Topics in Current Chemistry

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186 Wilfred E. Kleinjan et al. thionates (􏱐O3S-Sn-SO3􏱐). Adsorbed organic polymers such as proteins cause the hydrophilic properties of sulfur produced in biotechnological sulfide oxidation installations by a mixed culture of Thiobacilli. Due to the small particle size and hydrophilic surface, biologically pro- duced sulfur has advantages over other available sulfur sources in bioleach- ing and fertilizer applications. References 1. H. G. Trüper, J. C. Hathaway, Nature 1967, 215, 435-436. 2. J. G. Kuenen, Plant Soil 1975, 43, 49-76. 3. D. C. Brune, Biochim. Biophys. Acta 1989, 975, 189-221. 4. T. Brüser, P. N. L. Lens, H. G. Trüper in Environmental technologies to treat sulfur pollu- tion-principles and engineering (Eds.: P.N. L. Lens, L. Hulshoff Pol), IWA Publishing, London, 2000, pp. 47-85. 5. H. G. Schlegel, General Microbiology, 7th ed. Cambridge University Press, Cambridge, 1995, p. 390. 6. J. M. Visser, G. C. Stefess, L. A. Robertson, J. G. Kuenen, Antonie Van Leeuwenhoek 1997, 72, 127-134. 7. G. L. Schmidt, G. L. Nicolson, M. D. Kamen, J. Bacteriol. 1971, 105, 1137-1141. 8. J. Then, H. G. Trüper, Arch. Microbiol. 1983, 135, 254-258. 9. N. H. Lawry, V. Jani, T. E. Jensen, Curr. Microbiol. 1981, 6, 71-74. 10. D. Y. Sorokin, J. G. Kuenen, M. S. M. Jetten, Arch. Microbiol. 2001, 175, 94-101. 11. K. S. Cho, M. Hirai, M. Shoda, Appl. Environ. Microbiol. 1992, 58, 1183-1189. 12. Y. Cohen, E. Padan, M. Shilo, J. Bacteriol. 1975, 123, 855-861. 13. J. F. Imhoff, J. Suling, R. Petri, Int. J. Syst. Bacteriol. 1998, 48, 1129-1143. 14. J. F. Imhoff, J. Suling, Arch. Microbiol. 1996, 165, 106-113. 15. D. P. Kelly, A. P. Wood, Int. J. Syst. Evol. Microbiol. 2000, 50, 511-516. 16. D. Y. Sorokin, L. A. Robertson, J. G. Kuenen, Antonie Van Leeuwenhoek 2000, 77, 251-262. 17. W. R. Strohl, I. Geffers, J. M. Larkins, Curr. Microbiol. 1981, 6, 75-79. 18. G. L. Nicolson, G. L. Schmidt, J. Bacteriol. 1971, 105, 1142-1148. 19. A. Janssen, A. de Keizer, A. van Aelst, R. Fokkink, H. Yangling, G. Lettinga, Colloid Surf. B-Biointerfaces 1996, 6, 115-129. 20. J. Lyklema, Pure Appl. Chem. 1976, 46, 149-156. 21. J. Lyklema, G. J. Fleer, Colloids Surfaces 1987, 25, 357-368. 22. C. L. Tiller, C. R. O􏰸Melia, Colloid Surf. A-Physicochem. Eng. Asp. 1993, 73, 89-102. 23. R. D. Vetter, Mar. Biol. 1985, 88, 33-42. 24. R. Steudel in Autotrophic bacteria (Eds.: H. G. Schlegel, B. Bowien), Science Techonolo- gy Publishers, Madison, WI,1989, pp. 289-303. 25. I. J. Pickering, G. N. George, E. Y. Yu, D. C. Brune, C. Tuschak, J. Overmann, J. T. Beatty, R. C. Prince, Biochemistry 2001, 40, 8138-8145. 26. J. D. Pasteris, J. J. Freeman, S. K. Goffredi, K. R. Buck, Chem. Geol. 2001, 180, 3-18. 27. A. Prange, I. Arzberger, C. Engemann, H. Modrow, O. Schumann, H. G. Trüper, R. Steudel, C. Dahl, J. Hormes, Biochim. Biophys. Acta 1999, 1428, 446-454. 28. A. Prange, R. Chauvistre, H. Modrow, J. Hormes, H. G. Trüper, C. Dahl, Microbiology- (UK) 2002, 148, 267-276. 29. K. Pattaragulwanit, D. C. Brune, H. G. Trüper, C. Dahl, Arch. Microbiol. 1998, 169, 434-444. 30. G. J. Hageage, E. D. Eanes, R. L. Gherna, J. Bacteriol. 1970, 101, 464-469. 31. R. Guerrero, J. Mas, C. Pedrós-Alió, Arch. Microbiol. 1984, 137, 350-356. 32. J. Mas, H. van Gemerden, Arch. Microbiol. 1987, 146, 362-369.

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