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首页> 外文期刊>Environmental Science and Pollution Research >New process for copper migration by bioelectricity generation in soil microbial fuel cells
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New process for copper migration by bioelectricity generation in soil microbial fuel cells

机译:土壤微生物燃料电池中通过生物发电产生铜迁移的新工艺

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摘要

The soil microbial fuel cell (MFC) is a promising biotechnology for the bioelectricity recovery as well as the remediation soil. Moreover, there were no studies on the heavy metal pollution in a soil MFC yet. A soil MFC was constructed to remediate the contaminated soil, and the electric field was generated from the oxidation of the acetate at the anode. We demonstrated the copper migration, the power generation, and the pH variation in the soil and the electrodes. The maximal voltage and the power density of 539 mV and 65.77 m W/m(2) were obtained in the soil MFC. The chemical fractionation of copper (Cu) was analyzed with a modified BCR sequential extraction method. The soluble Cu form and the total Cu contents from the anode to the cathode increased, and the difference between them kept growing over time. The Cu fractions in the soil and the electrodes were converted with the change of the dramatic pH from the anode to the cathode. There was a focusing effect leading to the change of the Cu forms, and the extractable acid form content increased in the three fifths where the acid and the alkali fronts met.
机译:土壤微生物燃料电池(MFC)是用于生物电回收和修复土壤的有前途的生物技术。而且,还没有关于土壤MFC中重金属污染的研究。构造土壤MFC以补救被污染的土壤,并且通过在阳极处乙酸盐的氧化产生电场。我们证明了土壤和电极中的铜迁移,发电以及pH值变化。在土壤MFC中获得了最大电压和539 mV和65.77 m W / m(2)的功率密度。用改进的BCR顺序萃取法分析了铜(Cu)的化学分馏。可溶性铜的形式和从阳极到阴极的总铜含量增加,并且两者之间的差异随着时间的推移而不断增长。土壤和电极中的Cu分数随着pH值从阳极到阴极的急剧变化而转化。有一个聚焦效应导致Cu形式的改变,并且在酸和碱前沿相遇的五分之三处,可提取的酸形式含量增加。

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