首页 | 本学科首页   官方微博 | 高级检索  
     检索      

Synergistic effect of combining sulfate reducing bacteria and zerovalent iron permeable reactive barriers on the treatment of groundwater rich in uranium, sulfate and heavy metals
作者姓名:Zhengji  YI  Kaixuan  TAN  Zhenxun  YU  Aili  TAN  Shiqiang  WANG
作者单位:[1]State Key Laboratory of Organic Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou 510640, China [2]School of Architecture, Resources and Environment Engineering, Nanhua University, Hengyang 421001, China
摘    要:Uranium processing and mining activities that generate many contaminants, such as high concentrations of U (VI), sulfate and heavy metals (Zn, Cu, Ni, etc), may pose a serious threat to the groundwater resources. In recent years, considerable research has been conducted respectively on two kinds of permeable reactive barriers (PRB), including zerovalent iron (ZVI) and sulfate reducing bacteria (SRB), for in-situ removal of these pollutants from groundwater. However, little investigation has been carried out on the potential benefits of bioaugmenting ZVI barriers to enhance the elimination of the pollutants by combining ZVI with SRB systems. The main goal of this study was to conduct batch and column experiments to determine whether the combination of SRB and ZVI can function synergistically and accelerate the rate of pollutant removal. The results of anaerobic batch experiments demonstrated that although the integrated ZVI/PRB system itself has no ability to reduce and remove sulfate directly, SRB can utilize hydrogen gas produced during the slow process of ZVI corrosion as an electron donor to raise biomass yields significantly and accelerate reductive sulfate removal. In particular, ferrous cations produced as the byproduct of ZVI corrosion process reacted with hydrogen sulfide from sulfate reduction and formed iron-bearing sulfide precipitates, which can stimulate the growth of SRB and promote sulfate removal activity by eliminating the biotoxicity of hydrogen sulfide. It was also shown that secondary mineral products (pyrite/ferrous sulfide) formed as a consequence of microbial sulfate reduction and ZVI corrosion process can enhance the microbial precipitation of soluble U (VI) as insoluble uraninite(uranium dioxide).

关 键 词:硫酸盐  细菌    重金属  地下水  水文化学

Synergistic effect of combining sulfate reducing bacteria and zerovalent iron permeable reactive barriers on the treatment of groundwater rich in uranium, sulfate and heavy metals
Zhengji YI Kaixuan TAN Zhenxun YU Aili TAN Shiqiang WANG.Synergistic effect of combining sulfate reducing bacteria and zerovalent iron permeable reactive barriers on the treatment of groundwater rich in uranium, sulfate and heavy metals[J].Chinese Journal of Geochemistry,2006,25(B08):125-126.
Abstract:
Keywords:
本文献已被 维普 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号