Biooxidation of hydrogen sulfide to sulfur by moderate thermophilic acidophilic bacteria

被引:0
|
作者
R. Romero
P. Viedma
D. Cotoras
机构
[1] Universidad de Chile,Departamento de Bioquímica y Biología Molecular, Facultad de Ciencias Químicas y Farmacéuticas
关键词
Moderate thermophilic; Hydrogen sulfide; Elemental sulfur; Limiting oxygen concentrations; Biofilm bioreactor;
D O I
暂无
中图分类号
学科分类号
摘要
The copper industry utilizes significant amounts of sulfuric acid in its processes, generating sulfate as waste. While sulfate-reducing bacteria can remove sulfate, it produces hydrogen sulfide (H2S) as a byproduct. This study examined the capability of a consortium consisting of Sulfobacillus thermosulfidooxidans and Sulfobacillus acidophilus to partially oxidize H2S to S° at a temperature of 45 °C. A fixed-bed bioreactor, with glass rings as support material and sodium thiosulfate as a model electron donor, was inoculated with the consortium. Formation of biofilms was crucial to maintain the bioreactor’s steady state, despite high flow rates. Afterward, the electron donor was changed to H2S. When the bioreactor was operated continuously and with high aeration, H2S was fully oxidized to SO42−. However, under conditions of low aeration and at a concentration of 0.26 g/L of H2S, the consortium was able to oxidize H2S to S° with a 13% yield. S° was discovered attached to the glass rings and jarosite. The results indicate that the consortium could oxidize H2S to S° with a 13% yield under low aeration and at a concentration of 0.26 g/L of H2S. The findings highlight the capability of a Sulfobacillus consortium to convert H2S into S°, providing a potential solution for addressing environmental and safety issues associated with sulfate waste generated by the mining industry.
引用
收藏
页码:195 / 208
页数:13
相关论文
共 50 条
  • [1] Biooxidation of hydrogen sulfide to sulfur by moderate thermophilic acidophilic bacteria
    Romero, R.
    Viedma, P.
    Cotoras, D.
    BIODEGRADATION, 2024, 35 (02) : 195 - 208
  • [2] Pyrrhotite Biooxidation by Moderately Thermophilic Acidophilic Microorganisms
    A. G. Bulaev
    Microbiology, 2020, 89 : 510 - 519
  • [3] MINERAL SULFIDE OXIDATION BY MODERATELY THERMOPHILIC ACIDOPHILIC BACTERIA
    MARSH, RM
    NORRIS, PR
    BIOTECHNOLOGY LETTERS, 1983, 5 (09) : 585 - 590
  • [4] Pyrrhotite Biooxidation by Moderately Thermophilic Acidophilic Microorganisms
    Bulaev, A. G.
    MICROBIOLOGY, 2020, 89 (05) : 510 - 519
  • [5] CONVERSION OF HYDROGEN-SULFIDE BY ACIDOPHILIC BACTERIA
    LIZAMA, HM
    SANKEY, BM
    APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 1993, 40 (2-3) : 438 - 441
  • [6] INTERACTIONS OF THIOPHENES AND ACIDOPHILIC, THERMOPHILIC BACTERIA
    CONSTANTI, M
    GIRALT, J
    BORDONS, A
    NORRIS, PR
    APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY, 1992, 34-5 : 767 - 776
  • [7] Effect of Organic Carbon Source on Pyrite Biooxidation by Moderately Thermophilic Acidophilic Microorganisms
    Bulaev, A. G.
    MICROBIOLOGY, 2020, 89 (03) : 301 - 308
  • [8] Galena biooxidation by moderate sulphur bacteria
    Hassan, Salari
    Daryoush, Afzali
    Sadegh, Oliaie Mohammad
    AFRICAN JOURNAL OF MICROBIOLOGY RESEARCH, 2011, 5 (23): : 3919 - 3923
  • [9] Effect of Organic Carbon Source on Pyrite Biooxidation by Moderately Thermophilic Acidophilic Microorganisms
    A. G. Bulaev
    Microbiology, 2020, 89 : 301 - 308
  • [10] CONVERGENT CHARACTERS OF EXTREMELY THERMOPHILIC ACIDOPHILIC BACTERIA
    DEROSA, M
    GAMBACOR.A
    MILLONIG, G
    BULOCK, JD
    EXPERIENTIA, 1974, 30 (08): : 866 - 868