Skip to main content
Log in

Analytical methods for the speciation of selenium compounds: a review

  • Reviews
  • Published:
Fresenius' Journal of Analytical Chemistry Aims and scope Submit manuscript

Abstract

Selenium, like sulphur, exists in the environment in several oxidation states and as a variety of inorganic and organic compounds. Dissolved inorganic selenium can be found in natural waters as selenide Se (−II), as colloidal elemental selenium Se (0), as selenite anions HSeO 3 and SeO 2−3 i.e. Se (+IV) and as the selenate anion (SeO 2−4 ) i.e. Se (+VI). Organic forms of selenium that may be found in organisms, air or in the aqueous environment, are volatile (methylselenides) or non volatile (trimethylselenonium ion, selenoamino acids and their derivatives). Knowledge of the different chemical forms and their environmental and biomedical distribution is important because of the dependence of bioavailability and toxicity on speciation. This paper reviews the different analytical methods used for the speciation of selenium compounds, with special attention to inorganic selenium and organoselenium species.

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.

Similar content being viewed by others

References

  1. Robberecht H, Van Grieken R (1982) Talanta 29:823–844

    Google Scholar 

  2. Thomson JJ, Houk RS (1986) Anal Chem 58:2541–2548

    Google Scholar 

  3. Childress WL, Erickson D, Krull IS (1992) ACS Sypm Ser 479 (ch 15):257–274

    Google Scholar 

  4. Nieto KF, Frankenberger WT Jr (1985) Soil Sci Soc Am J 49:592–596

    Google Scholar 

  5. Karlson U, Frankenberger WT Jr (1986) Anal Chem 58:2704–2708

    Google Scholar 

  6. Blotcky AJ, Hansen GT, Borkar N, Ebrahim A, Rack EP (1987) Anal Chem 59:2063–2066

    PubMed  Google Scholar 

  7. Blotcky AJ, Ebrahim A, Rack EP (1988) Anal Chem 60:2734–2737

    PubMed  Google Scholar 

  8. Mac Carthy JP, Caruso JA, Fricke FL (1983) J Chromatog Sci 21:389–393

    Google Scholar 

  9. Shibata Y, Morita M, Fuwa K (1984) Anal Chem 8:1527–1530

    Google Scholar 

  10. Sarzanini C, Abollino O, Mentasti E, Porta V (1990) Chromatogr 30:293–297

    Google Scholar 

  11. Mehra HC, Frankenberger WT (1988) Chromatographia 25:585–588

    Google Scholar 

  12. Goyal S, Hafez A, Rains DW (1991) J Chromatog 537:269–276

    Google Scholar 

  13. Mc Geehan SL, Naylor DV (1992) J Environ Qual 21:68–73

    Google Scholar 

  14. Gerritse RG, Adeney JA (1985) J Chromatog 347:419–428

    Google Scholar 

  15. Zolotov YA, Shipgun OA, Bubchikova LA (1983) Fresenius Z Anal Chem 316:8–12

    Google Scholar 

  16. Chakraborti D, Hillman DCJ, Irgolic KJ, Zingaro RA (1982) J Chromatog 249:81–92

    Google Scholar 

  17. Roden DR, Tallman DE (1982) Anal Chem 54:307–309

    Google Scholar 

  18. Shibata Y, Morita M, Fuwa K (1985) Analyst 10:1269–1270

    Google Scholar 

  19. Lafreniere KE, Fassel VA, Eckel DE (1987) Anal Chem 59:879–887

    Google Scholar 

  20. Nakata F, Sunahara H, Matsuo H, Kumamaru T (1986) Bunseki Kagaku 5:439–445

    Google Scholar 

  21. Shimoishi Y (1973) Anal Chim Acta 64:465–468

    Google Scholar 

