Carbon based nanocomposites, surface functionalization as a promising material for VOCs (volatile organic compounds) treatment

热解 材料科学 吸附 碳纤维 生物炭 光催化 活性炭 纳米技术 石墨氮化碳 化学工程 催化作用 化学 有机化学 复合数 复合材料 工程类
作者
Farooq Nawaz,Muhammad Ali,Shakeel Ahmad,Yang Yong,Suhaib Rahman,Muhammad Naseem,Sadam Hussain,Abdul Razzaq,Adnan Khan,Farman Ali,Rayya A. Al-Balushi,Mohammad M. Al-Hinaai,Nisar Ali
出处
期刊:Chemosphere [Elsevier BV]
卷期号:364: 143014-143014 被引量:11
标识
DOI:10.1016/j.chemosphere.2024.143014
摘要

Urban residential and industrial growth development affects sustainable and healthful indoor environments. Environmental issues are a global problem. The deterioration of indoor air quality has prompted the creation of several air cleansing techniques. This review explains how carbon-based materials have influenced the development of air purification systems using photocatalysis. These carbon-based materials offer unique properties and advantages in VOC removal processes. Biochar, produced from biomass pyrolysis, provides an environmentally sustainable solution with its porous structure and carbon-rich composition. Carbon quantum dots, with their quantum confinement effects and tunable surface properties, show promise in VOC sensing and removal applications. Polymers incorporating reduced graphene oxide demonstrate enhanced adsorption capabilities owing to the synergistic effects of graphene and polymer matrices. Activated carbon fibers, characterized by their high aspect ratio and interconnected porosity, provide efficient VOC removal with rapid kinetics. With their unique electronic and structural properties, graphitic carbon nitrides offer opportunities for photocatalytic degradation of VOCs under visible light. Catalysts integrated with MXene, a two-dimensional nanomaterial, exhibit enhanced catalytic activity for VOC oxidation reactions. Using various carbon-based materials in VOC removal showcases the versatility and effectiveness of carbon-based approaches in addressing environmental challenges associated with indoor air pollution. Metal-organic-framework materials are carbon-based compounds. It examines the correlation between VOC mineralization and specific characteristics of carbon materials, including surface area, adsorption capability, surface functional groups, and optoelectronic properties. Discussions include the basics of PCO, variables influencing how well catalysts degrade, and degradation mechanisms. It explores how technology will improve in the future to advance studies on healthy and sustainable indoor air quality.
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