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基于塑料废弃物衍生碳的碳催化过硫酸盐处理多组分混合物中阳离子和阴离子染料同步降解的机理洞察

Mechanistic insights into carbo-catalyzed persulfate treatment for simultaneous degradation of cationic and anionic dye in multicomponent mixture using plastic waste-derived carbon.

作者信息

Kumar Sumit, Tewari Chetna, Sahoo Nanda Gopal, Philip Ligy

机构信息

EWRE Division, Department of Civil Engineering, IIT Madras, Chennai 600036, India.

Prof. Rajendra Singh Nanoscience and Nanotechnology Centre, Department of Chemistry, D.S.B. Campus, Kumaun University, Nainital, Uttarakhand, 263001, India.

出版信息

J Hazard Mater. 2022 Aug 5;435:128956. doi: 10.1016/j.jhazmat.2022.128956. Epub 2022 Apr 20.

DOI:10.1016/j.jhazmat.2022.128956
PMID:35472549
Abstract

Upcycling waste into value-added products for utilization in wastewater abatements has been explored in a number of treatment technologies. One such waste, single-use plastic, which poses significant adverse environmental and economic impact, has been chosen and converted into graphitic carbon to reduce the waste burden sustainably and economically. The sorptive and catalytic performance of synthesized plastic waste-derived carbon (PWC) was evaluated using brilliant green (BG) and eosin yellow (EY) as target pollutants. The adsorption capacity of PWC was very low for BG (7.41 mg/g) and EY (4.93 mg/g). The coupling of PWC with peroxymonosulfate (PMS) promoted dye degradation. Complete degradation of the dye, with ~61% reduction in TOC and ~95% reduction in toxicity, was achieved by oxidative treatment (initial concentration: 10 mg/L). The functionalities of PWC facilitated better electron transfer to PMS for its effective activation, which led to the production of SO and OH. The quenching study confirmed that the degradation of dyes was primarily due to SO. Additionally, the pathways of dye degradation were proposed based on the intermediates identified. Thus, this study established the high potential of PWC as a metal-free catalyst in PMS activation for the abatement of organic pollutants.

摘要

在许多处理技术中,人们已经探索了将废物升级转化为增值产品以用于废水处理。其中一种废物,即一次性塑料,它对环境和经济造成了重大的不利影响,现已被选用并转化为石墨碳,以可持续且经济地减轻废物负担。以亮绿(BG)和曙红Y(EY)作为目标污染物,评估了合成的塑料废物衍生碳(PWC)的吸附和催化性能。PWC对BG(7.41mg/g)和EY(4.93mg/g)的吸附容量非常低。PWC与过一硫酸盐(PMS)的耦合促进了染料降解。通过氧化处理(初始浓度:10mg/L)实现了染料的完全降解,TOC降低了约61%,毒性降低了约95%。PWC的官能团促进了向PMS的更好电子转移以实现其有效活化,从而产生了SO和OH。淬灭研究证实染料的降解主要归因于SO。此外,基于鉴定出的中间体提出了染料降解途径。因此,本研究确立了PWC作为无金属催化剂在PMS活化中用于去除有机污染物的巨大潜力。

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