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用于可持续废水处理的无偏压驱动离子辅助光电化学系统。

Bias-free driven ion assisted photoelectrochemical system for sustainable wastewater treatment.

作者信息

Dang Qi, Zhang Wei, Liu Jiqing, Wang Liting, Wu Deli, Wang Dejin, Lei Zhendong, Tang Liang

机构信息

Key Laboratory of Organic Compound Pollution Control Engineering (MOE), School of Environmental and Chemical Engineering, Shanghai University, 200444, Shanghai, China.

Department of Chemistry, IRIS Adlershof & The Center for the Science of Materials Berlin, Humboldt-Universität zu Berlin, Brook-Taylor-Str. 2, 12489, Berlin, Germany.

出版信息

Nat Commun. 2023 Dec 18;14(1):8413. doi: 10.1038/s41467-023-44155-5.

Abstract

Photoelectrochemical (PEC) systems have emerged as a prominent renewable energy-based technology for wastewater treatment, offering sustainable advantages such as eliminating dependence on fossil fuels or grid electricity compared to traditional electrochemical treatment methods. However, previous PEC systems often overlook the potential of ions present in wastewater as an alternative to externally applied bias voltage for enhancing carrier separation efficiency. Here we report a bias-free driven ion assisted photoelectrochemical (IAPEC) system by integration of an electron-ion acceptor cathode, which leverages its fast ion-electron coupling capability to significantly enhance the separation of electrons and holes at the photoanode. We demonstrate that Prussian blue analogues (PBAs) can serve as robust and reversible electron-ion acceptors that provide reaction sites for photoelectron coupling cations, thus driving the hole oxidation to produce strong oxidant free radicals at photoanode. Our IAPEC system exhibits superior degradation performance in wastewater containing chloride medium. This indicates that, in addition to the cations (e.g., Na) accelerating the electron transfer rate, the presence of Cl ions further enhance efficient and sustainable wastewater treatment. This work highlights the potential of utilizing abundant sodium chloride in seawater as a cost-effective additive for wastewater treatment, offering crucial insights into the use of local materials for effective, low-carbon, and sustainable treatment processes.

摘要

光电化学(PEC)系统已成为一种用于废水处理的重要的基于可再生能源的技术,与传统电化学处理方法相比,具有可持续的优势,例如消除对化石燃料或电网电力的依赖。然而,以前的PEC系统往往忽视了废水中存在的离子作为增强载流子分离效率的外部施加偏置电压替代品的潜力。在此,我们报告了一种通过集成电子-离子受体阴极实现的无偏压驱动离子辅助光电化学(IAPEC)系统,该系统利用其快速的离子-电子耦合能力显著增强光阳极处电子和空穴的分离。我们证明普鲁士蓝类似物(PBAs)可以作为强大且可逆的电子-离子受体,为光电子耦合阳离子提供反应位点,从而驱动空穴氧化在光阳极产生强氧化剂自由基。我们的IAPEC系统在含氯介质的废水中表现出卓越的降解性能。这表明,除了阳离子(如Na)加速电子转移速率外,Cl离子的存在进一步增强了高效且可持续的废水处理。这项工作突出了利用海水中丰富的氯化钠作为废水处理经济高效添加剂的潜力,为使用本地材料进行有效、低碳和可持续处理过程提供了关键见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7a4/10728197/2870c7c6c9de/41467_2023_44155_Fig1_HTML.jpg

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