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Modeling and physical interpretation of photocatalytic oxidation efficiency in indoor air applications

机译:室内空气应用中光催化氧化效率的建模和物理解释

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Volatile organic compounds (VOCs) are the major pollutants in indoor air, which significantly impact indoor air quality (1AQ). As a promising technique to remove VOCs, photocatalytic oxidation (PCO) takes the advantages of oxidation of a large range of VOCs with low energy consumption. In this study, the mass transports and reaction mechanism involved in the PCO process have been studied. In addition, the kinetic models of PCO on the different conditions of elementary reactions have been critically reviewed. Moreover, the factors that may affect the efficiency of PCO were interpreted based on the established fundamental mechanism of PCO. Some recommendations were made for future work to improve the efficiency of PCO system for building applications.
机译:挥发性有机化合物(VOC)是室内空气中的主要污染物,会对室内空气质量(1AQ)产生重大影响。作为一种去除VOC的有前途的技术,光催化氧化(PCO)具有以低能耗消耗氧化大量VOC的优势。在这项研究中,已经研究了PCO过程中涉及的传质和反应机理。另外,已经对PCO在基本反应的不同条件下的动力学模型进行了严格审查。此外,基于已建立的PCO基本机制,解释了可能影响PCO效率的因素。为将来的工作提出了一些建议,以提高建筑应用的PCO系统的效率。

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