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强化活性氧对中性废水有机物氧化及化学能量转化的效果及机理。

The effect and mechanism of organic pollutants oxidation and chemical energy conversion for neutral wastewater via strengthening reactive oxygen species.

机构信息

School of Environmental Science and Engineering, Shanghai Jiao Tong University, No. 800 Dongchuan Rd., Shanghai 200240, PR China.

School of Environmental Science and Engineering, Shanghai Jiao Tong University, No. 800 Dongchuan Rd., Shanghai 200240, PR China.

出版信息

Sci Total Environ. 2019 Feb 15;651(Pt 1):1226-1235. doi: 10.1016/j.scitotenv.2018.09.302. Epub 2018 Sep 24.

Abstract

Toxic and refractory organic pollutants are continually discharged into the water environment, which has become the crisis for the human living and sustainable development. However, organic pollutants also contain large amounts of chemical energy. In this paper, we studied the effect and mechanism of organic pollutants oxidation and chemical energy conversion for neutral wastewater via strengthening reactive oxygen species (ROS) of HO and O in a photocatalytic fuel cell (PFC) system, since ROS has the power to oxidize or even mineralize the organics and is environment-friendly to treat refractory organic pollutants. In our PFC system, the HO was enhanced by the cyclic radical chain reaction via the addition of Fe and tetrapolyphosphate (TPP), while O was enhanced by setting an additional bias voltage at the anode which was favorable to O production. The results show that the HO and O concentration are highly enhanced, showing 8.28 and 8.99 times those of traditional PFC, respectively. Meanwhile, the degradation rate constant is remarkably increased by 6.52 times when methylene blue is used as a model pollutant. Furthermore, the performance of wastewater PFC is so improved that the short-circuit current density (J) and maximum power density (JV) have been increased by a factor of 9.05 and 12.67 times in the same experiment, respectively.

摘要

有毒且难处理的有机污染物不断排入水环境,这已成为人类生存和可持续发展的危机。然而,有机污染物也含有大量的化学能。本文研究了在光催化燃料电池(PFC)系统中通过强化HO 和 O 的活性氧(ROS)来氧化和转化中性废水中有机污染物及其化学能的效果和机制,因为 ROS 具有氧化甚至矿化有机物的能力,且是一种处理难处理有机污染物的环保方法。在我们的 PFC 系统中,通过添加铁和四聚磷酸(TPP)进行循环自由基链反应,增强了 HO;通过在阳极设置额外的偏置电压,增强了 O,有利于 O 的生成。结果表明,HO 和 O 的浓度分别显著提高了 8.28 倍和 8.99 倍,是传统 PFC 的 8.28 倍和 8.99 倍。同时,以亚甲基蓝作为模型污染物时,降解速率常数显著提高了 6.52 倍。此外,通过提高活性氧(ROS)的浓度,废水 PFC 的性能得到了显著改善,在相同的实验中,短路电流密度(J)和最大功率密度(JV)分别提高了 9.05 倍和 12.67 倍。

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