首页|期刊导航|灌溉排水学报|电化学原位生成的高铁物种体系去除养殖废水中的磺胺甲恶唑效果研究

电化学原位生成的高铁物种体系去除养殖废水中的磺胺甲恶唑效果研究OA

Electrochemically generated ferric iron for efficient removal of sulfamethoxazole from aquaculture wastewater

中文摘要英文摘要

[目的]抗生素在养殖业中的滥用导致废水中药物残留超标,而传统处理工艺(如吸附法和活性污泥法)难以有效去除.本文以磺胺甲恶唑为目标污染物,构建了电化学原位生成高铁物种(E/Fe(Ⅲ))体系,研究其用于去除养殖废水中磺胺甲恶唑(SMX)效果.[方法]基于降解试验,研究了电极种类、缓冲液种类、缓冲液物质的量浓度、Fe3+初始物质的量浓度、pH 值和电压对于 E/Fe(Ⅲ)体系降解SMX 的影响.利用淬灭剂和捕获剂,对降解过程中起关键作用的活性氧物质进行鉴定,并对比在降解中的贡献差异.基于ECOSAR 对降解产物的毒性预测结果,评估体系的解毒效果.最后,评估了 E/Fe(Ⅲ)在实际水体中的降解效果.[结果]①在 0.1 mol/L 物质的量浓度的硼酸盐缓冲液中,在 15 V 电压、25 μmol/L Fe3+、pH=9的条件下,能够在 120 min 内降解 90.36%的初始质量浓度为 10 mg/L的 SMX.②除了高铁物种外,·OH、1O2 和·O2-在降解污染物时均起到了一定作用,且 1O2 的贡献占比最大.③降解产物的预测毒性远低于 SMX,在各种实际废水中均能保持良好的降解效果.[结论]E/Fe(Ⅲ)体系被证明是从养殖废水中去除磺胺甲恶唑的环保和可持续技术.

[Objective]The overuse of antibiotics in livestock industry has resulted in elevated antibiotic residues in aquaculture wastewater,which cannot be effectively removed by conventional treatments such as adsorption and activated sludge.This paper develops an in situ electrochemical ferric iron(E/Fe(Ⅲ))generation system to degrade sulfamethoxazole(SMX)in aquaculture wastewater.[Method]We experimentally investigated the effects of electrode type,buffer type,buffer concentration,initial Fe3+concentration,pH,and voltage of the E/Fe(Ⅲ)system on SMX degradation.Radical quenchers were used to identify reactive oxygen species involved in the degradation and quantify their relative contributions.The toxicity of degradation by-products and the system's detoxification efficacy were predicted and evaluated using ECOSAR.We also evaluated the performance of the E/Fe(Ⅲ)system for degrading SMX in real water bodies.[Result]In a 0.1 mol/L borate buffer solution with an initial SMX concentration of 10 mg/L,when voltage was 15 V,Fe3+concentration was 25 μmol/L Fe3+and pH=9,the degradation rate of SMX reached 90.36%in 120 minutes.In addition to ferric species,·OH,1O2,and·O2-all contributed to SMX degradation,with 1O2 contributing the most.Our results showed that the toxicity of the degradation by-products was significantly lower than that of SMX,and that stable degradation was achieved for various types of real wastewater.[Conclusion]The E/Fe(Ⅲ)system is an environmentally friendly and sustainable technology for removing sulfamethoxazole in real aquaculture wastewaters.

林瑜航;邓志康;张亚楠;张祖麟

湘湖实验室,杭州 311231||桂林理工大学 环境科学与工程学院,广西 桂林 541000武汉理工大学 资源与环境工程学院,武汉 430070桂林理工大学 环境科学与工程学院,广西 桂林 541000詹姆斯赫顿研究所,英国 阿伯丁 AB15 8QH

资源环境

原位生成高铁物种活性氧磺胺甲恶唑

in-situ generationhigh-valent ironreactive oxygen speciessulfamethoxazole

《灌溉排水学报》 2026 (7)

174-180,7

浙江省自然科学基金联合基金资助项目(LLSSZ25B050001)浙江省"尖兵领雁"研发攻关计划资助项目(2024SSYS0103)

10.13522/j.cnki.ggps.2026045

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