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Application of Cobalt/Peracetic Acid to Degrade Sulfamethoxazole at Neutral Condition: Efficiency and Mechanisms

作者:Zongping Wang, Jingwen Wang, Bin Xiong, Fan Bai, Songlin Wang, Ying Wan, Li Zhang, Pengchao Xie, Mark R. Wiesner · 发表于:Environmental Science & Technology · 年份:2019 · DOI:10.1021/acs.est.9b04528 · 被引用次数:586 · 研究领域:Advanced Photocatalysis Techniques、Advanced oxidation water treatment、Pharmaceutical and Antibiotic Environmental Impacts

An advanced oxidation process of combining cobalt and peracetic acid (Co/PAA) was developed to degrade sulfamethoxazole (SMX) in this study. The formed acetylperoxy radical (CH 3 CO 3 • ) through the activation of PAA by Co (Co 2+ ) was the dominant radical responsible for SMX degradation, and acetoxyl radical (CH 3 CO 2 • ) might also have played a role. The efficient redox cycle of Co 3+ /Co 2+ allows good removal efficiency of SMX even at quite low dosage of Co (<1 μM). The presence of H 2 O 2 in the Co/PAA process has a negative effect on the degradation of SMX due to the competition for reactive radicals. The SMX degradation in the Co/PAA process is pH dependent, and the optimum reaction pH is near-neutral. Humic acid and HCO 3 – can inhibit SMX degradation in the Co/PAA process, while the presence of Cl – plays a little role in the degradation of SMX in this system. Although transformation products of SMX in the Co/PAA system show higher acute toxicity, the low Co dose and SMX concentration in aquatic solution can efficiently weaken the acute toxicity. After reaction in the Co/PAA process, numerous carbon sources that could be provided for bacteria and algae growth can be produced, suggesting that the proposed Co/PAA process has good potential when combined with the biotreatment processes.