  22. Kurahaschi K, Inque S, Toêi K, Shimoishi Y (1980) Analyst 105:690–695

    PubMed  Google Scholar 

  23. Shimoishi Y (1977) J. Chromatog 136:85–93

    Google Scholar 

  24. Shimoishi Y, Toêi K (1978) Anal Chim Acta 100:65–73

    Google Scholar 

  25. Uchida H, Shimoishi Y, Toêi K (1980) Environ Sci Technol 14:541–544

    Google Scholar 

  26. Toêi K, Shimoishi Y (1981) Talanta 28:967–972

    Google Scholar 

  27. Measures CI, Burton JD (1980) Anal Chim Acta 120:177–186

    Google Scholar 

  28. Irgolic JK, Stockton RA, Chakraborti D, Beyer W (1983) Spectrochim Acta 38B:437–445

    Google Scholar 

  29. Talmi Y, Andren AW (1974) Anal Chem 46:2122–2123

    PubMed  Google Scholar 

  30. Reamer DC, Veillon C (1981) Anal Chem 53:2166–2169

    PubMed  Google Scholar 

  31. Chan CCY (1976) Anal Chim Acta 82:213–215

    Google Scholar 

  32. Nakaguchi Y, Hirachi K, Tamari Y, Fukunaga Y, Nihikawa Y, Shigematsu T (1985) Anal Sci 1:247–252

    Google Scholar 

  33. Tamari Y, Hirai R, Tsuji H, Kusaka Y (1987) Anal Sci 3:313–317

    Google Scholar 

  34. Takayanagi K, Wong GTF, Filardo MJ (1989) J of Oceanogr Soc of Japan 45:129–133

    Google Scholar 

  35. Wang D, Sippola J (1990) Annales Agriculturae Fenniae 29:151–156

    Google Scholar 

  36. Cutter GA (1978) Anal Chim Acta 98:59–66

    Google Scholar 

  37. Yu MQ, Liu GQ, Jin Q (1983) Talanta 30:265–270

    Google Scholar 

  38. Cutter GA, Bruland KW (1984) Limnol Oceanog 29:1179–1192

    Google Scholar 

  39. Fio JL, Fujii R (1990) Soil Sci Soc Am J 54:363–369

    Google Scholar 

  40. Xhukun X, Suchin Z, Zhaolun F (1990) Chinese Science Bulletin 35:526–527

    Google Scholar 

  41. Masscheleyn PH, Delaune RD, Patrick W Jr (1991) Spectrosc Lett 24(2):307–322

    Google Scholar 

  42. Mayer D, Haubenwaallner S, Kosmus W (1992) Anal Chim Acta 268:315–321

    Google Scholar 

  43. Reamer DC, Veillon C, Tokousbalides PT (1981) Anal Chem 53:245–248

    Google Scholar 

  44. Reamer DC, Veillon C (1981) Anal Chem 53:1192–1195

    PubMed  Google Scholar 

  45. Krivan V, Petrick K, Welz B, Melcher M (1985) Anal Chem 57:1703–1706

    Google Scholar 

  46. Ebdon L, Sparkes ST (1987) Microchem J 36(2):198–206

    Google Scholar 

  47. Parker LR, Thioh NH, Barnes RM (1985) Appl Spectrosc 30:45–48

    Google Scholar 

  48. Buckley WT, Budac JJ, Godfrey DV (1992) Anal Chem 64:724–729

    PubMed  Google Scholar 

  49. Brimmer SP, Fawcett WR, Kulhavy KA (1987) Anal Chem 59:1470–1471

    Google Scholar 

  50. Campanella L, Ferri T, Morabito R (1989) Analusis 17:507–513

    Google Scholar 

  51. Batley GE (1986) Anal Chim Acta 187:109–116

    Google Scholar 

  52. Aydin H, Tan GH (1991) Analyst 116:941–945

    Google Scholar 

  53. Zelic M, Branica M (1990) Electroanalysis 2:455–462

    Google Scholar 

  54. Namdeo RP, Pitre K (1991) Bull Electrochim 7(9):421–426

    Google Scholar 

  55. Van Den Berg GMG, Khan SH (1990) Anal Chim Acta 231:221–229

    Google Scholar 

  56. Breyer Ph, Gilbert BP (1987) Anal Chim Acta 201:33–41

    Google Scholar 

  57. Stara V, Kopanica M (1988) Anal Chim Acta 208:231–236

    Google Scholar 

