首页> 外文期刊>The Science of the Total Environment >Comparison of acetaminophen degradation in UV-LED-based advance oxidation processes: Reaction kinetics, radicals contribution, degradation pathways and acute toxicity assessment
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Comparison of acetaminophen degradation in UV-LED-based advance oxidation processes: Reaction kinetics, radicals contribution, degradation pathways and acute toxicity assessment

机译:乙酰乙酰乙酰乙酰乙酰乙酰乙酰乙酰型进氧化过程的比较:反应动力学,自由基贡献,降解途径和急性毒性评估

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摘要

Ultraviolet light emitting diode (UV-LED)-based advanced oxidation processes (AOPs) including UV-LED/ chloramine (UV-LED/NH_2Cl), UV-LED/hydrogen peroxide (UV-LED/H_2O_2) and UV-LED/persulfate (UV-LED/PS), were adopted for acetaminophen (AAP) removal. Results showed that AAP could be effectively degraded by the hybrid processes compared to solely using with UV irradiation and oxidants. The AAP degradation in the three UV-LED-based AOPs were in the order of UV-LED/PS > UV-LED/H_2O_2 > UV-LED/NH_2Cl and followed a pseudo-first-order kinetics. The degradation rate constant (kobs) increased with increasing oxidant dosage, whereas overdosing lowered the AAP degradation. The second-order rate constants of HO·, SO_4·~-, and Cl· with AAP were calculated as 5.15 × 10~9, 7.66 × 10~9 and 1.08 × 10~(10) M~(-1) s~(-1) respectively. Under neutral conditions, the contributions of UV-LED, HO·, and Cl· to AAP degradation were 4.21%, 60.15% and 35.64% in the UV-LED/ NH_2Cl system, whereas the respective contributions of UV-LED, HO· and SO_4·~-" to AAP degradation were 2.09%, 22.84% and 75.07% in UV-LED/PS system, respectively. Meanwhile, the corresponding contributions of the involved reactive species were found to be pH-dependence. The natural organic materials (NOM) inhibited the AAP degradation, and the presence of Cl~-, HCO_3~-, and NO_3~- had different effects on AAP degradation in the three hybrid processes. The AAP degradation was significantly inhibited in the three UV-LED-based AOPs in real water. In addition, the intermediate products were also identified, and possible degradation pathways were proposed in the three UV-LED-based AOPs. The acute toxicity bioassay using bacterium Vibrio fischeri suggested that the UV-LED/PS process was more effective than the UV-LED/H_2O_2 and UV-LED/NH_2Cl processes in reducing the acute toxicity of the reacted AAP solution. Among the three UV-LED-based AOPs, the UV-LED/PS was found to be the most efficient process for AAP degradation.
机译:紫外线发光二极管(UV-LED)基础的高级氧化方法(AOP),包括UV-LED /氯胺(UV-LED / NH_2Cl),UV-LED /氢过氧化氢(UV-LED / H_2O_2)和UV-LED /过硫酸盐(UV-LED / PS)采用对乙酰氨基酚(AAP)去除。结果表明,与单独使用紫外线照射和氧化剂相比,杂化过程可以有效地降解AAP。基于UV-LED的AOP中的AAP降解为UV-LED / PS> UV-LED / H_2O_2> UV-LED / NH_2CL的顺序,并遵循伪一阶动力学。随着氧化剂剂量的增加而增加,降解速率常数(KOB),而过度降低降低AAP降解。 HO·,SO_4·〜 - - 和CL·使用AAP的二阶速率常数计算为5.15×10〜9,7.66×10〜9和1.08×10〜(10)m〜(-1)s〜 (-1)分别。在中性条件下,UV-LED / NH_2CL系统中UV-LED,HO·和Cl·AAP降解的贡献为4.21%,60.15%和35.64%,而UV-LED,HO·和HO·和SO_4·〜 - “AAP降解分别为UV-LED / PS系统中的2.09%,22.84%和75.07%。同时,发现所涉及的反应性物种的相应贡献是pH依赖性。天然有机材料( NOM)抑制AAP降解,以及Cl〜 - ,HCO_3〜 - ,NO_3〜 - 对三种混合过程中的AAP降解产生了不同的影响。在基于三种UV-LED的AOP中显着抑制了AAP降解在真空中。此外,还鉴定了中间产物,并在三种紫外线LED的AOP中提出了可能的降解途径。使用细菌vibrio fischeri的急性毒性生物测定表明,UV-LED / PS过程更有效比yduci中的UV-LED / H_2O_2和UV-LED / NH_2CL进程Ng反应的AAP溶液的急性毒性。在三个基于UV-LED的AOP中,发现UV-LED / PS是AAP降解的最有效的过程。

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  • 来源
    《The Science of the Total Environment》 |2020年第25期|137993.1-137993.12|共12页
  • 作者单位

    College of Civil Engineering Zhejiang University of Technology Hangzhou 310014 China Water Resources and Environmental Institute Xiamen University of Technology Xiamen 361005 China;

    College of Civil Engineering Zhejiang University of Technology Hangzhou 310014 China;

    College of Civil Engineering Zhejiang University of Technology Hangzhou 310014 China;

    Water Resources and Environmental Institute Xiamen University of Technology Xiamen 361005 China;

    Third Institute of Oceanography Ministry of Republic of China People Republic of China Xiamen 361005 China;

    Water Resources and Environmental Institute Xiamen University of Technology Xiamen 361005 China;

    Water Resources and Environmental Institute Xiamen University of Technology Xiamen 361005 China;

    Water Resources and Environmental Institute Xiamen University of Technology Xiamen 361005 China;

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

    UV-LED-based AOPs; Acetaminophen; Rate constants; Degradation pathways; Acute toxicity;

    机译:基于UV-LED的AOPS;对乙酰氨基酚;率常数;降解途径;急性毒性;

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