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Effective degradation of sulfamethoxazole with Fe2+-zeolite/peracetic acid

机译:用Fe2 +-硫酸盐/过乙酸的磺胺甲恶唑的有效降解

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Peracetic acid (PAA), a green disinfectant, has been widely used in the wastewater treatment. Here, a novel heterogeneous advanced oxidation process (Fe2+-zeolite/PAA) capable of generating hydroxyl radical was developed to remove sulfamethoxazole (SMX) from the contaminated water. The influences of various operational parameters including the initial pH, dosages of PAA and Fe2+ -zeolite and water matrix on the removal of SMX were investigated. The complete removal of SMX occurred at mild pH condition (around 7.0) within 50 min. With the increase in PAA concentration or Fe2+-zeolite dosage, the degradation of SMX both enhanced. Presence of metal cations, inorganic anions and natural organic matter in the reaction system had a different degree of influence on SMX degradation. Based on the radical scavenging experiment, hydroxyl radical was proved to be mainly responsible for SMX oxidation. The degradation mechanism of SMX by Fe2+-zeolite/PAA was tentatively proposed showing three different reaction pathways including hydroxylation, nitrosation and bond cleavage according to the detected transformation products.
机译:过乙酸(PAA)是一种绿色消毒剂,已广泛用于废水处理中。这里,开发了能够产生羟基的新型异质晚期氧化过程(Fe2 + -Zheolite / PAA)以从污染的水中除去磺胺甲恶唑(SMX)。研究了包括初始pH,PAA和Fe2 + -ZEOLITE和水基质在除去SMX的各种操作参数的影响。在50分钟内将SMX完全除去SMX发生。随着PAA浓度或FE2 + -ZEOLITE剂量的增加,SMX的降解增强。反应体系中的金属阳离子,无机阴离子和天然有机物对SMX降解的影响不同。基于自由基清除实验,证明羟基自由基主要负责SMX氧化。暂时提出了SMX的SMX的降解机制,提出了根据检测到的转化产物的三种不同的反应途径,包括羟基化,亚硝化和粘合裂解。

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