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首页> 外文期刊>Chemosphere >Enhanced removal of oxytetracycline antibiotics from water using manganese dioxide impregnated hydrogel composite: Adsorption behavior and oxidative degradation pathways
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Enhanced removal of oxytetracycline antibiotics from water using manganese dioxide impregnated hydrogel composite: Adsorption behavior and oxidative degradation pathways

机译:使用二氧化锰浸渍水凝胶复合材料增强从水中除去含氧酸抗生素:吸附行为和氧化降解途径

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摘要

The present work provides the first attempt of using manganese dioxide loaded poly(sodium acrylate) hydrogel (MnO2@PSA) to address potential threats posed by oxytetracycline (OTC) antibiotics in aqueous environment. The MnO2@PSA was prepared via a facile approach and demonstrated enhanced removal performance even under extremely high concentrations of OTC. The outstanding performance exhibited by MnO2@PSA was attributed to synergetic effects of adsorption oxidative degradation. The synthesized composite was characterized evaluated under varying conditions. The adsorption pH was optimized at pH 5, at which the removal efficiency OTC was reached 91.46%. According to the kinetics study, the pseudo-second-order kinetic model was the best to explain the adsorption data, implying the interaction mechanisms were dominated by chemisorption. The Langmuir isotherm model was the best to explain the isotherm data, and the corresponding maximum adsorbed amount of OTC was 1150.4 mg g(-1). The MnO2@PSA was highly selective for OTC adsorption and degradation under the presence of natural organic matter and common environmental metal ions. The oxidative degradation study indicated that OTC molecules were structurally degraded into 15 intermediate products via six reaction pathways. Both the theoretical models and spectroscopic methods demonstrated the removal mechanism of OTC onto MnO2@PSA was governed by ion exchange, cation-pi bonding, hydrogen-bonding, and pi-pi electron donor-acceptor. Overall, MnO2@PSA is an excellent and environmentally sustainable material to remove OTC from water and wastewater via the combined effects of adsorption and oxidative degradation.
机译:本作者提供了第一次使用二氧化锰负载的聚(丙烯酸钠)水凝胶(MNO2 @ PSA)来解决含氧环境中氧化胞素(OTC)抗生素造成的潜在威胁。 MNO2 @ PSA通过容易方法制备,即使在极高的OTC下也表现出增强的去除性能。 MNO2 @ PSA表现出的出色性能归因于吸附氧化降解的协同作用。在不同的条件下表征了合成的复合材料。在pH5下优化吸附pH,在此,去除效率OTC达到91.46%。根据动力学研究,伪二阶动力学模型是最佳解释吸附数据,暗示相互作用机制由化学占主导地位。 Langmuir等温模型是最佳解释等温数据,并且相应的最大吸附量的OTC为1150.4mg(-1)。 MNO2 @ PSA在天然有机物质和常见环境金属离子存在下对OTC吸附和降解具有高度选择性。氧化降解研究表明,通过六种反应途径,OTC分子通过六种反应途径在15个中间产物中。理论模型和光谱方法都证明了OTC上的去除机制在MNO2上,PSA由离子交换,阳离子 - PI键合,氢键和PI-PI电子供体 - 受体控制。总的来说,MNO2 @ PSA是一种优异的和环保可持续的材料,可通过吸附和氧化降解的综合影响从水和废水中除去OTC。

著录项

  • 来源
    《Chemosphere》 |2021年第2期|130926.1-130926.12|共12页
  • 作者单位

    Tongji Univ Coll Environm Sci & Engn Inst Environm Sustainable Dev State Key Lab Pollut Control & Resource Reuse Shanghai 200092 Peoples R China|Shanghai Inst Pollut Control & Ecol Secur Shanghai 200092 Peoples R China;

    Chinese Acad Sci Key Lab Environm Biotechnol Res Ctr Ecoenvironm Sci Beijing 100085 Peoples R China|Arba Minch Univ Coll Nat Sci Dept Biol Arba Minch 21 Ethiopia;

    Tongji Univ Coll Environm Sci & Engn Inst Environm Sustainable Dev State Key Lab Pollut Control & Resource Reuse Shanghai 200092 Peoples R China|Shanghai Inst Pollut Control & Ecol Secur Shanghai 200092 Peoples R China;

    Tongji Univ Coll Environm Sci & Engn Inst Environm Sustainable Dev State Key Lab Pollut Control & Resource Reuse Shanghai 200092 Peoples R China|Shanghai Inst Pollut Control & Ecol Secur Shanghai 200092 Peoples R China;

    Tongji Univ Coll Environm Sci & Engn Inst Environm Sustainable Dev State Key Lab Pollut Control & Resource Reuse Shanghai 200092 Peoples R China|Shanghai Inst Pollut Control & Ecol Secur Shanghai 200092 Peoples R China;

    Tongji Univ Coll Environm Sci & Engn Inst Environm Sustainable Dev State Key Lab Pollut Control & Resource Reuse Shanghai 200092 Peoples R China|Shanghai Inst Pollut Control & Ecol Secur Shanghai 200092 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    MnO2@PSA; Oxytetracycline; Adsorption; Intermediate products; Degradation pathways; Mechanism;

    机译:MNO2 @ PSA;氧赤素素;吸附;中间产品;降解途径;机制;

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