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通过微生物电解从近中性 pH 值芬顿中高效回收溶解的 Fe(II)。

Efficient recovery of dissolved Fe(II) from near neutral pH Fenton via microbial electrolysis.

机构信息

Department of Environmental Engineering, Technical University of Denmark, DK-2800 Lyngby, Denmark.

Department of Environmental Engineering, Technical University of Denmark, DK-2800 Lyngby, Denmark.

出版信息

J Hazard Mater. 2022 Aug 15;436:129196. doi: 10.1016/j.jhazmat.2022.129196. Epub 2022 May 20.

DOI:10.1016/j.jhazmat.2022.129196
PMID:35739726
Abstract

Fe(II) regeneration from ferric sludge via a biocathode and citrate system has recently been proposed to avoid iron-sludge accumulation and iron consumption in homogeneous Fenton treatments. However, poor regeneration rate of Fe(II) from ferric sludge at a near-neutral pH, without an iron-complexing agent, limited its wider practical application. Here, a biocathode augmented with Geobacter sulfurreducens hosted by a microbial electrolysis cell was developed to efficiently regenerate dissolved Fe(II) from ferric sludge at near-neutral pH levels, without using iron-complexing agents. In the Geobacter sulfurreducens-rich biocathode without complexing agents, the regeneration rate of dissolved Fe(II) increased three-fold compared with the biocathode before inoculating Geobacter sulfurreducens. The highest concentration of dissolved Fe(II) increased from 45 mg Fe/L to 199 mg Fe/L at pH 6 when 0.5 V of voltage was applied. Furthermore, 84 mg Fe/L of dissolved Fe(II) was successfully regenerated from ferric sludge during the 123 days' operation of flow-through biocathode. Finally, the regenerated Fe(II) solution without organic matters was successfully applied in a near-neutral pH Fenton treatment to remove recalcitrant pollutants. This Geobacter sulfurreducens-rich biocathode, with its low chemical consumption, high regeneration rate and feasibility for continuous flow operation, offers a more efficient method to realize iron-free in homogeneous Fenton treatments.

摘要

最近提出了一种通过生物阴极和柠檬酸盐系统从高铁污泥中再生 Fe(II) 的方法,以避免均相芬顿处理中铁污泥的积累和铁的消耗。然而,在近中性 pH 值且没有铁络合剂的情况下,高铁污泥中 Fe(II) 的再生率较差,限制了其更广泛的实际应用。在这里,开发了一种在近中性 pH 值下,无需使用铁络合剂,通过微生物电解池负载的脱硫弧菌增强的生物阴极来有效从高铁污泥中再生溶解的 Fe(II)。在没有络合剂的富含脱硫弧菌的生物阴极中,与接种脱硫弧菌之前的生物阴极相比,溶解的 Fe(II)的再生速率提高了三倍。当施加 0.5 V 的电压时,pH 值为 6 时溶解的 Fe(II)的最高浓度从 45 mg Fe/L 增加到 199 mg Fe/L。此外,在 123 天的流通式生物阴极运行过程中,成功地从高铁污泥中再生了 84 mg Fe/L 的溶解 Fe(II)。最后,成功地将不含有机物的再生 Fe(II)溶液应用于近中性 pH 值芬顿处理中以去除难处理的污染物。这种富含脱硫弧菌的生物阴极具有低化学消耗、高再生率和连续流动操作的可行性,为实现均相芬顿处理中铁的无消耗提供了一种更有效的方法。

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