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Design of Air Purifiers for Aircraft Passenger Cabins Based on Photocatalytic Oxidation Technology

机译:基于光催化氧化技术的飞机乘客舱空气净化器设计

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An approach to airliner passenger cabin contaminant removal based on ultraviolet light (UV) illumination of the photoactive semiconductor, titania (T_1O_2), at room temperature is described. This technology is effective at conversion of harmful volatile organic compounds (VOC) to generally non-toxic compounds, and is also effective at killing bioaerosols. Factors unique to the airliner cabin environment make this a particularly promising application for this technology. This paper describes prototype test results and design methodologies needed for application of the technology to aircraft passenger cabins. The requirements of purifiers for airliners in terms of power consumption, size and weight, and life cycle costs will be compared to those for activated carbon adsorption. It will also be shown that photocatalytic oxidation (PCO) reactors designed for VOC control can supplant high efficiency particulate arresting (HEPA) filters for bioaerosol control. The design of compact purifiers for retrofitting existing airliners will be discussed.
机译:描述了一种基于光活性半导体的紫外线(UV)照射的客机客舱污染物去除的方法,在室温下进行紫外线(T_1O_2)。该技术有效地将有害挥发性有机化合物(VOC)转化为一般无毒化合物,并且在杀死生物溶胶中也是有效的。客机机舱环境所特有的因素使这是对这项技术的特别有希望的应用。本文介绍了将技术应用于飞机乘客小屋所需的原型测试结果和设计方法。将在功耗,尺寸和重量和生命周期成本方面对客机的净化器的要求与活性炭吸附的那些。还将表明,设计用于控制VOC光催化氧化(PCO)的反应器可以取代高效微粒阻止对生物气溶胶控制(HEPA)过滤器。将讨论用于改造现有客机的紧凑型净化器的设计。

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