多组分VOC净化工程功能催化剂研究进展

IF 7.4 Q1 ENGINEERING, ENVIRONMENTAL
Jicheng Liu, Yani Wu, Chunli Zheng*, Mingjiao Tian, Zeyu Jiang*, Reem Albilali and Chi He*, 
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引用次数: 0

摘要

挥发性有机物(VOCs)对人类健康和生态环境造成了严重危害。催化氧化VOCs生成H2O和CO2等无害产物是一种很有前途的方法。虽然已经开发出了许多分解VOC的催化剂,但在现实条件下,设计和合成针对工业废气中多组分VOC净化的功能性催化剂仍然是一个很大的挑战。在实际排气口中,多组分VOCs组成复杂,同时存在NOx、SO2、H2O等杂质。在工业环境中,传统的催化剂往往存在稳定性差、杂质失活和复杂VOC混合物氧化效率低的问题。解决这些挑战需要更深入地了解基本机制和先进的催化剂设计策略。因此,迫切需要阐明多组分VOC氧化机理,揭示杂质的影响行为,指导研究人员如何在现实条件下主动合成有效、稳定的多组分VOC净化催化剂。因此,本文系统地综述了用于多组分挥发性有机化合物氧化的高活性、耐用催化剂的工程研究进展。重点介绍了多组分挥发性有机化合物在催化氧化过程中发生混合效应的实验和理论研究。对多污染物控制催化剂的进一步开发和研究进行了展望。这一综述有助于研究人员更好地了解多组分VOCs的催化消除,为今后VOC氧化催化剂的设计和实际工业应用提供了很大的基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent Advances in Engineering Functional Catalysts toward Multicomponent VOC Purification under Reality

Volatile organic compounds (VOCs) have caused serious harm to human health and the ecological environment. As a promising strategy, the catalytic oxidation of VOCs into harmless products such as H2O and CO2 has been widely employed. Although many catalysts have been developed for VOC decomposition, the design and synthesis of functional catalysts toward multicomponent VOC purification in industrial exhaust gas under reality remains a great challenge. In the actual vent, the composition of multicomponent VOCs is complex and impurities such as NOx, SO2, and H2O are also present. Traditional catalysts often suffer from poor stability, deactivation by impurities, and inefficient oxidation of complex VOC mixtures in industrial settings. Addressing these challenges requires a deeper understanding of the fundamental mechanisms and advanced catalyst design strategies. Therefore, elucidating the mechanism of multicomponent VOC oxidation and revealing the influential behavior of impurities are urgently required to guide researchers on how to synthesize effective and stable catalysts proactively for multicomponent VOC purification under reality. Accordingly, this review systematically summarizes the recent advances in the engineering of highly active and durable catalysts for the oxidation of multicomponent VOCs. The experimental and theoretical studies revealing the mixing effects occurring in the catalytic oxidation process of multicomponent VOCs are also highlighted. Further development of and research on catalysts to be adopted in multipollutant controlling are proposed. This review can help researchers to better understand the catalytic elimination of multicomponent VOCs and provide a great foundation for future design and practical industrial application of VOC oxidation catalysts.

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来源期刊
ACS ES&T engineering
ACS ES&T engineering ENGINEERING, ENVIRONMENTAL-
CiteScore
8.50
自引率
0.00%
发文量
0
期刊介绍: ACS ES&T Engineering publishes impactful research and review articles across all realms of environmental technology and engineering, employing a rigorous peer-review process. As a specialized journal, it aims to provide an international platform for research and innovation, inviting contributions on materials technologies, processes, data analytics, and engineering systems that can effectively manage, protect, and remediate air, water, and soil quality, as well as treat wastes and recover resources. The journal encourages research that supports informed decision-making within complex engineered systems and is grounded in mechanistic science and analytics, describing intricate environmental engineering systems. It considers papers presenting novel advancements, spanning from laboratory discovery to field-based application. However, case or demonstration studies lacking significant scientific advancements and technological innovations are not within its scope. Contributions containing experimental and/or theoretical methods, rooted in engineering principles and integrated with knowledge from other disciplines, are welcomed.
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