  58. Jarzabek G, Kublik Z (1982) Anal Chim Acta 143:121–130.

    Google Scholar 

  59. Gray AGH, Waters AJ (1980) Anal Chim Acta 118:87–91

    Google Scholar 

  60. Lemly AD (1982) Environ Technol Lett 3:497–502

    Google Scholar 

  61. Cutter GA (1985) Anal Chem 57:2951–2955

    Google Scholar 

  62. Ericzon C, Pettersson J, Andersson M, Olin Ä (1989) Environ Sci Technol 23:1524–1528

    Google Scholar 

  63. Cutter GA (1989) Coastal and Shelf Science 28:13–34

    Google Scholar 

  64. Cutter GA, San Diego-Mcglone MLC (1990) Sci Total Environ 98/98:235–250

    Google Scholar 

  65. Tanzer D, Heumann KG (1991) Anal Chem 63:1984–1989

    PubMed  Google Scholar 

  66. Lamleung SY, Cheng VKW, Lam YW (1991) Analyst 116:957–959

    Google Scholar 

  67. Mayer D, Haubenwallners S, Kosmus W (1992) Anal Chim Acta 268:315–321

    Google Scholar 

  68. Dong A, Rending VV, Burau RG, Besga GS (1987) Anal Chem 59:2728–2730

    Google Scholar 

  69. Sanzolone RF, Chao TT (1987) Geostand Newlett 11 no 1:81–85

    Google Scholar 

  70. Oien A, Wu X, Dahl I (1988) Acta Agric Scand 38:127–135

    Google Scholar 

  71. Yamada H, Haltori T (1989) Soil Sci Plant Nutr 35(4):553–563

    Google Scholar 

  72. Xhukun X, Suchun Z, Zhaolun F (1990) Chin Sci Bull 35:526–527

    Google Scholar 

  73. Potin-Gautier M, Astruc M, Vermeulin P (1991) Analusis 19:m57–m62

    Google Scholar 

  74. Potin-Gautier M, Astruc M, Vermeulin P, Clement A (1992) Analusis 20:m73–m76

    Google Scholar 

  75. Ihnat M, Miller HJ (1977) J AOAC 60 no 4:813–825

    Google Scholar 

  76. Dabeka RW, McKenzie AD (1991) Can J Appl Spectrosc 36 no 5:123–126

    Google Scholar 

  77. Willie SN, Sturgeon RE, Berman SS (1986) Anal Chem 58:1140–1143

    Google Scholar 

  78. Kuldvere A (1989) Analyst 114:125–131

    Google Scholar 

  79. Bye R (1988) Anal Chem 60:1631–1632

    Google Scholar 

  80. Bye R (1983) Talanta 30:993–996

    Google Scholar 

  81. Krivan V, Petrick K, Welz B, Melcher M (1985) Anal Chem 57:1703–1706

    Google Scholar 

  82. Hansson L, Petterson J, Olin A (1987) Talanta 34:829–833

    Google Scholar 

  83. Pettersson J, Hansson L, Olin A (1986) Talanta 33:249–254

    Google Scholar 

  84. Duce RA, Hoffman GL, Zoller WH (1975) Science 187:59–61

    Google Scholar 

  85. Mosher BW, Duce RA (1983) J Geophys Res 88:6761–6768

    Google Scholar 

  86. Mosher BW, Duce RA (1987) J Geophys Res 92:13289–13298

    Google Scholar 

  87. Challenger F (1945) Chem Rev 36:315–361

    Google Scholar 

  88. Challenger F (1951) Adv Enzymol 12:429–491

    Google Scholar 

  89. McConnell KP, Portman OW (1952) J Biol Chem 195:277–282

    PubMed  Google Scholar 

  90. McConnell KP, Roth DM (1966) Proc Soc Exptl Biol Med 123:919–923

    Google Scholar 

  91. Petersen DF, Klug HL, Harshfield RD (1951) Proc S Dakota Acad Sci 30:73–78

    Google Scholar 

  92. Sternberg J, Brodeur J, Imbach A, Mercier A (1968) Int J Appl Radiat Isotopes 19:669–684

    Google Scholar 

  93. Shrift A (1958) Bot Rev 24:550–562

    Google Scholar 

  94. Hirooka T, Galambos JT (1966) Biochim Biophys Acta 130:313–320

