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铁-空气燃料电池驱动下的 Cr(VI)高效还原与固定:反应机制与发电。

Efficient reduction of Cr(VI) and immobilization of Cr driven by an iron-air fuel cell: Reaction mechanisms and electricity generation.

机构信息

School of Environmental and Municipal Engineering, Qingdao University of Technology, Qingdao, 266033, PR China.

School of Environmental and Municipal Engineering, Qingdao University of Technology, Qingdao, 266033, PR China.

出版信息

Chemosphere. 2020 Aug;253:126730. doi: 10.1016/j.chemosphere.2020.126730. Epub 2020 Apr 9.

DOI:10.1016/j.chemosphere.2020.126730
PMID:32289599
Abstract

The iron-air fuel cell (IAFC) has been successfully employed for the oxidative removal of many pollutants, but its feasibility for reductive immobilization of Cr(VI) is still unknown. Herein, we developed an IAFC system consisting of an iron anode and an activated carbon-PTFE based air-cathode, and evaluated its performance for Cr(VI) removal and power generation. In this reaction system, cathodic reduction and Fe(II) reduction both contributed to the reductive removal of Cr(VI). It was found that the decrease of solution pH from 6.0 to 3.0 promoted the removal of Cr(VI) due to the enhanced yield of Fe(II) ions and cathodic reduction, accompanying the increased power generation from 1040 mW m to 2880 mW m. Besides, the Cr(VI) removal and power generation could be also promoted by elevating NaSO concentration from 0.01 M to 0.1 M. In the IAFC process, Cr(VI) was initially reduced to less soluble ionic Cr(III) homogeneously and heterogeneously and then Cr(III) was immobilized by adsorption and/or co-precipitation with the fresh Fe(III) (oxy)hydroxides. Generally, this study is of great interest for the engineering community to design the environmentally benign and cost-effective strategy for the treatment of wastewater in remote areas, where the electricity is not easily available.

摘要

铁空气燃料电池(IAFC)已成功用于氧化去除许多污染物,但对于其还原固定 Cr(VI) 的可行性仍不清楚。在此,我们开发了一种由铁阳极和基于活性炭-聚四氟乙烯的空气阴极组成的 IAFC 系统,并评估了其用于 Cr(VI)去除和发电的性能。在该反应体系中,阴极还原和 Fe(II)还原都有助于 Cr(VI)的还原去除。结果发现,由于 Fe(II)离子和阴极还原的产率增加,溶液 pH 值从 6.0 降低至 3.0 促进了 Cr(VI)的去除,同时发电从 1040 mW m 增加至 2880 mW m。此外,升高 NaSO 浓度从 0.01 M 至 0.1 M 也可以促进 Cr(VI)的去除和发电。在 IAFC 过程中,Cr(VI)最初在均相和非均相中被还原为较难溶的离子态 Cr(III),然后 Cr(III)通过与新鲜 Fe(III)(氧)氢氧化物的吸附和/或共沉淀而被固定。总的来说,这项研究对于工程界设计在电力不易获取的偏远地区处理废水的环保且经济有效的策略具有重要意义。

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