Development of a Photocatalytic Filter to Control Indoor Air Quality

B. Del Curto, P. Tarsini, A. Cigada
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引用次数: 5

Abstract

Background The aim of this work was the development and characterization of a photocatalytic filter for the treatment of indoor air, characterized by a low pressure drop. Methods The filter (photocatalytic filter) was based on a polyester substrate additivated with active carbon (Carbotex 150-6), treated with a sol of titanium dioxide (Sol 121-AB; NextMaterials Ltd.) and illuminated with UV LEDs to induce photocatalytic activity. Results Tests showed that this filter, used in a suitable device for air circulation with a very low noise level, had the ability to block solid particulates, to photocatalytically oxidize a major fraction of volatile organic compounds (VOCs) and deactivate all of the bacteria blocked on the filter, in contrast to traditional commercial air filters on which the bacteria remain viable. Conclusions Activated charcoal filters treated with TiO2 and illuminated by UV LEDs were found to be extremely effective in killing bacteria and effective in decreasing VOC and total suspended particulates (TSP).
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控制室内空气质量的光催化过滤器的研制
本工作的目的是开发和表征一种用于处理室内空气的光催化过滤器,其特点是低压降。方法采用活性炭(Carbotex 150-6)和二氧化钛(sol 121-AB;NextMaterials Ltd.),用UV led照射以诱导光催化活性。结果测试表明,与传统的商业空气过滤器相比,这种过滤器在适合的空气循环设备中使用,噪音水平非常低,能够阻挡固体颗粒,光催化氧化大部分挥发性有机化合物(VOCs),并使过滤器上的所有细菌失活,而传统的商业空气过滤器上的细菌仍然存活。结论经TiO2处理并经UV led照射的活性炭过滤器具有良好的杀菌效果,并能有效降低挥发性有机化合物(VOC)和总悬浮颗粒物(TSP)。
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来源期刊
Journal of Applied Biomaterials & Biomechanics
Journal of Applied Biomaterials & Biomechanics 生物-材料科学:生物材料
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