具有蚀刻形态的 MOF 衍生双金属嵌入碳是一种高效的过硫酸盐活化剂,可用于消除新出现的污染物

IF 2.9 4区 工程技术 Q2 CHEMISTRY, MULTIDISCIPLINARY
Yi-Chun Chen, Xin-Yu Jiang, Jia-Yin Lin, Bui Xuan Thanh, Haitao Wang, Chao-Wei Huang, Suresh Ghotekar, Chih-Feng Huang, Kun-Yi Andrew Lin
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引用次数: 0

摘要

由于双(4-羟基苯基)甲酮(BHP)是最常见的紫外线光稳定剂(UVLS)之一,但具有干扰内分泌的毒性,本研究旨在开发基于硫酸根自由基的有用技术,通过活化过氧单硫酸盐(PMS)来消除水中的 BHP。因此,虽然钴(Co)作为过渡金属在活化 PMS 方面具有功效,但利用锰/钴(Mn/Co)双金属氧化物作为活化 PMS 的异相催化剂,前景更加令人鼓舞。在本研究中,我们成功制备了具有独特中空工程纳米结构的 N 掺杂碳支撑锰/钴纳米颗粒(NCMC)。合成过程包括使用 Co-MOF 作为前驱体,然后通过简单的蚀刻和掺杂锰来获得所需的锰/钴双金属氧化物纳米粒子成分。锰掺杂剂的加入促进了锰/钴纳米粒子与掺杂 N 的中空结构碳基质的结合。与 NCC 和基准催化剂 Co3O4 NP 相比,NCMC 在降解 BHP 的 PMS 活性方面表现出更高的活性。生态毒性研究结果表明,NCMC + PMS 降解 BHP 不会产生有害或毒性极高的副产品,因此 NCMC 有可能成为活化 PMS 降解 BHP 的有效异相催化剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

MOF-Derived Bimetal-Embedded Carbon with Etched Morphologies as an Efficient Activator of Peroxymonosulfate for Eliminate Emerging Contaminants

MOF-Derived Bimetal-Embedded Carbon with Etched Morphologies as an Efficient Activator of Peroxymonosulfate for Eliminate Emerging Contaminants

As bis(4-hydroxyphenyl)methanone (BHP) is one of the most common UV light stabilizers (UVLS), but exhibits endocrine disrupting toxicity, this study aims to develop useful sulfate radical-based techniques to eliminate BHP from water by activating peroxymonosulfate (PMS). Hence, while cobalt (Co) exhibits efficacy as a transition metal for the activation of PMS, the utilization of manganese/cobalt (Mn/Co) bimetallic oxides presents an even more encouraging prospect as heterogeneous catalysts for PMS activation. In this study, we have successfully produced N-doped carbon-supported Mn/Co nanoparticles (NCMC) with a distinctive hollow-engineered nanostructure. The synthesis involved the utilization of Co-MOF as a precursor, followed by easy etching and Mn doping to achieve the desired composition of Mn/Co bimetallic oxide nanoparticles. The inclusion of Mn dopant facilitates the integration of Mn/Co nanoparticles into the hollow-structured N-doped carbon matrix. NCMC demonstrates much higher activity compared to NCC and the benchmark catalyst, Co3O4 NP, in terms of PMS activation for the degradation of BHP. The findings of the eco-toxicity study indicate that the degradation of BHP by NCMC + PMS does not yield hazardous or extremely toxic byproducts, so establishing NCMC as a potentially effective heterogeneous catalyst for activating PMS in the degradation of BHP.

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来源期刊
Korean Journal of Chemical Engineering
Korean Journal of Chemical Engineering 工程技术-工程:化工
CiteScore
4.60
自引率
11.10%
发文量
310
审稿时长
4.7 months
期刊介绍: The Korean Journal of Chemical Engineering provides a global forum for the dissemination of research in chemical engineering. The Journal publishes significant research results obtained in the Asia-Pacific region, and simultaneously introduces recent technical progress made in other areas of the world to this region. Submitted research papers must be of potential industrial significance and specifically concerned with chemical engineering. The editors will give preference to papers having a clearly stated practical scope and applicability in the areas of chemical engineering, and to those where new theoretical concepts are supported by new experimental details. The Journal also regularly publishes featured reviews on emerging and industrially important subjects of chemical engineering as well as selected papers presented at international conferences on the subjects.
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