在在原处铀沥滤的情况中,自从 leachant 被注入忍受铀沉积物的水,为地下水的原始 geochemical 环境被改变。这增加 SO42 的集中 ? ,在地下水污染的铀和另外的重金属离子和结果。SO42 的减小上的模仿的解决方案的 pH 值的效果?并且由减少细菌(SRB ) 的硫酸盐的铀和另外的重金属离子的移动被学习。结果看那模仿的答案的 pH 价值是否是大约 8, SO42 的减小率吗?由 SRB 和铀的移动率, Mn2+ , Zn2+ , Pb2+ 和 Fe2+ 将到达他们的最高的价值。为在在原处沥滤的地下水的补习的一种 bioremediation 技术铀矿能被开发。
In the case of in-situ leaching of uranium, the primitive geochemical environment for groundwater is changed since leachant is injected into the water bearing uranium deposit. This increases the concentration of SO4^2-, uranium and other heavy metal ions and results in the groundwater contamination. The effects of pH values of the simulated solution on the reduction of SO4^2- and the removal of uranium and other heavy metal ions by sulfate reducing bacteria(SRB) were studied. The results show that, when the pH value of the simulated solution is about 8, the reduction rate of SO4^2- by SRB and the removal rate of uranium, Mn^2+, Zn^2+, Pb〉 and Fe^2+ will reach their highest values. A bioremediation technique for remediation of groundwater in in-situ leaching uranium mine can be developed.