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Horizontal arrangement of anodes of microbial fuel cells enhances remediation of petroleum hydrocarbon-contaminated soil

机译:微生物燃料电池阳极的水平布置可增强对石油烃污染土壤的修复

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摘要

With the aim of in situ bioremediation of soil contaminated by hydrocarbons, anodes arranged with two different ways (horizontal or vertical) were compared in microbial fuel cells (MFCs). Charge outputs as high as 833 and 762C were achieved in reactors with anodes horizontally arranged (HA) and vertically arranged (VA). Up to 12.5 % of the total petroleum hydrocarbon (TPH) was removed in HA after 135 days, which was 50.6 % higher than that in VA (8.3 %) and 95.3 % higher than that in the disconnected control (6.4 %). Hydrocarbon fingerprint analysis showed that the degradation rates of both alkanes and polycyclic aromatic hydrocarbons (PAHs) in HA were higher than those in VA. Lower mass transport resistance in the HA than that of the VA seems to result in more power and more TPH degradation. Soil pH was increased from 8.26 to 9.12 in HA and from 8.26 to 8.64 in VA, whereas the conductivity was decreased from 1.99 to 1.54 mS/cm in HA and from 1.99 to 1.46 mS/cm in VA accompanied with the removal of TPH. Considering both enhanced biodegradation of hydrocarbon and generation of charge in HA, the MFC with anodes horizontally arranged is a promising configuration for future applications.
机译:为了对被碳氢化合物污染的土壤进行原位生物修复,在微生物燃料电池(MFCs)中比较了以两种不同方式(水平或垂直)排列的阳极。在阳极水平排列(HA)和垂直排列(VA)的反应堆中,电荷输出高达833和762C。 135天后,HA中去除的石油烃总量(TPH)高达12.5%,比VA(8.3%)高50.6%,比断开连接的对照(6.4%)高95.3%。碳氢化合物指纹分析表明,HA中烷烃和多环芳烃(PAHs)的降解率均高于VA。 HA中的传质阻力低于VA,这似乎会导致更大的功率和更多的TPH降解。 HA的土壤pH从8.26升高到9.12,VA的土壤pH从8.26升高到8.64,而HA的电导率从1.99降低到1.54 mS / cm,VA从1.99降低到1.46 mS / cm伴随着TPH的去除。考虑到碳氢化合物的生物降解能力增强和HA中电荷的产生,水平布置阳极的MFC对于未来的应用是一种很有前途的配置。

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