化学
绿泥石
氯酸盐
氯
光解
量子产额
环境化学
水处理
硝酸盐
产量(工程)
光化学
反应速率常数
无机化学
亚氯酸钠
光催化
自来水
二氧化氯
臭氧
吸收(声学)
有机质
降级(电信)
水污染
百草枯
分解
激进的
腐植酸
天然有机质
作者
Yimeng Ma,Xi Zhang,Zhi-Xuan Tan,Wanxin Li,Ran Yin,Xinkun Ren
标识
DOI:10.1021/acs.est.5c08408
摘要
Developing chemical-free approaches for the simultaneous control of micropollutants and disinfection byproducts aligns with sustainable development initiatives. We herein demonstrate that far-UVC radiation (UV222) effectively degrades chlorite─a regulated disinfection byproduct of chlorine dioxide─as well as micropollutants in drinking water. The fluence-based photodecay rate constants of chlorite at 222 nm are 2.03-, 21.44-, and 20.22-fold higher than those at 254 nm in buffered deionized water, tap water, and surface water, respectively. Such enhancement is attributed to the 1.62-fold higher molar absorption coefficient and 1.44-fold higher apparent quantum yield at 222 nm compared to those at 254 nm. During UV222 photolysis of chlorite (1.0 mg L-1) in buffered deionized water (pH 7.0), HO• (2.61 (±0.22) × 10-15 M), Cl• (4.89 (±0.13) × 10-16 M), and ClO• (3.26 (±0.97) × 10-15 M) are generated. The values are 1.75-, 0.92-, and 3.01-fold higher than those produced under 254 nm irradiation. Nitrate has a negligible effect on chlorite photodecay and radical generation at 254 nm but exhibits a significant promoting effect at 222 nm. Additionally, natural organic matter suppresses chlorate formation during the UV222 photolysis of chlorite. The findings advance the understanding of chlorite photochemistry and provide a sustainable strategy for micropollutant abatement in water.
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