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    • 5. 发明授权
    • Enhanced oxidation of air contaminants on an ultra-low density UV-accessible aerogel photocatalyst
    • 在超低密度紫外线可接近的气凝胶光催化剂上增强空气污染物的氧化
    • US06241856B1
    • 2001-06-05
    • US09189705
    • 1998-11-11
    • Gerard K. NewmanJeffrey H. HarwellLance Lobban
    • Gerard K. NewmanJeffrey H. HarwellLance Lobban
    • B01D5300
    • B01J35/0026B01J21/063B01J35/002B01J35/004
    • A method of enhancing oxidation of air contaminants on an ultra-low density, UV light accessible aerogel photocatalyst is provided. The method includes the steps of providing a photocatalytic reactor system broadly comprising a photocatalytic reactor cell, a UV light source, and a pump to force the contaminated air stream through the photocatalytic reactor cell. The photocatalytic reactor cell includes glass cell. A catalyst bed formed of a titanium dioxide aerogel is provided in the glass cell whereby a high fraction of the titanium dioxide aerogel is accessible to UV light and gas. The catalyst bed is exposed to UV light from the UV light source and a contaminated air stream is introduced into the photocatalytic reactor cell such that the air stream passes through the catalyst bed causing oxidation of the contaminants of the air stream.
    • 提供了一种在超低密度紫外线可及的气凝胶光催化剂上增强空气污染物氧化的方法。 该方法包括提供广泛包含光催化反应器电池,UV光源和泵的光催化反应器系统的步骤,以迫使污染的空气流通过光催化反应器电池。 光催化反应器电池包括玻璃电池。 在玻璃电池中提供由二氧化钛气凝胶形成的催化剂床,由此可以使紫外光和气体接近高比例的二氧化钛气凝胶。 将催化剂床暴露于来自UV光源的UV光,并将污染的空气流引入光催化反应器电池中,使得空气流通过催化剂床,引起空气流的污染物的氧化。