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首页> 外文期刊>Electrochimica Acta >Nitrate removal from groundwater by a novel three-dimensional electrode biofilm reactor
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Nitrate removal from groundwater by a novel three-dimensional electrode biofilm reactor

机译:新型三维电极生物膜反应器从地下水中去除硝酸盐

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摘要

The contamination of nitrate in groundwater has become an ever-increasing environmental problem. To improve denitrification rate effectively, a novel three-dimensional (3D) bio-electrochemical reactor was developed, which introduced activated carbon (AC) into the cathode chamber as the third bipolar electrode. The influence parameters such as temperature, pH, current and initial nitrate loading were investigated systematically. The role of the third electrode was explored and a possible denitrification mechanism was suggested. The presence of AC not only provided much more sites for biofilm formation and hydrogen gas yield, but also produced carbon dioxide to afford a favorable anoxic environment. Thus, the 3D reactor showed good denitrification performance in wider conditions. The denitrification rate could reach 0.222 mg NO{sub}3 N/cm{sup}2/d while the current efficiency could reach as high as 227%, indicating promising for nitrate removal from groundwater.
机译:地下水中硝酸盐的污染已经成为一个日益严重的环境问题。为了有效地提高反硝化率,开发了一种新型的三维(3D)生物电化学反应器,将活性炭(AC)作为第三双极电极引入了阴极室。系统地研究了温度,pH,电流和硝酸盐初始负荷等影响参数。探索了第三电极的作用,并提出了可能的反硝化机理。 AC的存在不仅为生物膜形成和氢气产率提供了更多的位置,而且还产生了二氧化碳以提供有利的缺氧环境。因此,3D反应器在较宽的条件下显示出良好的反硝化性能。反硝化率可以达到0.222 mg NO {sub} 3 N / cm {sup} 2 / d,而目前的效率可以高达227%,这表明从地下水中去除硝酸盐很有希望。

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