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Nonwoven Polyethylene Terephthalate Paper Loaded with Enzyme Coupled Multiwall Carbon Nanotubes for Superior Photocatalytic Activity for Water Remediation

机译:非织造聚乙烯对苯二甲酸酯,装载酶偶联多壁碳纳米管,用于卓越的光催化活性用于水处理

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摘要

A highly photocatalytic, carbon coated nonwoven polyethylene terephthalate paper (CCPETP) is developed by using the wet-laid method for photodegradation of dye effluents from the textile wastewater treatment. The designed nonwoven PET paper is coated with Multiwall walled carbon nanotubes (MWCNT) catalyst coupled with cationised enzyme agent. Three different types of enzymatic coupling agents were used i.e. Lipase, Glucose oxidase, and Laccase, respectively. Enzymes are generally globular proteins, packed with amino complex N-terminals, oxygenated amines and hydroxyl atoms. The sequence of the amino acids specifies the structure which in turn determines the catalytic activity of the enzyme. The cationization of the enzyme under acidic condition (approximate to pH 3), detach the amino/oxygen complex structure from their core structure and encapsulate over MWCNT surface. The coupled enzyme dissipates functional oxygenated amines, pyrrolic, pyridinic, graphitic and quaternary type of nitrogen contents. The attachment of functionalized surface groups without forming any defect-rich vacancy promotes efficient charge generation and photocatalytic degradation of methylene blue dye (MB) particulates. Besides, the suggested low-cost porous PET nonwoven paper helps to absorb a large number of dye molecules for efficient dye degradation. The excellent photocatalytic activity of the proposed thin CCPETP photocatalyst is mainly attributed to its specific coupled enzyme, high adsorbing capacity of PET paper, and low recombination of the photogenerated electrons and holes. The optimal loading content of enzyme coupled MWCNT over nonwoven PET paper decolorized approximate to 99.0% methylene blue (MB) dye in 100 min. The excellent dye degradation efficiency of this low-cost material is attributed its surface characteristics and high absorbing properties. The synergistic effect of cluster active sites and the functional amine/oxygen surface groups promoting the generation of OH ions for MB degradation. The fabricated nonwoven paper is expected for large industrial applications and will provide a generic route towards the fabrication of textile structured photocatalyst.
机译:通过使用湿铺板法从纺织废水处理中采用湿式铺设方法,开发出高度光催化碳涂覆的非织造聚对苯二甲酸乙酯纸(CCPETP)。设计的非织造宠物纸涂有多壁壁碳纳米管(MWCNT)催化剂,与阳离子酶试剂偶联。使用三种不同类型的酶促偶联剂I.e.脂肪酶,葡萄糖氧化酶和漆酶。酶通常是球状蛋白质,用氨基络合物N-末端,含氧胺和羟基原子填充。氨基酸的序列规定了又决定了酶的催化活性的结构。酶的阳离子化在酸性条件下(近似pH3),将氨基/氧气复合结构与其核心结构分离并包封在MWCNT表面上。偶联酶散发官能氧化胺,吡咯,吡啶,石墨和季型氮含量。官能化表面基团的附着不形成任何富含缺陷的空位,促进了亚甲基蓝染料(MB)颗粒的有效电荷产生和光催化降解。此外,建议的低成本多孔宠物非织造纸有助于吸收大量染料分子以进行有效染料降解。所提出的薄CCPetP光催化剂的优异光催化活性主要归因于其特定的偶联酶,PET纸的高吸附能力,以及光发生的电子和孔的低复合。酶的最佳加载含量在100分钟内通过非织造PET纸耦合MWCNT脱色至99.0%亚甲基蓝(MB)染料。这种低成本材料的优异染料降解效率归因于其表面特性和高吸收性。群体活性位点的协同效应和促进OH离子产生的官能胺/氧表面基团进行MB降解。预期制造的非织造纸对大型工业应用,并将提供朝向纺织结构光催化剂制造的通用途径。

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