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共存离子对地浸废水中铀生物沉淀过程的影响 被引量:7

Influence of Coexistent Ions on Microbial Reduction and Precipitation of Wastewater from in situ Leach Uranium Mining
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摘要 采用硫酸盐还原菌生物(还原)沉淀法消除地浸废水中的放射性铀污染,研究了共污染离子Cu(II)、Zn(II)、Fe(III)和SO42-分别对铀生物沉淀过程的影响。序批式实验结果表明,初始Cu(II)浓度低于10mg/L或Zn(II)浓度低于20mg/L时对铀生物沉淀过程影响不大,当Cu(II)浓度超过15mg/L或Zn(II)浓度超过25mg/L时,该过程会因重金属的生物毒性作用受到完全抑制。在含有Fe(III)的氧化环境中,铀生物沉淀过程与Fe(III)还原过程同时进行,但铀沉淀速度相对减慢。初始SO42-浓度低于4000mg/L时对铀生物沉淀过程影响很小,超过5000mg/L时会产生明显的抑制作用,且抑制作用随着SO42-浓度的上升而加强。 Microbial reduction and precipitation technology by sulphate reducing bacteria (SRB) was employed to treat wastewater from in situ leach uranium mining. Influences of coexistent ions including Zn(II), Cu(II), Fe(III) and sulphate on bioprecipitation of U(VI) were studied. Batch testing results showed that no significant effect on U(VI) bioprecipitation was observed when Zn(II) concentration was less than 20mg/L or Cu(II) less than 10mg/L. It was utterly inhibited at 25mg/L Zn(II) or 15mg/L Cu(II) due to the bio-toxicity. Under Fe(III)-bearing oxidizing conditions, U(VI) bioprecipitation was concurrent with Fe(III) reduction and the coexistent Fe(III) made this process slower. Inhibition of U(VI) reduction was not found with initial concentration of sulfate less than 4000mg/L, and anion levels above 5000mg/L slowed U(VI) biopre-cipitation and the inhibitory effect was enhanced with increasing sulfate concentration.
出处 《环境科学与技术》 CAS CSCD 北大核心 2007年第2期15-16,28,共3页 Environmental Science & Technology
基金 国家自然科学基金项目(70171057)
关键词 硫酸盐还原菌(SRB) 还原沉淀 地浸采铀 SO42- sulphate reducing bacteria(SRB) reduction and precipitation in situ leach uranium mining sulfate
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参考文献8

  • 1EJ 267.1-267.5-84,铀矿石中铀的测定[S].
  • 2高自立,王笃金,杨永会,孙思修,沈静兰.SDS和TOPO对HEHEHP萃取Fe(Ⅲ)动力学的影响[J].化学学报,1994,52(4):373-379. 被引量:2
  • 3Rajesh K S,Brent M P,Laura T B.Copper-induced inhibition of growth of Desulfovibrio desulfuricans G20:Assement of its toxicity and correlation with those of zinc and lead[J].Appl.Environ.Microbiol.,2001,67(10):4765-4772.
  • 4Coleman M L,Hearick D B,Lovley D R.Reduction of Fe (Ⅲ) in sediments by sulfate-reducing bacteria[J].Nature,1993,361(4):436-438.
  • 5Lovley D R,Anderson R T.Interactions of microorganisms with radionuclides[M].London,Elsevier Science Ltd.,2002.
  • 6Nakashima S.Precipitation kinetics of uranium by sedimentary organic matter under diagenetic and hydrothermal conditions[J].Econ.Geo1.,1999,94(7):993.
  • 7Lovley D R,Phillips E J P.Reduction of uranium by Desulfovibrio desulfuricans[J].Appl.Environ.Microbiol.,1992,58:850-856.
  • 8缪应祺.废水生物脱硫技术[M].北京:化学工业出版社,2004:7.

二级参考文献2

  • 1赵国玺,表面活性剂物理化学(修订版),1991年
  • 2徐光宪,稀土的溶剂萃取,1989年

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