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The effects of the bioanode on the microbial community and element profile in paddy soil

机译:生物潮对水稻土微生物群落和元素谱的影响

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In paddy soil the reductive dissolution of iron oxide and the availability of organic matter plays an important role in arsenic release under anaerobic conditions.Microbial fuel cells have been shown to reduce organic matter (OM) content and the rate in which this occurs strongly relate to the external resistance applied,In this study we investigated the effects of bioanode operating at different external resistance on the paddy soil microbial community and iron and arsenic concentration.The results show that MFC can be used to reduce soil pore water iron and arsenic concentration and the extent in which this occurs depend on the external resistance applied.The MFC is able to mitigate arsenic release by decreasing organic matter availability.Furthermore,our finding shows that external resistance had a significant influence on the bacterial community composition that develop on the bioanode however only had minimal effect on the community of the bulk soil.These findings suggest that the sMFC can influence the iron and arsenic concentration by reducing OM content and the microbial community that develop in the bioanode vicinity.
机译:在水稻土中,铁氧化铁的还原溶解和有机物质的可用性在厌氧条件下在砷释放中起重要作用。已经显示出有机物(OM)含量和这种情况的速率强烈地涉及在本研究中应用的外部电阻研究了生物潮汐在水稻微生物群落和铁和砷浓度对不同外部电阻的影响。结果表明,MFC可用于减少土壤孔铁和砷浓度和砷浓度发生这种情况的范围取决于所施加的外部电阻。MFC能够通过减少有机物质可用性来减少砷释放。我们的发现表明,外部抗性仅对生物潮汐发育的细菌群落组合物有重大影响对散装土壤的社区影响了最小的影响。这些结果表明sMFC可以通过减少有机质含量和微生物群落,在生物阳极附近发展影响铁和砷的浓度。

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