溶解有机碳
卤素
阿累尼乌斯方程
反应性(心理学)
焓
激进的
有机质
化学
环境化学
卤代烃
反应速率常数
动能
活化能
热力学
光化学
热化学
标准生成焓
标准反应焓
反应速率
化学反应
动力学
降级(电信)
臭氧
化学动力学
负温度
熵(时间箭头)
作者
Lei Yu,Xiaoqin He,Yongyan Dang,Zhimin Qiang,Xin Lei,Yangjian Zhou,Xingyu Tong,Xin Yang
标识
DOI:10.1021/acs.est.5c11120
摘要
Reactions with dissolved organic matter (DOM) govern the sinks and concentrations of halogen radicals in aquatic environments, yet the impact of seasonal and regional temperature variations remains unclear. Here, second-order rate constants ( k ) for four halogen radicals (Cl •, Br •, Cl 2 •–, and Br 2 •– ) reacting with six DOM isolates were determined from 9 to 39 °C. At 25 °C, k values (M C –1 s –1 ) were approximately 10 5 –10 6 for Br 2 •–, 10 6 –10 7 for Cl 2 •–, and 10 8 for Cl • /Br • . Their temperature dependence followed the Arrhenius equation, yielding apparent activation energies ( E a ) of 5.8–34.1 kJ mol –1 . DOM reactions with Cl • and Br • were nearly barrierless, with average E a of 9.7 (Cl • ) and 13.2 kJ mol –1 (Br • ), while Cl 2 •– and Br 2 •– displayed stronger temperature dependence, with average E a of >20 kJ mol –1 . Empirical models were developed to predict both E a and the pre-exponential factor ( A ) from bulk DOM properties. Thermodynamic analysis reveals entropy-driven control of Cl • /Br • reactions with DOM, whereas both enthalpy and entropy shaped Cl 2 •– /Br 2 •– reactivity. Incorporating temperature dependence into kinetic modeling quantitatively explained the micropollutant degradation during advanced oxidation. This study establishes a quantitative framework linking water temperature and DOM properties with halogen radical fate in aquatic systems.
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