硝酸盐
化学
活性炭
氯化物
环境修复
零价铁
氯
可渗透反应墙
铵
无机化学
环境化学
水处理
环境工程
污染
吸附
有机化学
环境科学
生态学
生物
作者
Yiming Su,Katherine R. Muller,Hira Yoshihara-Saint,Issam Najm,David Jassby
标识
DOI:10.1021/acs.est.1c02152
摘要
Nitrate removal from groundwater remains a challenge. Here, we report on the development of a flow-through, electrically charged, granular-activated carbon (GAC)-filled column, which effectively removes nitrate. In this system, the GAC functioned as an anode, while a titanium sheet acted as a cathode. The high removal rate of nitrate was achieved through a combination of electrosorption and electrochemical transformation to N2. The column could be readily regenerated in situ by reversing the polarity of the applied potential. We demonstrate that in the presence of chloride, the mechanism responsible for the observed nitrate removal involves a combination of electroadsorption of nitrate to the anodically charged GAC, electroreduction of nitrate to ammonium, and the oxidation of ammonium to N2 gas by reactive chlorine and other oxidative radicals (with nearly 100% N2 selectivity). Given the ubiquitous presence of chloride in groundwater, this method represents a ready, green, and sustainable treatment process with significant potential for the remediation of contaminated groundwater.
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