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Titanium dioxide photocatalyst deactivation by gas-phase oxidation of polymethylsiloxane (PDMS) and silicone sealant off-gas in a recirculating batch reactor.

机译:在循环间歇式反应器中,通过聚甲基硅氧烷(PDMS)和有机硅密封胶尾气的气相氧化使二氧化钛光催化剂失活。

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Indoor air quality is one of the most promising applications of photocatalytic oxidation. Rapid deactivation of the photocatalyst by ubiquitous indoor air pollutants would diminish the utility of photocatalytic technology. We have studied deactivation of TiO2 photocatalyst by oxidation of PolyDiMethylSiloxane (PDMS) and silicone sealant off-gas in a recirculating batch reactor.; The oxidation of the Si-containing vapor was monitored with an FTIR equipped with a gas cell. Subsequent to each incremental exposure, a hexane oxidation reaction was performed to track the TiO2 catalyst activity. In this manner, loss of catalyst activity was quantitatively related to oxidation of Si-containing organic molecules. The exposures were repeated until a substantial deactivation was achieved.; Surface science techniques were used to view the topography of the catalyst and to identify the elements causing the deactivation.
机译:室内空气质量是光催化氧化最有前途的应用之一。普遍存在的室内空气污染物会使光催化剂快速失活,将削弱光催化技术的实用性。我们已经研究了在间歇式循环反应器中通过聚二甲基硅氧烷(PDMS)和有机硅密封胶废气的氧化来钝化TiO2光催化剂。用配备有气室的FTIR监测含Si蒸气的氧化。在每次增量暴露之后,进行己烷氧化反应以追踪TiO 2催化剂的活性。以这种方式,催化剂活性的损失与含硅有机分子的氧化定量相关。重复暴露,直到基本失活为止。使用表面科学技术来查看催化剂的形貌并确定导致失活的元素。

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