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Removal of pollutants from gas streams using Fenton (-like)-based oxidation systems: A review

机译:使用Fenton(-like)基于氧化系统从气流中除去污染物:综述

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Emissions of pollutants such as SO2, NOx, CO, Hg, H2S, VOCs, etc. from various gas streams (e.g., flue gas, waste gas, fuel gas, industrial gas, biogas, etc.) not only pollute the environment, but also endanger human health. Various technologies are developed to remove these pollutants. Among them, Fenton (-like)-based oxidation systems have received wide attention due to its strong oxidation ability, low technical and installation requirements, promising simultaneous removal capability of multi-pollutants and environmentally friendly process. However, so far, the special review focusing on removal technologies of pollutants from gas streams using Fenton (-like)-based oxidation systems is not reported. This review summarizes the latest advances in removal of these pollutants from gas streams using Fenton (-like)-based oxidation systems. The activation principle, removal performance, mechanism, merits and shortcomings of these pollutants removal technologies are reviewed. The existing challenges, suggestions and prospect are commented. Results show that most of Fenton (-like)-based oxidation systems can achieve high pollutant removal efficiency and realize simultaneous removal of multipollutants. However, a series of existing problems (e.g. metal ion recovery, side reactions, low radical utilization, heterogeneous mass transfer limitation, sustainability and stability of system operation, metal ions leakage and deactivation of metallic oxides, high cost, etc.) pose various challenges for the development of these technologies. The synthesis of efficient and stable catalysts, enhancement of multiphase mass transfer, optimization design of reactor, development of additives and synergism use of multi-technologies are the promising strategies to overcome these defects.
机译:来自各种气流的SO2,NOx,CO,HG,H2S,VOC等的污染物排放(例如,烟气,废气,燃气,工业气体,沼气等)不仅污染环境,而且也危及人类健康。开发了各种技术以消除这些污染物。其中,基于氧化顿( - LIKE)的氧化系统由于其强氧化能力,低技术和安装要求,具有多种污染物和环保过程的同时去除能力而受到广泛的关注。然而,到目前为止,没有报道专注于使用Fenton(-likike)基于氧化系统的氧化氧化系统的污染物的去除技术的特别综述。本综述总结了使用Fenton(-like)基础的氧化系统从气流中除去这些污染物的最新进展。综述了这些污染物清除技术的激活原理,去除性能,机制,优点和缺点。评论了现有的挑战,建议和前景。结果表明,基于芬顿(仓)的大部分氧化系统可以实现高污染物去除效率,并实现同时去除多体窗体。但是,一系列存在的问题(例如金属离子回收,副反应,低自由基使用,异构传质限制,系统操作的可持续性和稳定性,金属离子泄漏和金属氧化物的停用,高成本等)构成了各种挑战为了开发这些技术。高效稳定的催化剂的合成,增强多相传质,反应堆优化设计,添加剂的发展和多技术的使用以及协同用途是克服这些缺陷的有希望的策略。

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