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具有高技术就绪水平的高盐废水氧化还原中性电化学去污处理

Redox-neutral electrochemical decontamination of hypersaline wastewater with high technology readiness level.

作者信息

Zhang Gong, Li Yongqi, Zhao Chenxuan, Gu Jiabao, Zhou Gang, Shi Yanfeng, Zhou Qi, Xiao Feng, Fu Wen-Jie, Chen Qingbai, Ji Qinghua, Qu Jiuhui, Liu Huijuan

机构信息

Center for Water and Ecology, State Key Joint Laboratory of Environment Simulation and Pollution Control, School of Environment, Tsinghua University, Beijing, China.

School of Hydraulic and Hydropower Engineering, North China Electric Power University, Beijing, China.

出版信息

Nat Nanotechnol. 2024 Aug;19(8):1130-1140. doi: 10.1038/s41565-024-01669-3. Epub 2024 May 9.

Abstract

Industrial hypersaline wastewaters contain diverse pollutants that harm the environment. Recovering clean water, alkali and acid from these wastewaters can promote circular economy and environmental protection. However, current electrochemical and advanced oxidation processes, which rely on hydroxyl radicals to degrade organic compounds, are inefficient and energy intensive. Here we report a flow-through redox-neutral electrochemical reactor (FRER) that effectively removes organic contaminants from hypersaline wastewaters via the chlorination-dehalogenation-hydroxylation route involving radical-radical cross-coupling. Bench-scale experiments demonstrate that the FRER achieves over 75% removal of total organic carbon across various compounds, and it maintains decontamination performance for over 360 h and continuously treats real hypersaline wastewaters for two months without corrosion. Integrating the FRER with electrodialysis reduces operating costs by 63.3% and CO emissions by 82.6% when compared with traditional multi-effect evaporation-crystallization techniques, placing our system at technology readiness levels of 7-8. The desalinated water, high-purity NaOH (>95%) and acid produced offset industrial production activities and thus support global sustainable development objectives.

摘要

工业高盐废水含有多种危害环境的污染物。从这些废水中回收清洁水、碱和酸可促进循环经济和环境保护。然而,目前依赖羟基自由基降解有机化合物的电化学和高级氧化工艺效率低下且能耗高。在此,我们报告了一种流通式氧化还原中性电化学反应器(FRER),该反应器通过涉及自由基-自由基交叉偶联的氯化-脱卤-羟基化途径,有效去除高盐废水中的有机污染物。实验室规模的实验表明,FRER对各种化合物的总有机碳去除率超过75%,并能在360多小时内保持去污性能,且连续处理实际高盐废水两个月无腐蚀现象。与传统的多效蒸发-结晶技术相比,将FRER与电渗析相结合可使运营成本降低63.3%,二氧化碳排放量降低82.6%,使我们的系统技术就绪水平达到7-8级。所产生的淡化水、高纯度氢氧化钠(>95%)和酸可抵消工业生产活动,从而支持全球可持续发展目标。

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