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DEVELOPMENT OF SRB TREATMENT SYSTEMS FOR ACID MINE DRAINAGE

机译:酸性矿山排水SRB处理系统的研制

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Over the past decade, significant advances have been made in the development of sulfate-reducing bacteria (SRB) technology to treat acid mine drainage (AMD). Bench-scale testing, field demonstrations, and engineered applications of SRBs for the treatment of AMD will be presented. Designs include an in situ bioreactor installed in the subsurface workings of the Lilly Orphan Boy Mine in 1994, the SRB bioreactors installed at the Calliope Mine from 1998 to 2001, the integrated biological reactors built at the Surething Mine in 2001, and the ongoing development of a replaceable cartridge system. SRB technology benefits include the reduction of dissolved metal ions to insoluble metal sulfides and the neutralization of the AMD resulting from the production of bicarbonate from the oxidation of organic nutrients. This paper will address engineering design criteria including the selection of organic media and system permeability and complete mitigation of AMD. Research was funded under Interagency Agreement No. DW899388-70-01-1 between the US EPA and the US DOE and was conducted by MSE Technology Applications, Inc., through the National Environmental Technology Laboratory (DOE Contract No. DE-AC22-96EW96405) at the Western Environmental Technology Office located in Butte, Montana.
机译:在过去的十年中,用于治疗酸性矿井排水(AMD)的硫酸盐还原细菌(SRB)技术的开发取得了重大进展。将介绍用于治疗AMD的SRB的实验室规模测试,现场演示和工程应用。设计包括1994年在礼来孤儿男孩矿的地下作业中安装原位生物反应器,从1998年至2001年在Calliope矿中安装SRB生物反应器,在2001年在Surething矿中建造的综合生物反应器,以及正在进行的开发。可更换墨盒系统。 SRB技术的好处包括将溶解的金属离子还原为不溶的金属硫化物,以及由于有机营养物的氧化产生碳酸氢盐而产生的AMD中和作用。本文将讨论工程设计标准,包括有机介质的选择和系统渗透性以及对AMD的完全缓解。该研究是由美国EPA与美国能源部之间第DW899388-70-01-1号机构间协议资助的,由MSE Technology Applications公司通过国家环境技术实验室进行(DOE合同号DE-AC22-96EW96405) )在位于蒙大拿州比尤特的西方环境技术办公室。

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