Theoretical studies on the aqueous phase and graphene heterogeneous degradation of acrylamide and acrylonitrile by HO, ClO, and BrO radicals

丙烯腈 激进的 降级(电信) 丙烯酰胺 水溶液 石墨烯 相(物质) 化学 双水相体系 光化学 化学工程 环境化学 有机化学 材料科学 聚合物 纳米技术 共聚物 电信 工程类 计算机科学
作者
Sisi Cheng,Xueyu Wang,Pengcheng Zou,Zhenkun Sun,Xiaoxuan Wei,Guangcai Ma,Haiying Yu
出处
期刊:Journal of Environmental Management [Elsevier]
卷期号:364: 121473-121473
标识
DOI:10.1016/j.jenvman.2024.121473
摘要

The newly discovered ClO• and BrO• contribute to pollutant degradation in advanced oxidation processes, while acrylamide (AM) and acrylonitrile (ACN) are always the focus of scientists concerned due to their continuous production and highly toxic effects. Moreover, various particles with a graphene-like structure are the companions of AM/ACN in dry/wet sedimentation or aqueous phase existence, which play an important role in heterogeneous oxidation. Thus, this work focuses on the reaction mechanism and environmental effect of AM/ACN with ClO•/BrO•/HO• in the water environment under the influence of graphene (GP). The results show that although the reactivity sequence of AM and ACN takes the order of with HO• > with BrO• > with ClO•, the easiest channel always occurs at the same C-position of the two reactants. The reaction rate constants (k) of AM with three radicals are 2 times larger than that with ACN, and amide groups have a better ability to activate CC bonds than cyanide groups. The existence of GP can accelerate the target reaction, and the k increased by 9-13 orders of magnitude. The toxicity assessment results show that the toxic effect of most products is lower than that of parent compounds, but the environmental risk of products from ClO•/BrO•-adducts is higher than those from HO•-adducts. The oxidative degradation process based on ClO• and BrO• deserves special attention, and the catalytic effect of GP and its derivatives on the oxidation process is non-negligible.

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