利用太阳能电池复合沉积物微生物燃料电池修复污水出口附近沉积物

N. Touch, S. Yamaji, Kaichi Nishimura, Y. Sunada, T. Hibino
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摘要

有报道称,太阳能电池复合沉积物微生物燃料电池(SC-SMFC)可以作为修复沉积物的一种替代方案。在排污口附近,大量的沉积物堆积会造成许多环境问题,如恶臭和限制底栖动物的栖息。本研究旨在利用SC-SMFC修复排污口附近的沉积物。特别是,我们的目标是确定SC-SMFC阳极沉积物的修复范围。将SC-SMFC应用于潮汐河流河岸沉积的沉积物中,并在使用SC-SMFC后14周检测阳极沉积物的质量分布。硫化氢、磷酸盐、锰和铵离子浓度降低,表明SC-SMFC的应用对沉积物进行了修复。在阳极附近,各离子浓度下降幅度较大。从离子分布来看,SC-SMFC应用对距离阳极0 ~ 1 m的沉积物有强烈的影响,比实验室实验结果长约6.7倍。在原位,水流可以将物质输送到阳极,微生物的生物多样性可以产生大量的电子,这可能在一定程度上有助于提高SC-SMFC的性能,从而实现长期的沉积物修复。此外,还发现在SC-SMFC应用过程中,通过阳极氧化可以有效地去除沉积物中的铵和锰离子。KeywordsSolar细胞;沉积物微生物燃料电池;沉积物质量;修复范围;硫化氢、铵
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Remediation of Sediment Deposited near Sewage Outlet with Solar Cell-Combined Sediment Microbial Fuel Cells
It has been reported that solar cell-combined sediment microbial fuel cell (SC-SMFC) can be an alternative option for remediating sediment. Near a sewage outlet, huge amount of sediment accumulation causes many environmental problems, such as malodor and the restriction of benthos inhabitation. This study aims to employ SC-SMFC for remediating sediment deposited near a sewage outlet. Particularly, we aim to determine the remediation range of sediment from the anode of SC-SMFC. SC-SMFC was applied into the sediment deposited on the riverbank of a tidal river, and the distribution of sediment quality from the anode was examined at 14 weeks after the employment of SC-SMFC. Decreases in hydrogen sulfide, phosphate, manganese, and ammonium ion concentrations were found, indicating the sediment remediation owing the SC-SMFC application. A larger decrease in each ion concentration was found near the anode. From the ion distributions, the sediment located between 0 and 1 m from the anode was strongly influenced by the SC-SMFC application, which was approximately 6.7-fold longer than that obtained from the laboratory experiment. At in-situ, water current that can transport substances to the anode and the biodiversity of microorganisms that can produce much of electrons may partly contribute to the increasing SC-SMFC performance, leading to the long range of sediment remediation. Furthermore, it is newly found out that ammonium and manganese ions are efficiently removed from sediment via the anode oxidation during the SC-SMFC application. KeywordsSolar Cell; Sediment Microbial Fuel Cell; Sediment Quality; Remediation Range; Hydrogen Sulfide, Ammonium
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