R. Łobiński, F. C. Adams,J. Anal. At. Spectrom. 1992,7, 987.Google Scholar
  73. [73]
    S. Rapsomanikis, O. F. X. Donard, J. H. Weber,Anal. Chem. 1986,58, 35.Google Scholar
  74. [74]
    J. Ashby, S. Clark, J. P. Craig,J. Anal. At. Spectrom. 1988,3, 735.Google Scholar
  75. [75]
    S. Tian, Y. K. Chau, D. Liu,Appl. Organomet. Chem. 1989,3, 249.Google Scholar
  76. [76]
    J. Bettmer, K. Cammann, M. Robecke,J. Chromatogr. 1993,654, 177.Google Scholar
  77. [77]
    K. Cammann, R. Robecke, J. Bettmer,Fresenius J. Anal. Chem. 1994,350, 30.Google Scholar
  78. [78]
    A. Al-Rasholan, D. Heitkemper, J. A. Caruso,J. Chromatogr. Sci. 1991,29, 89.Google Scholar
  79. [79]
    M. Blaszkewicz, G. Baumhoer, B. Neidhart,Int. J. Environ. Anal. Chem. 1987,28, 207.Google Scholar
  80. [80]
    H. Blaszkewicz, G. Baumhoer, B. Neidhart,Fresenius Z. Anal. Chem. 1984,317, 221.Google Scholar
  81. [81]
    M. Blaszkewicz, G. Baumhoer, B. Neidhart,Int. J. Environ. Anal. Chem. 1983,14, 11.Google Scholar
  82. [82]
    J. S. Blais, W. D. Marshall,J. Anal. At. Spectrom. 1989,4, 271.Google Scholar
  83. [83]
    A. Al-Rashdan, N. P. Vela, J. A. Caruso, D. T. Heitkemper,J. Anal. At. Spectrom. 1992,7, 551.Google Scholar
  84. [84]
    A. B. Brown, L. Ebdon, S. J. Hill,Anal. Chim. Acta 1994,286, 391.Google Scholar
  85. [85]
    A. M. Nagmush, K. Pyrzyńska, M. Trojanowicz,Talanta 1995, in press.Google Scholar
  86. [86]
    H. Blaszkewicz, G. Baumhoer, B. Neidhart,Fresenius Z. Anal. Chem. 1986,325, 129.Google Scholar
  87. [87]
    L. Ebdon, R. W. Ward, D. A. Leathard,Analyst 1982,107, 129.Google Scholar
  88. [88]
    B. Kolb, G. Kemmer, F. H. Schlesser, E. Wedeking,Fresenius Z. Anal. Chem. 1966,221, 166.Google Scholar
  89. [89]
    Y. K. Chau, P. T. S. Wong, P. D. Goulden,Anal. Chim. Acta 1976,85, 421.Google Scholar
  90. [90]
    L. Ebdon, J. I. Garcia Alonso, S. Hill, A. Hopkins,J. Anal. At. Spectrom. 1988,3, 395.Google Scholar
  91. [91]
    Y. L. Chau, P. T. S. Wong, O. Kramar,Anal. Chim. Acta 1976,85, 421.Google Scholar
  92. [92]
    B. Radziuk, Y. Thomassen, J. C. Van Loon,Anal. Chim. Acta 1979,105, 255.Google Scholar
  93. [93]
    D. Chakraborti, S. G. Jiang, S. Surkijn, W. R. DeJonghe, F. Adams,Anal. Proc. 1981,47, 2279.Google Scholar
  94. [94]
    B. Radziuk, Y. Thomassen, L. R. Butler, J. C. Van Loon,Anal. Chim. Acta 1979,108, 31.Google Scholar
  95. [95]
    R. Bye, P. E. Pans,At. Absorp. Newsl. 1978,17, 151.Google Scholar
  96. [96]
    L. Brown, S. J. Haswell, M. M. Rhead, P. O'Neil, K. C. Bancroft,Analyst 1983,108, 1511.Google Scholar
  97. [97]
    E. J. Parks, F. E. Brinckman, K. L. Jewett, W. R. Blair, C. S. Weiss,Appl. Organomet. Chem. 1988,2, 441.Google Scholar
