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Influence of the inlet air in efficiency of photocatalytic devices for mineralization of VOCs in air-conditioning installations

机译:进气对空调装置中VOC矿化的光催化装置效率的影响

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Nowadays, a large proportion of photocatalytic oxidation (PCO) devices are being implemented in heating, ventilation and air-conditioning systems. However, no systematic studies have been carried out regarding the influence of inlet air preconditioning. To analyse the impact of the inlet air-conditions into photocatalytic efficiency, a simulated air-conditioning duct with flowing gas through inside was designed. Isobutylene was chosen as the target VOCs. The concentration in the gas phase was monitored using a photoioni-zation detector. The influence of flow rate, relative humidity and temperature on the VOC removal efficiency was analysed. Experimental results were presented in terms of gas-removal efficiency (η) and clean air delivery rate (CADR) and analysed on a kinetic basis. From them, the weight of each parameter in the global process has been determined, from bigger to smaller contribution, flow?temperature>relative humidity. Also, the relevance of the inlet air conditions has been illustrated in a model room in order to determinate the time necessary to obtain a threshold value accomplishing with enough air quality and the energy consumption of the device. Additionally, the photocatalytic decontamination has been assimilated to the "air exchange rate", a parameter commonly used in indoor air quality studies. The results show that preconditioning of air can improve the efficiency of photocatalytic devices and bring important energy savings.
机译:如今,大部分的光催化氧化(PCO)设备正在供暖,通风和空调系统中使用。但是,尚未对进气预调节的影响进行系统的研究。为了分析进气对光催化效率的影响,设计了一个模拟的空调管道,内部有气体通过。选择异丁烯作为目标VOC。使用光电离检测器监测气相中的浓度。分析了流速,相对湿度和温度对VOC去除效率的影响。实验结果以除气效率(η)和清洁空气传输率(CADR)表示,并在动力学基础上进行了分析。根据它们,确定了全局过程中每个参数的权重,从大到小,流量-温度>相对湿度。此外,在样板房中已说明了进气状况的相关性,以确定所需的时间来获得以足够的空气质量和设备的能耗实现的阈值。此外,光催化净化已被同化为“空气交换速率”,这是室内空气质量研究中常用的参数。结果表明,空气预处理可以提高光催化装置的效率,并节省大量能源。

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