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Advances in Treatment of Brominated Hydrocarbons by Heterogeneous Catalytic Ozonation and Bromate Minimization

机译:非均相催化臭氧化和溴化物最小化处理溴代烃的研究进展

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摘要

The formation of carcinogenic bromate ions is a constraint when ozone is used for the remediation of water containing brominated organic materials. With its strong oxidizing ability, ozone rapidly transforms bromide in aqueous media to bromate, through a series of reactions involving hydroxyl radicals. Several strategies, such as limiting the ozone concentration, maintaining pH < 6, or the use of ammonia or hydrogen peroxide were explored to minimize bromate generation. However, most of the above strategies had a negative effect on the ozonation efficiency. The advanced oxidation processes, using catalysts together with ozone, have proven to be a promising technology for the degradation of pollutants in wastewater, but very few studies have been conducted to find ways to minimize bromate formation during this approach. The proposed article, therefore, presents a comprehensive review on recent advances in bromate reduction in water by catalytic ozonation and proposes reaction mechanisms associated with the catalytic process. The main aim is to highlight any gaps in the reported studies, thus creating a platform for future research and a quest to find environment friendly and efficacious catalysts for minimizing bromate formation in aqueous media during ozonation of brominated organic compounds.
机译:当臭氧用于补救含溴化有机物的水时,致癌性溴酸根离子的形成受到限制。臭氧具有很强的氧化能力,它通过一系列涉及羟基的反应,将水性介质中的溴化物迅速转化为溴酸盐。研究了几种策略,例如限制臭氧浓度,将pH值保持在6以下或使用氨水或过氧化氢以最大程度地减少溴酸盐的生成。但是,以上大多数策略对臭氧化效率均具有负面影响。业已证明,采用先进的氧化工艺与催化剂一起使用臭氧,可以降解废水中的污染物,但是很少有研究试图找到减少这种方法中溴酸盐生成的方法。因此,拟议的文章全面概述了通过催化臭氧化水还原溴酸盐的最新进展,并提出了与催化过程相关的反应机理。主要目的是强调已报道研究中的任何不足之处,从而为将来的研究创造一个平台,并寻求寻找环境友好且有效的催化剂,以最大程度地减少溴化有机化合物的臭氧化过程中水性介质中溴酸盐的形成。

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