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The removal of metformin and other selected PPCPs from water by poly (3,4-ethylenedioxythiophene) photocatalyst

机译:通过聚丙烯蛋白和通过聚丙烯蛋白和其他选定的PPCP通过聚(3,4-亚乙基氧基噻吩)光催化剂从水中除去

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摘要

The objective of this study was to investigate the photocatalytic removal of PPCPs using poly(3.4-ethylenedioxythiophene) (PEDOT) polymer. PEDOT is a conducting polymer that exhibits excellent photocatalytic activity and was used in this study without any additives or metal co-catalysts. The PEDOT was synthesized using chemical oxidative polymerization and characterized further for composition and morphology. PEDOT, in the presence of UV irradiation, showed >99% degradation of one of the most widely prescribed antidiabetic drugs, metformin, within 60 min. The effect of varying concentration of PEDOT, pH, and light irradiance was studied to achieve maximum photocatalytic efficiency. Two major degradation products of metformin of m/z 116 and 126 were detected using triple quadrupole LC-MS/MS, while the degradation kinetics was found to be of pseudo-first-order. Results revealed that photogenerated electrons, holes, and radical species played a role in the PPCPs' degradation. When a mixture of seven PPCPs in the ultra-pure water matrix was tested, more than 99% removal was observed for most of the PPCPs within 60 min. The removal efficiency decreased in a real wastewater effluent due to the presence of dissolved organic matter; however, still, more than 50% removal was observed for majority of the studied PPCPs. The results of PEDOT reusability revealed that the reuse contributed to the drop in the conductivity and subsequent drop in the photocatalytic activity; however, a simple acid treatment was found to be effective to recoup its conductivity. PEDOT was successfully immobilized on an electrospun fiber mat to enhance its applicability.
机译:本研究的目的是使用聚(3.4-亚乙腈)(PEDOT)聚合物来研究PPCP的光催化去除。 PEDOT是一种导电聚合物,其表现出优异的光催化活性,并在本研究中使用而没有任何添加剂或金属助催化剂。使用化学氧化聚合合成佩特,并进一步表征组合物和形态学。在紫外线照射的存在下,PEDOT显示出> 99%的降解最广泛规定的抗糖尿病药物,二甲双胍在60分钟内。研究了不同浓度的染色剂,pH和光辐照度的效果,以实现最大的光催化效率。使用TripleQuadrupole LC-MS / MS检测M / Z 116和126的二甲双胍的两种主要降解产物,同时发现降解动力学是伪第一阶。结果表明,光生电子,孔和自由基物种在PPCPS的降解中起作用。当测试超纯水基质中的七个PPCP的混合物时,在60分钟内对大部分PPCP进行大多数PPCP观察到超过99%的去除。由于存在溶解有机物质,实际废水流出物中的去除效率降低;然而,对于大多数研究的PPCP,观察到超过50%以上的去除。 PEDOT可重用性的结果表明,再利用导致导电性的下降和随后的光催化活性下降;然而,发现简单的酸处理有效地恢复其电导率。 PEDOT成功地固定在电纺纤维垫上,以提高其适用性。

著录项

  • 来源
    《The Science of the Total Environment》 |2021年第10期|142302.1-142302.10|共10页
  • 作者单位

    Department of Civil and Environmental Engineering Faculty of Engineering The University of Auckland Auckland 1010 New Zealand;

    School of Chemical Sciences Faculty of Science The University of Auckland Auckland 1010 New Zealand;

    Department of Civil and Environmental Engineering Faculty of Engineering The University of Auckland Auckland 1010 New Zealand;

    The University of Limoges 87032 Limoges France;

    School of Chemical Sciences Faculty of Science The University of Auckland Auckland 1010 New Zealand MacDiarmid Institute for Advanced Materials and Nanotechnology New Zealand;

    Department of Civil and Environmental Engineering Faculty of Engineering The University of Auckland Auckland 1010 New Zealand;

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

    Photocatalysis; Conducting polymers; Metformin; PPCPs; Wastewater; PEDOT;

    机译:光催化;导电聚合物;二甲双胍;PPCPS;废水;佩特;

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