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Column Experimental Study on Synergetic Treatment of Uranium-bearing Wastewater with Sulfate Reducing Bacteria and Zero-valent Iron

机译:硫酸盐还原细菌和零价铁铀废水协同处理的柱试验研究

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The treatment of uranium-bearing wastewater from uranium mine and using microorganism to treating wastewater is paid much attention to environmental researchers. Based on column experiments, the paper investigated the potential using sulfate reducing bacteria (SRB) and zero-valent iron (ZVI) to synergetic treat contamination in wastewater such as sulfate, uranium, etc. The results show that SRB+ZVI can effectively remove contamination U(VI) and SO4~(2-) in wastewater, the removal rate is 99.4% and 86.2% for U(VI) and (SO_4)~(2-) respectively, the pH value of wastewater can be basified to neutral. U(VI) and (SO_4)~(2-) as electron acceptor of sulfate reducing bacteria are removed by biological reduction. The corrosion of ZVI is benefit to enhance the pH value of wastewater and form anaerobic reducing environment, strengthen survival and metabolism reaction of SRB, and play a synergetic enhancement.
机译:从铀矿用铀废水处理铀废水并使用微生物治疗废水的处理得到了很多关注环境研究人员。基于柱实验,本文研究了利用硫酸盐还原细菌(SRB)和零价铁(ZVI)在废水中的硫酸盐,如硫酸盐,铀等中的污染潜力。结果表明,SRB + ZVI可以有效地去除污染u(VI)和SO4〜(2-)在废水中,除去率为99.4%,U(VI)和(SO_4)〜(2-)分别为86.2%,废水的pH值可以碱化为中性。通过生物学还原除去u(vi)和(so_4)〜(2-)作为硫酸盐还原细菌的电子受体。 ZVI的腐蚀有益于提高废水的pH值,形成厌氧还原环境,加强SRB的存活率和代谢反应,并发挥协同增强。

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