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Phototransformation of nitrobenzene in the Songhua River: Kinetics and photoproduct analysis

机译:松花江中硝基苯的光转化:动力学和光产物分析

摘要

Nitrobenzene (NB) pollution of the Songhua River caused by an explosion at a petrochemical plant in Jilin City, Jilin Province, China, attracted public concern over the fate of NB in the river. As one of the efforts to predict the fate of residual NB in the river, the kinetics and mechanism of phototransformation of NB in natural water from four sections of the Songhua River were investigated. It was found that photodegradation of NB in water proceeded via pseudo-first-order reaction kinetics under simulated solar irradiation conditions, and the rate constant (k) in the ultrapure water system was 0.0168 h(-1), which was approximately half of those in the natural river water systems (0.323-0.402 h(-1)). The relatively short half-life of NB in natural river water systems (17.2-21.5 h) indicates that photodegradation might have played an important role in the loss of NB flux in the river. Nitrate concentration and alkalinity were the two main factors affecting the photochemical fate of NB, suggesting that decomposition of NB mediated by center dot OH was predominant in water solution with high nitrate concentrations. Three isomeric nitrophenols, o-, m-, and p-nitrophenols, as well as phenol were detected as the main organic products in natural water under natural and simulated solar irradiations.
机译:吉林省吉林市一家石化厂发生爆炸事故,导致松花江的硝基苯污染引起公众对江河中NB命运的关注。作为预测河流中残留NB命运的努力之一,研究了松花江四段天然水中NB光转化的动力学和机理。结果发现,在模拟的太阳辐射条件下,NB的光降解是通过拟一级反应动力学进行的,超纯水系统中的速率常数(k)为0.0168 h(-1),约为其的一半。在自然河水系统中(0.323-0.402 h(-1))。天然河水系统中NB的半衰期相对较短(17.2-21.5小时),表明光降解可能在河流中NB通量的损失中发挥了重要作用。硝酸盐浓度和碱度是影响NB光化学命运的两个主要因素,这表明在高硝酸盐浓度的水溶液中,由中心点OH介导的NB分解是主要的。在自然和模拟的太阳辐射下,三种天然硝基酚,邻,间和对硝基苯酚以及苯酚被检测为天然水中的主要有机产物。

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