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Air Cleaning by Photo Catalytic Oxidation:An Experimental Performance Test

机译:光催化氧化净化空气:实验性能测试

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摘要

The paper presents the results from an experimental evaluation of a novel air cleaner based on UVC radiation at 253.7 nm in combination with a titanium dioxide (TiO_2) catalytic converter. The wavelength of the UV light is selected with the purpose of enhancing the capability of the device to deactivate micro-organisms. Furthermore, the selected UV-wavelength is expected not to cause any substantial generation of ozone. The air cleaner, denoted PCOC3, consists of three photo catalytic oxidation (PCO) chambers connected in series. The device is equipped with a pre-filter for removal of airborne particles (MERV 11). The air cleaner is intended for in-duct use, i.e. integration in central ventilation systems. In a subset of the experiments ozone was generated by an electrical spark generator placed upstream of the tested air cleaner and measured downstream by a direct reading instrument based on UV-spectroscopy. In another subset of experiments selected VOCs were injected into the test-rig and the decay was measured after the VOC injection had been stopped. The measurements showed no signs of any ozone being generated by the PCOC3. Instead the results indicate that ozone is captured by the device at a removal rate corresponding to 67 air changes per hour in the test-rig used, which, in turn corresponds to a single pass efficiency of about 15%. Also the studied VOCs were found to be removed by the PC0C3, but at substantially lower rates; in the range of a few air changes per hour only.
机译:本文介绍了基于253.7 nm的UVC辐射和二氧化钛(TiO_2)催化转化器的新型空气净化器的实验评估结果。选择紫外线的波长是为了增强装置使微生物失活的能力。此外,预期所选的UV波长不会引起任何实质性的臭氧产生。空气净化器用PCOC3表示,由三个串联的光催化氧化(PCO)室组成。该设备配有用于去除空气中颗粒物的预过滤器(MERV 11)。空气滤清器旨在用于管道使用,即集成到中央通风系统中。在实验的一个子集中,臭氧由放置在被测空气滤清器上游的电火花发生器产生,并由基于紫外线光谱的直接读取仪器在下游测量。在另一个实验子集中,将选定的VOC注入测试装置,并在停止VOC注入后测量衰减。测量结果表明,PCOC3没有产生任何臭氧的迹象。取而代之的是,结果表明该设备以相当于每小时使用67次换气的设备捕获的臭氧去除率捕获了臭氧,这反过来相当于约15%的单次通过效率。还发现研究的VOC可被PC0C3去除,但速率要低得多。每小时只能换气几次。

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  • 来源
    《ASHRAE Transactions 》 |2011年第2011期| p.426-433| 共8页
  • 作者单位

    are PhD students in the Department of Energy and Environment, Division of Building Services Engineering, Chalmers University of Technology, Gothenburg, Sweden;

    is a project manager at CIT Energy Management and an associated professor in the Department of Energy and Environment, Division of Building Services Engineering, Chalmers University of Technology, Gothenburg, Sweden;

    is a head manager at ALPHA Environmental Inc., Emerson, New Jersey, USA;

    are PhD students in the Department of Energy and Environment, Division of Building Services Engineering, Chalmers University of Technology, Gothenburg, Sweden;

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