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Biological Mn Treatment: Improving an Emerging Technology

机译:生物锰处理:改善新兴技术

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1.Kohl, P., and S. Medlar. 2006. Occurence of Manganese in Drinking Water and Manganese Control. AwwaRF and USEPA. Denver, CO.rn2.Kohl, P., and Dixon, D. 2012. Occurrence, Impacts, and Removal of Manganese in Biofiltration Processes Water Research FoundationrnFinal Report. Denver, CO.rn3.Maki, J.S., B.M. Tebo, F.E. Palmer, K.H. Nealson and J.T. Staley. 1987. The abundance and biological activity of manganese-oxidizingrnbacteria and Metallogenium-like morphotypes in Lake Washington, USA. FEMS Microbiol. Ecol. 45:21-29.rn4.Mouchet, P., 1992. From conventional to biological removal of Fe and Mn in France. J. AWWA 84 (4), 158–166.rn5.Nealson, K.H, Myers, C.R 1992 Microbial reduction of manganese and iron: new approaches to carbon cycling. Appl. Environ.rnMicrobiol. 58, 439–443.rn6.Anderson, C.R., Davis, R.E., Bandolin, N.S., Baptista, A.M. and Tebo, B.M. 2011. Analysis of in situ manganese(II) oxidation in thernColumbia River and offshore plume: linking Aurantimonas and the associated microbial community to an active biogeochemicalrncycle. Environmental Microbiology 13(6), 1561-1576.rn7.Boogerd FC, de Vrind JP. Manganese oxidation by Leptothrix discophora. J Bacteriol. 1987 Feb: 169(2):489–494.rn8.Yang, L., Li, X., Chu, Z., Ren, Y. and Zhang, J. 2014. Distribution and genetic diversity of the microorganisms in the biofilter for thernsimultaneous removal of arsenic, iron and manganese from simulated groundwater. Bioresource Technology 156, 384-388.rn9.Tebo, B.M., Johnson, H.A., McCarthy, J.K. and Templeton, A.S. 2005. Geomicrobiology of manganese(II) oxidation. Trends inrnMicrobiology 13(9), 421-428.
机译:1.Kohl,P。和S. Medlar。 2006。饮用水中锰的含量和锰的控制。 AwwaRF和USEPA。 Denver,CO.rn2.Kohl,P.和Dixon,D.2012。《生物过滤过程中锰的发生,影响和去除》,水研究基金会,《最终报告》。科罗拉多州丹佛市rn3.Maki,J.S.,B.M. Tebo,F.E. Palmer,K.H.尼尔森和J.T.斯泰利。 1987年。美国华盛顿湖中锰氧化细菌和类金属元素形态型的丰度和生物活性。 FEMS微生物。 Ecol。 45:21-29.rn4.Mouchet,P.,1992。法国从常规到生物去除Fe和Mn。 J. AWWA 84(4),158–166.rn5。Nealson,K.H,Myers,C.R 1992微生物还原锰和铁:碳循环的新方法。应用环境微生物58,439–443.rn6.Anderson,C.R.,Davis,R.E.,Bandolin,N.S.,Baptista,A.M.和B.M. Tebo 2011年。哥伦比亚河和近海羽状流中原位锰(II)氧化的分析:将Aurantimonas和相关的微生物群落连接到一个活跃的生物地球化学循环。环境微生物学13(6),1561-1576.rn7.Boogerd FC,de Vrind JP。 Leptothrix discophora对锰的氧化作用。细菌学杂志。 1987年2月:169(2):489–494.rn8.Yang,L.,Li,X.,Chu,Z.,Ren,Y. and Zhang,J. 2014.生物滤池中微生物的分布和遗传多样性。同时去除模拟地下水中的砷,铁和锰。生物资源技术156,384-388.rn9.Tebo,B.M.,Johnson,H.A.,McCarthy,J.K.和A.S. Templeton 2005.锰(II)氧化的地球微生物学。微生物学趋势13(9),421-428。

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