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
Yichen Ma,Xi Zhang,Zhixuan Tan,Wanxin Li,Ran Yin,Xinkun Ren
标识
DOI:10.1021/acs.est.5c08408
摘要
High Resolution Image Download MS PowerPoint Slide 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 (UV 222 ) 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 UV 222 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 UV 222 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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