Kinetics of diatrizoate degradation by ozone and the formation of disinfection by-products in the sequential chlorination

化学 臭氧 溴化物 泛影酸酯 降级(电信) 动力学 反应速率常数 环境化学 核化学 无机化学 有机化学 物理 电信 量子力学 计算机科学
作者
Chenyan Hu,Si-Cheng Ren,Yi‐Li Lin,Ji-Chen Zhang,Ye-Ye Zhu,Cun Xiong,Qiang-Bin Wang
出处
期刊:Journal of Water Reuse and Desalination [IWA Publishing]
卷期号:11 (4): 560-571 被引量:12
标识
DOI:10.2166/wrd.2021.053
摘要

Abstract In this study, we studied the degradation kinetics of a common iodine contrast agent, diatrizoate, by ozone and the formation of disinfection by-products (DBPs) in the sequential chlorination. Effects of ozone concentration, solution pH, and bromide concentration on diatrizoate degradation were evaluated. The results indicate that diatrizoate can be effectively degraded (over 80% within 1 h) by ozone, and the degradation kinetics can be well described using the pseudo-first-order kinetic model. The pseudo-first-order rate constant (kobs) of diatrizoate degradation significantly increased with increasing ozone concentration and decreasing bromide concentration. The kobs kept increasing with the increase of pH value and reached a maximum of 6.5 (±0.05) × 10−2 min−1 at pH 9. As the ozone concentration gradually increased from 0.342 to 1.316 mg/L, the corresponding kobs of diatrizoate degradation increased from 1.76 (±0.20) × 10−3 to 4.22 (±0.3) × 10−2 min−1. The bromide concentration exhibited a strong inhibitory effect on diatrizoate degradation because of the competition for ozone with diatrizoate. Trichloromethane was the only detected DBP in the subsequent chlorination in the absence of bromide. However, in the presence of bromide, six other DBPs were detected, and bromochloroiodomethane and tribromomethane became the major products with concentrations 1–2 orders higher than those of the other DBPs. In order to provide safe drinking water to the public, water should be maintained at circumneutral pH values and low bromine concentrations (<5 μM) before reaching the chlorine disinfection process to effectively control the formation of DBPs.

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