零价铁
可渗透反应墙
硫酸盐
化学
原位
硫酸盐还原菌
铁细菌
环境化学
化学工程
细菌
环境工程
环境科学
环境修复
吸附
污染
地质学
工程类
生态学
物理化学
有机化学
生物
古生物学
作者
Huichao Xu,Liming Ren,Chuanyu Qin,Hui Zhang,Xiaoyu Li,Yongsheng Zhao
标识
DOI:10.1016/j.jhazmat.2024.136282
摘要
The biogeochemical behavior downstream of the zero-valent iron permeable reactive barrier (ZVI-PRB) plays an enormous positive role in the remediation of contaminated-groundwater, but has been completely neglected for a long time. Therefore, this study conducted a 240-day SRB-enhanced ZVI-PRB column experiment, focusing on what exactly happens downstream of ZVI-PRB. Results show that biosulfidation of SRB inside ZVI-PRB prolonged the complete Cr(VI) removal longevity of ZVI-PRB from 38 days to at least 240 days. More importantly, unlike previous studies that focused on improving the performance of ZVI-PRB itself, this study found an in-situ generated FeS reduction reaction zone downstream of the ZVI-PRB. When the ZVI-PRB fails, the downstream reaction zone can continue to play a role in Cr(VI) removal. The maximum Cr(VI) removal capacity of the aquifer media from the reaction zone reached 155.1 mg/kg, which was 39.7 % of commercial ZVI capacity. The reduction zone was further confirmed to be predominantly FeS rather than FeS
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