Zhang Meng-Hui, Dong Hui, Zhao Liang, Wang De-Xi, Meng Di
SEP Key Laboratory of Eco-industry, School of Metallurgy, Northeastern University, Shenyang, Liaoning 110819, China.
SEP Key Laboratory of Eco-industry, School of Metallurgy, Northeastern University, Shenyang, Liaoning 110819, China.
Sci Total Environ. 2019 Jun 20;670:110-121. doi: 10.1016/j.scitotenv.2019.03.180. Epub 2019 Mar 15.
Water pollution caused by organic wastewater has become a serious concern worldwide. Fenton oxidation process is one of the most effective and suitable methods for the abatement of organic pollutants. However, the process has three obvious shortcomings: the narrow working pH range, the high costs and risks associated with handling, transportation and storage of reagents (HO and catalyst), the significant iron sludge related second pollution. In order to overcome these shortcomings, various optimized Fenton processes have been widely studied. Therefore, a summary of the study status of Fenton optimization processes is necessary to develop a novel and high efficiency organic wastewater treatment method. Based on the optimization perspective, taking shortcomings of Fenton process as a breakthrough, the fundamentals, advantages and disadvantages of single Fenton optimization processes (heterogeneous Fenton, photo-Fenton and electro-Fenton) for organic wastewater treatment were reviewed and the corresponding reaction mechanism diagrams were drawn in this paper. Then, the feasibility and application of the coupled Fenton optimization processes (photoelectro-Fenton, heterogeneous electro-Fenton, heterogeneous photoelectro-Fenton, three-dimensional electro-Fenton) for organic wastewater treatment were discussed in depth. Additionally, the effect of some important operation parameters (pH and catalyst, HO, organic pollutants concentration) on the degradation efficiency of organic pollutants was studied to provide guidance for the optimization of operation parameters. Finally, the possible future research directions for optimized Fenton processes were given. The review aims to assist researchers and engineers to gain fundamental understandings and critical view of Fenton process and its optimization processes, and hopefully with the knowledge it could bring new opportunities for the optimization and future development of Fenton process.
有机废水造成的水污染已成为全球严重关注的问题。芬顿氧化法是去除有机污染物最有效且适用的方法之一。然而,该方法存在三个明显的缺点:工作pH范围狭窄、与试剂(过氧化氢和催化剂)的处理、运输和储存相关的高成本及风险、与铁污泥相关的显著二次污染。为克服这些缺点,人们广泛研究了各种优化的芬顿工艺。因此,总结芬顿优化工艺的研究现状对于开发新型高效的有机废水处理方法很有必要。基于优化视角,以芬顿工艺的缺点为突破口,本文综述了用于有机废水处理的单一芬顿优化工艺(非均相芬顿、光芬顿和电芬顿)的基本原理、优缺点,并绘制了相应的反应机理图。然后,深入讨论了耦合芬顿优化工艺(光电芬顿、非均相电芬顿、非均相光电芬顿、三维电芬顿)用于有机废水处理的可行性及应用。此外,研究了一些重要操作参数(pH、催化剂、过氧化氢、有机污染物浓度)对有机污染物降解效率的影响,为操作参数的优化提供指导。最后,给出了优化芬顿工艺未来可能的研究方向。本综述旨在帮助研究人员和工程师对芬顿工艺及其优化工艺有基本的认识和批判性的看法,并希望凭借这些知识为芬顿工艺的优化和未来发展带来新机遇。