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Transformation of antiviral ribavirin during ozone/PMS intensified disinfection amid COVID-19 pandemic

机译:在Covid-19流行病中,抗病毒利巴韦林的转化臭氧/普氏菌强化消毒

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摘要

Due to the spread of coronavirus disease 2019 (COVID-19), large amounts of antivirals were consumed and released into wastewater, posing risks to the ecosystem and human health. Ozonation is commonly utilized as pre-oxidation process to enhance the disinfection of hospital wastewater during COVID-19 spread. In this study, the transformation of ribavirin, antiviral for COVID-19, during ozone/PMS-chlorine intensified disinfection process was investigated. ·OH followed by O_3 accounted for the dominant ribavirin degradation in most conditions due to higher reaction rate constant between ribavirin and OH vs. SO_4-~ (1.9 × 10~9 vs. 7.9 × 10~7 M~(-1) s~(-1) respectively). During the O_3/PMS process, ribavirin was dehydrogenated at the hydroxyl groups first, then lost the amide or the methanol group. Chloride at low concentrations (e.g., 0.5- 2 mg/L) slightly accelerated ribavirin degradation, while bromide, iodide, bicarbonate, and dissolved organic matter all reduced the degradation efficiency. In the presence of bromide, O_3/PMS process resulted in the formation of organic brominated oxidation by-products (OBPs), the concentration of which increased with increasing bromide dosage. However, the formation of halogenated OBPs was negligible when chloride or iodide existed. Compared to the O_3/H_2O_2 process, the concentration of brominated OBPs was significantly higher after ozonation or the O_3/PMS process. This study suggests that the potential risks of the organic brominated OBPs should be taken into consideration when ozonation and ozone-based processes are used to enhance disinfection in the presence of bromide amid COVID-19 pandemic
机译:由于2019年冠状病毒疾病的传播(Covid-19),大量的抗病毒被消耗并释放到废水中,造成生态系统和人类健康的风险。臭氧化通常用作预氧化过程,以增强Covid-19涂抹过程中医院废水的消毒。在该研究中,研究了利用肽,Covid-19抗病毒的转化,在臭氧/分枝氯增强消毒过程中进行了研究。 ·哦,随后O_3占主导地位利用素降解在大多数条件下,由于利巴韦林和哦,哦,o _4-〜(1.9×10〜9与7.9×10〜7 m〜(1)S〜 (-1)分别)。在O_3 / PMS过程中,首先在羟基上脱氢,然后丧失酰胺或甲醇基团。氯化物在低浓度(例如,0.5-2mg / L)略微加速的利巴韦林降解,而溴,碘化物,碳酸氢盐和溶解的有机物质全部降低降解效率。在溴化物存在下,O_3 / PMS工艺导致形成有机溴化氧化副产物(OBP),其浓度随着溴化物剂量的增加而增加。然而,当存在氯化物或碘化物时,卤化OBP的形成可忽略不计。与O_3 / H_2O_2过程相比,臭氧或O_3 / PMS过程后溴化OBP的浓度明显高。本研究表明,当臭氧化和臭氧的过程用于增强溴化物存在下的消毒时,应考虑有机溴化obps的潜在风险在Covid-19大流行病中增强消毒

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|148030.1-148030.10|共10页
  • 作者单位

    State Key Laboratory of Pollution Control and Resources Reuse College of Environmental Science and Engineering Tongji University Shanghai 200092 China Ministry of Education Key Laboratory of Yangtze River Water Environment Tongji University Shanghai 200092 China International Joint Research Center for Sustainable Urban Water System Tongji University Shanghai 200092 China;

    State Key Laboratory of Pollution Control and Resources Reuse College of Environmental Science and Engineering Tongji University Shanghai 200092 China Ministry of Education Key Laboratory of Yangtze River Water Environment Tongji University Shanghai 200092 China International Joint Research Center for Sustainable Urban Water System Tongji University Shanghai 200092 China;

    State Key Laboratory of Pollution Control and Resources Reuse College of Environmental Science and Engineering Tongji University Shanghai 200092 China Ministry of Education Key Laboratory of Yangtze River Water Environment Tongji University Shanghai 200092 China International Joint Research Center for Sustainable Urban Water System Tongji University Shanghai 200092 China;

    State Key Laboratory of Pollution Control and Resources Reuse College of Environmental Science and Engineering Tongji University Shanghai 200092 China Ministry of Education Key Laboratory of Yangtze River Water Environment Tongji University Shanghai 200092 China International Joint Research Center for Sustainable Urban Water System Tongji University Shanghai 200092 China;

    School of Civil Engineering Sun Vat-sen University Zhuhai 519000 China;

    State Key Laboratory of Pollution Control and Resources Reuse College of Environmental Science and Engineering Tongji University Shanghai 200092 China Ministry of Education Key Laboratory of Yangtze River Water Environment Tongji University Shanghai 200092 China International Joint Research Center for Sustainable Urban Water System Tongji University Shanghai 200092 China;

    State Key Laboratory of Pollution Control and Resources Reuse College of Environmental Science and Engineering Tongji University Shanghai 200092 China Ministry of Education Key Laboratory of Yangtze River Water Environment Tongji University Shanghai 200092 China International Joint Research Center for Sustainable Urban Water System Tongji University Shanghai 200092 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Advanced oxidation process; Ozonation; Peroxymonosulfate; Ribavirin; Oxidation by-products;

    机译:先进的氧化过程;ozonation;过氧氧键硫酸盐;利巴韦林;氧化副产品;

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