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The Contaminant Removal Efficiency Of An Air Cleaner Using The Adsorption/desorption Effect

机译:利用吸附/解吸作用去除空气净化器的污染物

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The adsorption and desorption of volatile organic compounds (VOCs) in relation to material surfaces were conducted to control indoor air quality. The VOC removal performance of building materials using sorption effects was validated in cases related to poor indoor air quality that occurred during non-ventilation periods during intermittent-ventilation situations. The objective of this investigation is to present the contaminant removal efficiency and practicality of a prototype air cleaner which uses sorption effects. Toluene and formaldehyde were used as pollutant sources and were continuously emitted into the test chamber. Effects due to the number of sorption units, operation time and mode of contaminant removal performance were examined. The sorption materials evaluated in this investigation were a porous material, zeolite, pumice stone and hydro-corn. As a result of the experiments, zeolite exhibited relatively high contaminant removal efficiency with toluene, and zeolite and the porous material exhibited high removal efficiency with formaldehyde for both one-cycle and two-cycle sorption modes. Moreover, significant removal performances were observed in the numerical analysis of the continuous-operation mode.
机译:进行相对于材料表面的挥发性有机化合物(VOC)的吸附和解吸,以控制室内空气质量。在间歇通风情况下,在非通风期间发生的与室内空气质量差有关的情况下,已验证了利用吸附作用去除建筑材料的VOC的性能。这项研究的目的是介绍利用吸附作用的原型空气净化器的污染物去除效率和实用性。甲苯和甲醛用作污染物源,并连续排放到测试室中。考察了由于吸附单元数量,操作时间和污染物去除性能模式而产生的影响。在这项研究中评估的吸附材料为多孔材料,沸石,浮石和水化玉米。作为实验的结果,对于一周期和两周期吸附模式,沸石显示出相对较高的甲苯污染物去除效率,并且沸石和多孔材料显示出针对甲醛的较高去除效率。此外,在连续操作模式的数值分析中观察到了显着的去除性能。

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