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反硝化生物阴极中的胞外电子传递模式和限速步骤。

Extracellular electron transfer modes and rate-limiting steps in denitrifying biocathodes.

机构信息

School of Civil Engineering and Architecture, Wuhan University of Technology, Wuhan, 430070, China.

出版信息

Environ Sci Pollut Res Int. 2019 Jun;26(16):16378-16387. doi: 10.1007/s11356-019-05117-x. Epub 2019 Apr 13.

Abstract

Denitrifying bioelectrochemical system provided an alternative technology for nitrogen removal, even power recovery from wastewater, and its nitrogen removal performance and intermediate accumulation were affected by the extracellular electron transfer modes and rate-limiting steps in denitrifying biocathodes. In the current study, the extracellular electron transfer modes and rate-limiting steps for nitrate reduction and nitrite reduction of denitrifying biocathode were investigated through cyclic voltammetry. When the cathode potential swept from 0.003 to - 0.897 V (vs. Ag/AgCl), denitrifiers were indispensable for electrochemical denitrification. Three peak potentials were found in the cyclic voltammogram of denitrifying biocathode, where E (- 0.471 to - 0.465 V) and E (- 0.412 to - 0.428 V) represented respectively nitrate reduction and nitrite oxidation while E (- 0.822 to - 0.826 V) represented nitrite reduction. Nitrate reduction involved the direct electron transfer mode while nitrite reduction involved the mediated electron transfer mode. Intracellular catalytic reaction was the rate-limiting step for nitrate reduction, independent on the electrochemical activity of denitrifying biocathode and the nitrate supply. The nitrate supply posed an effect on the rate-limiting step for nitrite reduction. The mediator transfer was the rate-limiting step for nitrite reduction in the absence of nitrate. But both mediator transfer and intracellular catalytic reaction became the rate-limiting steps for nitrite reduction in the presence of sufficient nitrate.

摘要

反硝化生物电化学系统为氮的去除提供了一种替代技术,甚至可以从废水中回收电能,其脱氮性能和中间产物积累受反硝化生物阴极的细胞外电子传递模式和限速步骤的影响。本研究通过循环伏安法研究了反硝化生物阴极还原硝酸盐和亚硝酸盐的细胞外电子传递模式和限速步骤。当阴极电位从 0.003 到-0.897 V(相对于 Ag/AgCl)扫动时,电化学反硝化离不开脱氮菌。在反硝化生物阴极的循环伏安图中发现了三个峰电位,其中 E(-0.471 到-0.465 V)和 E(-0.412 到-0.428 V)分别代表硝酸盐还原和亚硝酸盐氧化,而 E(-0.822 到-0.826 V)代表亚硝酸盐还原。硝酸盐还原涉及直接电子传递模式,而亚硝酸盐还原涉及介导电子传递模式。细胞内催化反应是硝酸盐还原的限速步骤,与反硝化生物阴极的电化学活性和硝酸盐供应无关。硝酸盐供应对亚硝酸盐还原的限速步骤有影响。在没有硝酸盐的情况下,介体转移是亚硝酸盐还原的限速步骤。但是,在有足够硝酸盐的情况下,介体转移和细胞内催化反应都成为亚硝酸盐还原的限速步骤。

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