    PubMed  Google Scholar 

  95. Ganther HE, Levander OA, Baumann CA (1966) J Nutrition 88:55–60

    Google Scholar 

  96. Rosenfeld I, Beath OA (1964) Selenium geochemistry, biochemistry, toxicity and nutrition. Academic Press, New York, p 103

    Google Scholar 

  97. Virupaksha TK, Shrift A (1965) Biochem Biophys Acta 107:69–80

    PubMed  Google Scholar 

  98. Lewis BG, Johnson GM, Delwiche CC (1966) J Agric Food Chem 14:638–640

    Google Scholar 

  99. Asher CJ, Evans CS, Johnson CM (1967) Aust J Biol Sci 20:737–748

    Google Scholar 

  100. Evans CS, Asher CJ, Johnson CM (1968) Aust J Biol Sci 21:13–20

    Google Scholar 

  101. Lewis BG, Johnson CM, Broyer TC (1974) Plant Soil 40:107–118

    Google Scholar 

  102. Radziuk B, Van Loon J (1976) Sci Total Environ 6:251–257

    Google Scholar 

  103. Van Loon JC, Radziuk B, Kahn N, Lichwa J, Fernandez FJ, Kerber JD (1977) At Absorp Newslett 16:79–83

    Google Scholar 

  104. Dransfield PB, Challenger F (1955) J Chem Soc 1955:1153–1160

    Google Scholar 

  105. Doran JA, Alexander M (1977) Soil Sci Soc Am J 41:70–73

    Google Scholar 

  106. Chasteen TG, Silver GM, Birks JW, Fall R (1990) Chromatographia 30:181–185

    Google Scholar 

  107. Francis AJ, Duxburry JM, Alexander M (1974) Appl Microbiol 28:248–250

    PubMed  Google Scholar 

  108. Abu-Erreish GM, Whitehead EI, Olson OE (1968) Soil Sci 106:415–420

    Google Scholar 

  109. Reamer DC, Zoller WH (1980) Science 208:500–502

    Google Scholar 

  110. Jiang G, Ni Z, Zhang L, Li A, Han H, Shan X (1992) J Anal At Spectrom 7:447–450

    Google Scholar 

  111. Barkes L, Fleming RW (1974) Bull Environ Contam Toxicol 12:308–311

    PubMed  Google Scholar 

  112. Doran JW (1982) Adv Microb Ecol 6:1–32

    Google Scholar 

  113. Karlson U, Frankenberger WT (1988) Soil Sci Soc Am J 52:678–681

    Google Scholar 

  114. Chau YK, Wong PTS, Silverberg BA, Luxon PL, Bengert GA (1976) Science 192:1130–1131

    Google Scholar 

  115. Fleming RW, Alexander M (1972) Appl Microbiol 24:424–429

    PubMed  Google Scholar 

  116. Reamer DC (1978) Methods for the determination of atmospheric tetraalkyllead and alkyl selenide species using a GC microwave plasma detector. Ph D Thesis, Dept of Chemistry, University of Maryland, USA

    Google Scholar 

  117. Jiang SG, Robberecht H, Adams F (1989) Appl Organomet Chem 3:99–104

    Google Scholar 

  118. Jiang S, Robberecht H, Adams F (1983) Atmos Environ 17:111–114

    Google Scholar 

  119. Cooke TD, Bruland KW (1987) Environ Sci Technol 21:1214–1219

    Google Scholar 

  120. Jiang S, De Jonghe W, Adams F (1982) Anal Chim Acta 136:183–190

    Google Scholar 

  121. Foster SJ, Kraus RJ, Ganther HE (1986) Arch Biochem Biophys 251:77–86

    PubMed  Google Scholar 

  122. Chau YK, Wong PTS, Goulden PD (1975) Anal Chem 47:2279–2281

    Google Scholar 

  123. Ridley WP, Dizikes LJ, Wood JM (1977) Science 197:329–332

    PubMed  Google Scholar 

  124. Lewis BG (1976) Selenium in biological systems, and pathways for its volatilization in higher plants. In: Environmental biogeochemistry. Ann Arbor, MI, 1:389–409

