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通过耦合生物电化学和活性炭系统增强煤气厂地下水修复。

Enhancement of gasworks groundwater remediation by coupling a bio-electrochemical and activated carbon system.

机构信息

School of the Natural and Built Environment, Queen's University Belfast, Stranmillis Road, Belfast, BT9 5AG, UK.

Department of Geophysics, University of São Paulo, Rua do Matão, São Paulo, 1226, Brazil.

出版信息

Environ Sci Pollut Res Int. 2019 Apr;26(10):9981-9991. doi: 10.1007/s11356-019-04297-w. Epub 2019 Feb 9.

Abstract

Here, we show the electrical response, bacterial community, and remediation of hydrocarbon-contaminated groundwater from a gasworks site using a graphite-chambered bio-electrochemical system (BES) that utilizes granular activated carbon (GAC) as both sorption agent and high surface area anode. Our innovative concept is the design of a graphite electrode chamber system rather than a classic non-conductive BES chamber coupled with GAC as part of the BES. The GAC BES is a good candidate as a sustainable remediation technology that provides improved degradation over GAC, and near real-time observation of associated electrical output. The BES chambers were effectively colonized by the bacterial communities from the contaminated groundwater. Principal coordinate analysis (PCoA) of UniFrac Observed Taxonomic Units shows distinct grouping of microbial types that are associated with the presence of GAC, and grouping of microbial types associated with electroactivity. Bacterial community analysis showed that β-proteobacteria (particularly the PAH-degrading Pseudomonadaceae) dominate all the samples. Rhodocyclaceae- and Comamonadaceae-related OTU were observed to increase in BES cells. The GAC BES (99% removal) outperformed the control graphite GAC chamber, as well as a graphite BES and a control chamber both filled with glass beads.

摘要

在这里,我们展示了使用石墨室生物电化学系统 (BES) 处理来自煤气厂场地的受烃污染地下水的电响应、细菌群落和修复情况,该系统利用颗粒活性炭 (GAC) 作为吸附剂和高表面积阳极。我们的创新概念是设计石墨电极室系统,而不是经典的非导电 BES 室,并将 GAC 作为 BES 的一部分。GAC BES 是一种很有前途的可持续修复技术,它提供了比 GAC 更好的降解效果,并且可以实时观察相关的电输出。受污染地下水的细菌群落有效地定植在 BES 室中。基于 UniFrac 观测分类单元的主坐标分析(PCoA)显示,与 GAC 存在相关的微生物类型和与电活性相关的微生物类型存在明显的分组。细菌群落分析表明,β-变形菌(特别是多环芳烃降解假单胞菌科)主导了所有样本。在 BES 细胞中观察到 Rhodocyclaceae 和 Comamonadaceae 相关的 OTU 增加。GAC BES(去除率为 99%)的表现优于对照石墨 GAC 室,以及填充玻璃珠的石墨 BES 和对照室。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0103/6469603/434e67268647/11356_2019_4297_Fig1_HTML.jpg

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