原位构建形态可控的花状木质素衍生碳/ZnO复合材料用于高效光催化降解有机染料

IF 3.7 3区 工程技术 Q2 ENGINEERING, CHEMICAL
Zhengtao Wei , Xiaofei Wang , Xuliang Lin , Xueqing Qiu
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引用次数: 0

摘要

染料工业和医疗行业排放的有机污染物对水资源质量和人类健康构成重大威胁。开发绿色、环保、高效的光催化剂去除环境中的有机污染物是解决这些问题的关键。采用直接沉淀法合成了形貌可控的花状木质素衍生碳(LC)/氧化锌(ZnO)复合材料。本研究采用碱木质素作为阴离子活性剂,在合成反应过程中改变液体表面的分子排列,降低混合物之间的表面张力,从而形成特殊的堆积形态,用于不同光照条件下水中亚甲基蓝(MB)和盐酸四环素(TCH)的高效脱除。研究了LC/ZnO的形成机理及不同反应条件下的降解特性。LC的加载可以形成比表面积大、多孔结构丰富的复合材料。此外,在木质素的作用下,ZnO的形貌由棒状结构转变为层状结构,LC可以有效地减小ZnO的带隙,从而提高光催化过程中的电子传递速率。光激发下产生的·O₂⁻和·OH自由基促进了污染物的分解。本研究提出了一种简单、经济、可扩展的光催化剂应用方法,为工业木质素的高价值应用开辟了新的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

In-situ construction of morphology-controllable flower-shaped lignin-derived carbon/ZnO composite for efficient photocatalytic degradation of organic dyes

In-situ construction of morphology-controllable flower-shaped lignin-derived carbon/ZnO composite for efficient photocatalytic degradation of organic dyes
The emission of organic pollutants from the dye industry and medical treatment represents a significant threat to the quality of water resources and human health. The development of green, environmentally friendly and efficient photocatalysts for the removal of organic pollutants from the environment is of paramount importance in addressing these issues. Flower-like lignin-derived carbon (LC)/zinc oxide (ZnO) composites with controllable morphology were synthesized via a direct precipitation method. In this study, alkali lignin was employed as an anionic active agent to alter the molecular arrangement on the liquid surface during the synthesis reaction and to reduce the surface tension between mixtures, thereby forming a special stacked morphology, which was then used for the highly efficient removal of methylidene blue (MB) and tetracycline hydrochloride (TCH) in water under different light conditions. The formation mechanism of LC/ZnO and the degradation characteristics under different reaction conditions were investigated. The loading of LC can form composites with large specific surface area and rich porous structure. In addition, with the help of lignin, the morphology of ZnO was changed from a rod-like structure to a lamellar structure, and LC could effectively reduce the band gap of ZnO, which could improve the electron transfer rate in the photocatalytic process. The ·O₂⁻ and ·OH radicals generated under photoexcitation promoted the decomposition of pollutants. This study presents a simple, economical, and scalable method for the application of photocatalysts and explores new ways for the high-value application of industrial lignin.
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来源期刊
Chinese Journal of Chemical Engineering
Chinese Journal of Chemical Engineering 工程技术-工程:化工
CiteScore
6.60
自引率
5.30%
发文量
4309
审稿时长
31 days
期刊介绍: The Chinese Journal of Chemical Engineering (Monthly, started in 1982) is the official journal of the Chemical Industry and Engineering Society of China and published by the Chemical Industry Press Co. Ltd. The aim of the journal is to develop the international exchange of scientific and technical information in the field of chemical engineering. It publishes original research papers that cover the major advancements and achievements in chemical engineering in China as well as some articles from overseas contributors. The topics of journal include chemical engineering, chemical technology, biochemical engineering, energy and environmental engineering and other relevant fields. Papers are published on the basis of their relevance to theoretical research, practical application or potential uses in the industry as Research Papers, Communications, Reviews and Perspectives. Prominent domestic and overseas chemical experts and scholars have been invited to form an International Advisory Board and the Editorial Committee. It enjoys recognition among Chinese academia and industry as a reliable source of information of what is going on in chemical engineering research, both domestic and abroad.
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