首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Immobilization of iron- and manganese-oxidizing bacteria with a biofilm-forming bacterium for the effective removal of iron and manganese from groundwater
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Immobilization of iron- and manganese-oxidizing bacteria with a biofilm-forming bacterium for the effective removal of iron and manganese from groundwater

机译:用生物膜形成细菌固定铁和锰的氧化细菌,以有效去除地下水中的铁和锰

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In this study, three bacteria with high Fe- and Mn-oxidizing capabilities were isolated from groundwater well sludge and identified as Acinetobacter sp., Bacillus megaterium and Sphingobacterium sp. The maximum removal ratios of Fe and Mn (99.75% and 96.69%) were obtained by an optimal combination of the bacteria at a temperature of 20.15 degrees C, pH 7.09 and an inoculum size of 2.08%. Four lab-scale biofilters were tested in parallel for the removal of iron and manganese ions from groundwater. The results indicated that the Fe/Mn removal ratios of biofilter R4, which was inoculated with iron-and manganese-oxidizing bacteria and a biofilm-forming bacterium, were approximately 95% for each metal during continuous operation and were better than the other biofilters. This study demonstrated that the biofilm-forming bacterium could promote the immobilization of the iron-and manganese-oxidizing bacteria on the biofilters and enhance the removal efficiency of iron and manganese ions from groundwater. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在这项研究中,从地下水井污泥中分离出三种具有高铁和锰氧化能力的细菌,并将其鉴定为不动杆菌属,巨大芽孢杆菌和鞘氨醇杆菌。 Fe和Mn的最大去除率(99.75%和96.69%)是通过在20.15摄氏度,pH 7.09和2.08%接种量的细菌的最佳组合下获得的。并行测试了四个实验室规模的生物滤池,以去除地下水中的铁和锰离子。结果表明,接种有铁锰氧化细菌和生物膜形成细菌的生物滤池R4的Fe / Mn去除率在连续运行期间每种金属约为95%,并且优于其他生物滤池。这项研究表明,形成生物膜的细菌可以促进将铁和锰氧化细菌固定在生物滤池上,并提高去除地下水中铁和锰离子的效率。 (C)2016 Elsevier Ltd.保留所有权利。

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