首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Distribution and genetic diversity of the microorganisms in the biofilter for the simultaneous removal of arsenic, iron and manganese from simulated groundwater
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Distribution and genetic diversity of the microorganisms in the biofilter for the simultaneous removal of arsenic, iron and manganese from simulated groundwater

机译:同时从模拟地下水中去除砷,铁和锰的生物滤池中微生物的分布和遗传多样性

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摘要

A biofilter was developed in this study, which showed an excellent performance with the simultaneous removal of AsIII from 150 to 10 mg L~(-1) during biological iron and manganese oxidation. The distribution and genetic diversity of the microorganisms along the depth of the biofilter have been investigated using DGGE. Results suggested that Iron oxidizing bacteria (IOB, such as Gallionella, Leptothrix), Manganese oxidizing bacteria (MnOB, such as Leptothrix, Pseudomonas, Hyphomicrobium, Arthrobacter) and AsIIIoxidizing bacteria (AsOB, such as Alcaligenes, Pseudomonas) are dominant in the biofilter. The spatial distribution of IOB, MnOB and AsOB at different depths of the biofilter determined the removal zone of FeII, MnII and AsIII, which site at the depths of 20, 60 and 60 cm, respectively, and the corresponding removal efficiencies were 86%, 84% and 87%, respectively. This process shows great potential to the treatment of groundwater contaminated with iron, manganese and arsenic due to its stable performance and significant cost-savings.
机译:本研究开发了一种生物滤池,该滤池具有出色的性能,可在生物铁和锰氧化过程中同时从150至10 mg L〜(-1)中去除AsIII。已经使用DGGE研究了沿生物滤池深度的微生物的分布和遗传多样性。结果表明,在生物滤池中,铁氧化细菌(IOB,例如Gallionella,Leptothrix),锰氧化细菌(MnOB,例如Leptothrix,假单胞菌,Hyphomicrobium,节杆菌)和AsIII氧化细菌(AsOB,例如Alcaligenes,Pseudomonas)占主导地位。在生物滤池不同深度处的IOB,MnOB和AsOB的空间分布决定了FeII,MnII和AsIII的去除区域,分别位于20、60和60 cm的深度,相应的去除效率为86%,分别为84%和87%。由于其稳定的性能和显着的成本节约,该方法在处理被铁,锰和砷污染的地下水方面显示出巨大的潜力。

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