  125. McConnell KP, Portman OW (1952) Proc Soc Exptl Biol Med 79:230–231

    Google Scholar 

  126. Oyamada N, Kikuchi M, Ishizaki M (1987) Anal Sci 3:373–376

    Google Scholar 

  127. Karlson U, Frankenberger WT (1988) Soil Sci Soc Am J 52:1640–1644

    Google Scholar 

  128. Vlasakova V, Benes J, Parizek J (1972) Radiochem Radioanal Lett 10:251–258

    Google Scholar 

  129. Jiang SG, Chakraborti D, Adams F (1987) Anal Chim Acta 196:271–275

    Google Scholar 

  130. Evans CS, Johnson CM (1966) J Chromatog 21:202–206

    Google Scholar 

  131. D'Ulivo A, Papoff P (1986) J Anal At Spectrom 1:479–484

    Google Scholar 

  132. Jauregui-Adell J (1966) Advan Prot Chem 21:387–415

    Google Scholar 

  133. Stadtman TC (1974) Science 183:915–922

    PubMed  Google Scholar 

  134. Klayman D, Gunther W (1973) Organic selenium compounds, their chemistry and biology. Wiley, New York

    Google Scholar 

  135. Greeder GA, Milner JA (1980) Science 209:825–827

    PubMed  Google Scholar 

  136. Foster SJ, Kraus RJ, Ganther HE (1986) Arch Biochem Biophys 251:77–86

    PubMed  Google Scholar 

  137. Kajander EO, Pajula RL, Harvima RJ, Eloranta TO (1989) Anal Biochem 179:396–400

    PubMed  Google Scholar 

  138. McConnell KP, Wabnitz CH (1957) J Biol Chem 226:765–776

    PubMed  Google Scholar 

  139. Peterson PJ, Butler GW (1962) Aust J Biol Sci 15:126–146

    Google Scholar 

  140. Martin JL, Gerlach ML (1969) Anal Biochem 29:257–264

    PubMed  Google Scholar 

  141. Ouyang Z, Wu J (1988) Biomed Chromatogr 2:258–259

    PubMed  Google Scholar 

  142. Yasumoto K, Suzuki T, Yoshida M (1988) J Agric Food Chem 36:463–467

    Google Scholar 

  143. Yasumoto K, Suzuki T, Yoshida M (1984) Nutr Sci Soy Protein Jpn 5:48–52

    Google Scholar 

  144. Yasumoto K, Iwami K, Yoshida M (1983) Nutr Sci Soy Protein Jpn 4:35–40

    Google Scholar 

  145. Olson OE, Novacek EJ, Whitehead EI, Palmer IS (1970) Phytochem 9:1181–1188

    Google Scholar 

  146. Olson OE, Palmer S (1976) Metabolism 25:299–306

    PubMed  Google Scholar 

  147. Beilstein MA, Tripp MJ, Whanger PD (1981) J Inorg Biochem 15:339–347

    PubMed  Google Scholar 

  148. Beilstein MA, Whanger PD (1986) J Nutr 116:1711–1719

    PubMed  Google Scholar 

  149. Virupaksha TK, Shrift A (1963) Biochim Biophys Acta 74:791–793

    PubMed  Google Scholar 