  98. [98]
    O. Nygren, C. A. Nilsson, W. Frech,Anal. Chem. 1988,60, 2204.Google Scholar
  99. [99]
    J. S. Biais, G. M. Momplaisir, W. D. Marshall,Anal. Chem. 1990,62, 1161.Google Scholar
  100. [100]
    D. Erber, J. Bettmer, K. Cammann,Fresenius J. Anal. Chem. 1994,349, 738.Google Scholar
  101. [101]
    S. A. Estes, P. C. Uden, R. M. Barnes,Anal. Chem. 1981,53, 1336.Google Scholar
  102. [102]
    D. C. Reamer, W. H. Zoller, T. C. O'Hover,Anal. Chem. 1978,50, 1449.Google Scholar
  103. [103]
    G. M. Greenway, N. W. Barnett,J. Anal. At. Spectrom. 1989,4, 783.Google Scholar
  104. [104]
    S. A. Estes, P. C. Uden, R. M. Barnes,Anal. Chem. 1982,54, 2402.Google Scholar
  105. [105]
    P. C. Uden,Element Specific Chromatographic Detection by Atomic Emission Spectroscopy, ACS Symposium Series 479, Washington, DC, 1992.Google Scholar
  106. [106]
    T. Kato, T. Udeiro, A. Yasuhara, M. Morita,J. Anal. At. Spectrom. 1992,7, 15.Google Scholar
  107. [107]
    A. Boorn, R. F. Browner,Anal. Chem. 1982,54, 1402.Google Scholar
  108. [108]
    K. Jinno, S. Nakanishi, C. Fujimoto,Anal. Chem. 1985,57, 2229.Google Scholar
  109. [109]
    L. Ebdon, E. H. Evans, N. W. Barnett,J. Anal At. Spectrom. 1989,4, 505.Google Scholar
  110. [110]
    K. E. Freniere, V. A. Fassel, D. E. Eckels,Anal. Chem. 1987,59, 879.Google Scholar
  111. [111]
    S. B. Raychowdhury, J. A. Koropchak,Anal. Chem. 1990,62, 484.Google Scholar
  112. [112]
    S. R. Wang, S. J. Jiang,J. Chinese Chem. Soc. 1991,38, 327.Google Scholar
  113. [113]
    O. Nygren, C. A. Nilsson,J. Anal. At. Spectrom. 1987,2, 805.Google Scholar
  114. [114]
    N. P. Vela, L. K. Olson, J. A. Caruso,Anal. Chem. 1993,65, 585A.Google Scholar
  115. [115]
    H. Suyani, J. Creed, T. Davidson, J. A. Caruso,J. Chromatogr. Sci. 1989,27, 139.Google Scholar
  116. [116]
    D. Heitkemper, J. Creed, T. Davidson, J. A. Caruso,J. Anal At. Spectrom. 1989,4, 279.Google Scholar
  117. [117]
    A. L. Kim, M. E. Foulknes, L. Ebdon, S. J. Hill, R. L. Patience, A. G. Barwise, S. J. Rowland, J.Anal. At. Spectrom. 1992,7, 1147.Google Scholar
  118. [118]
    C. L. Ng, H. K. Lee, S. F. Y. Li,J. Chromatogr. 1993,652, 547.Google Scholar
  119. [119]
    M. Ibrahim, T. W. Gilbert, J. A. Caruso,J. Chromatogr. Sci. 1984,22, 111.Google Scholar
  120. [120]
    B. Gercken, R. M. Barnes,Anal. Chem. 1991,63, 283.Google Scholar
  121. [121]
    P. Quevauviller, E. A. Maier, B. Greipink,Fresenius J. Anal. Chem. 1993,345, 282.Google Scholar

Copyright information

© Springer-Verlag 1996

Authors and Affiliations

  • Krystyna Pyrzyńska
    • 1
  1. 1.Department of ChemistryUniversity of WarsawWarsawPoland

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