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Enhancement on the simultaneous removal of nitrate and organic pollutants from groundwater by a three-dimensional bio-electrochemical reactor

机译:三维生物电化学反应器可同时去除地下水中的硝酸盐和有机污染物

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摘要

To improve denitrification performance and effective degradation of organic pollutants from micro-polluted groundwater simultaneously, a novel three-dimensional (3D) bio-electrochemical reactor was developed, which introduced activated carbon into a traditional two-dimensional (2D) reactor as the third electrode. The static and dynamic characteristics of the reactor were investigated with special attentions paid to the performance comparison of these two reactors. In the 3D reactor both TOC and nitrate removal efficiency were greatly improved, and the formation of nitrite byproduct is considerably reduced, comparing with that of the 2D reactor. The role of activated carbon biofilm was explored and possible remediation mechanisms for the 2D and 3D reactors were suggested. In such a 3D reactor, the denitrification rate improved greatly to 0.288 mg NO3-NJcm(2)/d and the current efficiency could reach as high as 285%. Further, it demonstrated good performance stably against variable conditions, indicating very promising in application for groundwater remediation.
机译:为了提高反硝化性能并同时有效地降解微污染地下水中的有机污染物,开发了一种新型的三维(3D)生物电化学反应器,该方法将活性炭引入了传统的二维(2D)反应器中作为第三电极。研究了反应堆的静态和动态特性,并特别注意了这两个反应堆的性能比较。与2D反应器相比,在3D反应器中,TOC和硝酸盐去除效率都得到了极大的提高,亚硝酸盐副产物的形成也大大减少了。探索了活性炭生物膜的作用,并提出了2D和3D反应器的可能修复机制。在这样的3D反应器中,反硝化率大大提高至0.288 mg NO3-NJcm(2)/ d,电流效率可高达285%。此外,它在各种条件下均表现出稳定的良好性能,表明在地下水修复中的应用前景非常广阔。

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