  150. Lewis B, Johnson CM, Broyer TC (1971) Biochim Biophys Acta 237:603–607

    PubMed  Google Scholar 

  151. Virupaksha TK, Shrift A, Tarver H (1966) Biochim Biophys Acta 130:45 (as reported in 140)

    Google Scholar 

  152. Rotruck JT, Pope AL, Ganther HE, Swanson AB, Hafeman DG, Hoekstra WG (1973) Science 179:588–590

    PubMed  Google Scholar 

  153. Oh SH, Ganther HE, Hoekstra WG (1974) Biochem 13:1825–1828

    Google Scholar 

  154. Flohe L, Gunzler WA, Schock HH (1973) FEBS Lett 32:132–134

    PubMed  Google Scholar 

  155. Cone JE, Del Rio RM, Davis JN, Stadtman TC (1976) Proc Natl Acad Sci USA 73:2659–2663

    PubMed  Google Scholar 

  156. Cone JE, Del Rio RM, Stadtman TC (1977) J Biol Chem 252:5337–5343

    PubMed  Google Scholar 

  157. Forstrom JW, Zakowski JJ, Tappel AL (1978) Biochem 17:2639–2644

    Google Scholar 

  158. Kraus RJ, Foster SJ, Ganther HE (1983) Biochem 22:5853–5858

    Google Scholar 

  159. Ladenstein R, Epp O, Wendel A (1981) The structure of the selenoenzyme GSH peroxidase. In: Structural and functional aspects of enzyme catalysis. Eggerer H, Huber R (eds) Spinger, Berlin, pp 104–113

    Google Scholar 

  160. Jones JB, Dilworth GL, Stadtman TC (1979) Arch Biochem Biophy 195:255–260

    Google Scholar 

  161. Yamazaki S (1982) J Biol Chem 257:7926–7929

    PubMed  Google Scholar 

  162. Stadtman TC (1984) Methods in Enzymology 107:576–581

    PubMed  Google Scholar 

  163. Hartmanis MG, Stadtman TC (1982) Proc Natl Acad Sci USA 79:4912–4916

    PubMed  Google Scholar 

  164. Sliwkowski MX (1984) Methods in Enzymology 107:620–623

    PubMed  Google Scholar 

  165. Sliwkowski MX, Stadtman TC (1985) J Biol Chem 260:3140–3144

    PubMed  Google Scholar 

  166. Tappel AL, Hawkes WC, Wilhelmsen EC, Motsenbocker MA (1984) Methods in Enzymology 107:602–619

    PubMed  Google Scholar 

  167. Motsenbocker MA, Tappel AL (1982) Biochim Biophys Acta 704:153–260

    Google Scholar 

  168. Burk RF (1986) J Nutr 116:1584–1586

    PubMed  Google Scholar 

  169. Sunde RA, Hoekstra WG (1980) Biochem Biophys Res Commun 93:1181–1188

    PubMed  Google Scholar 

  170. Cutter GA (1982) Science 217:829–831

    Google Scholar 

  171. Cutter GA (1989) In: Occurrence and distribution of selenium: freshwater systems. Ihnat M (ed) CRC Press: Boca Raton, FL, pp 243–262

