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电凝聚联合处理工艺在可持续废水处理方面的进展:机理、性能及新兴应用的综合评述。

Advancements in combined electrocoagulation processes for sustainable wastewater treatment: A comprehensive review of mechanisms, performance, and emerging applications.

机构信息

Materials Technology & Environmental Research (MATTER) lab, University of Northern British Columbia, Prince George, BC, Canada; Environment Science Program, Faculty of Environment, University of Northern British Columbia, Prince George, BC V2N4Z9, Canada.

Materials Technology & Environmental Research (MATTER) lab, University of Northern British Columbia, Prince George, BC, Canada.

出版信息

Water Res. 2024 Mar 15;252:121248. doi: 10.1016/j.watres.2024.121248. Epub 2024 Feb 1.

DOI:10.1016/j.watres.2024.121248
PMID:38335752
Abstract

This review explores the potential and challenges of combining electrochemical, especially electrocoagulation (EC) process, with various - wastewater treatment methods such as membranes, chemical treatments, biological methods, and oxidation processes to enhance pollutant removal and reduce costs. It emphasizes the advantages of using electrochemical processes as a pretreatment step, including increased volume and improved quality of permeate water, mitigation of membrane fouling, and lower environmental impact. Pilot-scale studies are discussed to validate the effectiveness of combined EC processes, particularly for industrial wastewater. Factors such as electrode materials, coating materials, and the integration of a third process are discussed as potential avenues for improving the environmental sustainability and cost-effectiveness of the combined EC processes. This review also discusses factors for improvement and explores the EC process combined with Advanced Oxidation Processes (AOP). The conclusion highlights the need for combined EC processes, which include reducing electrode consumption, evaluating energy efficiency, and conducting pilot-scale investigations under continuous flow conditions. Furthermore, it emphasizes future research on electrode materials and technology commercialization. Overall, this review underscores the importance of combined EC processes in meeting the demand for clean water resources and emphasizes the need for further optimization and implementation in industrial applications.

摘要

本文探讨了电化学(特别是电絮凝(EC)过程)与各种废水处理方法(如膜分离、化学处理、生物方法和氧化过程)相结合的潜力和挑战,以提高污染物去除率并降低成本。文中强调了将电化学过程用作预处理步骤的优势,包括增加渗透水量和改善其质量、减轻膜污染以及降低环境影响。讨论了中试规模研究以验证组合 EC 工艺的有效性,特别是针对工业废水。讨论了电极材料、涂层材料以及整合第三种工艺等因素,作为提高组合 EC 工艺的环境可持续性和成本效益的潜在途径。本文还探讨了改进因素,并研究了 EC 工艺与高级氧化工艺(AOP)的结合。结论强调了需要采用组合 EC 工艺,包括降低电极消耗、评估能源效率,并在连续流动条件下进行中试研究。此外,文中强调了对电极材料和技术商业化的未来研究。总的来说,本文强调了在满足清洁水资源需求方面采用组合 EC 工艺的重要性,并强调需要在工业应用中进一步优化和实施。

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