    Google Scholar 

  172. Foda A, Vandermeulen JH, Wrench JJ (1983) Can J Fish Aquat Sci 40:215–220

    Google Scholar 

  173. Wrench JJ (1978) Mar Biol 49:231–236

    Google Scholar 

  174. Wrench JJ, Campbell NC (1981) Chemosphere 10:1155–1161

    Google Scholar 

  175. Abrams MM, Burau RG (1989) Commun in Soil Sci Plant Anal 20:221–237

    Google Scholar 

  176. Bottino NR, Banks CH, Irgolin KJ, Micks P, Wheeler AE, Zingaro RA (1984) Phytochem 23:2445–2552

    Google Scholar 

  177. Caldwell KA, Tappel AL (1968) J Chromatogr 32:635–640

    PubMed  Google Scholar 

  178. Wu J, Ouyang Z (1987) Sepu Chin J chromatogr 5:236–238

    Google Scholar 

  179. Xie L, Ouyang Z (1990) Sepu Chin J Chromatogr 8:250–251

    Google Scholar 

  180. Wu J, Ouyang Z (1988) Sepu Chin J Chromatogr 6:198–200

    Google Scholar 

  181. Chin CCQ (1984) Methods in Enzymol 106:17–21

    Google Scholar 

  182. Martin JL, Cummins LM (1966) Anal Biochem 15:530–532

    PubMed  Google Scholar 

  183. Benson JW, Patterson JA (1969) Anal Biochem 29:130–135

    PubMed  Google Scholar 

  184. Walter R, Schlesinger DH, Schwartz IL (1969) Anal Biochem 27:231–243

    PubMed  Google Scholar 

  185. Huber RE, Criddle RS (1967) Biochim Biophys Acta 141:587–599

    PubMed  Google Scholar 

  186. Ganther HE, Kraus RJ, Foster SJ (1984) Methods in Enzymol 107:582–592

    Google Scholar 

  187. Barak AJ, Swanberg SC (1967) J Chromatogr 31:282–284

    PubMed  Google Scholar 

  188. Hansen SH, Pulsen MN (1991) Acta Pharm Nord 3:95–97

    Google Scholar 

  189. Lei T, Marshall WD (1992) Determination of selenoamino acids by HPLC-AAS, 38th Canadian Spectroscopy Conference, August 9–12, Trent University Peterborough, Ontario

  190. Matni G, Azani R, Blais JS (1992) Determination of Seamino acids by HPLC — Thermochemical hydride generation — AAS, 38th Canadian Spectroscopy Conference, August 9–12, Trent University Peterborough Ontario

  191. Byard JL (1969) Arch Biochem Biophys 130:556–560

    PubMed  Google Scholar 

  192. Palmer IS, Fischer DD, Halverson AW, Olson OE (1969) Biochim Biophys Acta 177:336–342

    PubMed  Google Scholar 

  193. Nahapetian AT, Janghorbani M, Young VR (1983) J Nutr 113:401–411

    PubMed  Google Scholar 

  194. Palmer IS, Gunsalus RP, Halverson AW, Olson OE (1970) Biochim Biophys Acta 208:260–266

    PubMed  Google Scholar 

  195. Kraus RJ, Foster SJ, Ganther HE (1985) Anal Biochem 147:432–436

    PubMed  Google Scholar 

  196. Burk RF (1976) In: Trace elements in human health and disease, Prasad A (ed) Vol II. Academic Press, New York, pp 105–133

    Google Scholar 

  197. Ganther HE (1984) Proceedings of the third international symposium on selenium in biology and medicine, Beijing, PRC, May 28–June 2

  198. Nahapetian AT, Young VR, Janghorbani M (1984) Anal Biochem 140:56–62

    PubMed  Google Scholar 

  199. Blotcky AJ, Hansen GT, Opelanio-Buencamino LR, Rack EP (1985) Anal Chem 57:1937–1941

    PubMed  Google Scholar 

  200. Sun XF, Ting BTG, Janghorbani M (1987) Anal Biochem 167:304–311

    PubMed  Google Scholar 

  201. Blais JS, Huyghues-Despointes A, Momplaisir GM, Marshall WD (1991) J Anal At Spectrom 6:225–232

    Google Scholar 

  202. Oyamada N, Ishizaki M (1986) Anal Sci 2:365–369

    Google Scholar 

  203. Gargaro G, Gasparrini F, Misiti D, Palmieri G, Pierini M, Villani C (1987) Chromatographia 24:505–508

    Google Scholar 

  204. Bottura G, Pavesi MA (1987) Microchem J 35:112–119

    Google Scholar 

  205. Bottura G, Pavesi MA (1987) Microchem J 35:223–226

    Google Scholar 

  206. Rabenstein DL, Reid RS, Yamashita G, Tan KS, Arnold AP (1986) Anal Chem 58:1266–1269

    Google Scholar 

  207. Killa HMA, Rabenstein DL (1988) Anal Chem 60:2283–2287

    PubMed  Google Scholar 

  208. Killa HMA, Rabenstein DL (1989) J Chromatogr 465:359–368

    PubMed  Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

About this article

Cite this article

Dauchy, X., Potin-Gautier, M., Astruc, A. et al. Analytical methods for the speciation of selenium compounds: a review. Z. Anal. Chem. 348, 792–805 (1994). https://doi.org/10.1007/BF01780980

Download citation

  • Received:

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF01780980

Keywords

Navigation