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Vapor-phase photocataly tic oxidation of volatile organic compounds over novel uranyl-anchored MCM-41 heterogeneous catalyst

机译:新型铀酰锚式MCM-41非均相催化剂的挥发性有机化合物的气相光催化TiC氧化

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In the present investigation, we exploited the visible region absorbance (λ > 380 nm) of uranyl ions anchored onto mesoporous MCM-41 matrix for the vapor-phase photooxidation of volatile organic compounds (VOCs) such as benzene, toluene, cyclohexane, cyclohexene, and o-xylene. In all cases, the only complete oxidation products, viz., carbon dioxide and water, were obtained. Further, the extent of conversion to carbon dioxide depended upon the nature of the organic compound. Under sunlight, the uranyl-anchored catalyst was found to be highly active for the degradation of a stable molecule like benzene, though longer irradiation times were needed for its complete conversion. This study signifies the potential applicability of the uranyl-anchored photocatalyst for applications related to air cleaning under ambient conditions of solar radiation and air.
机译:在本研究中,我们利用锚定的铀酰离子的可见区域吸光度(λ> 380nm),用于挥发性有机化合物(VOC)的气相光氧化,如苯,甲苯,环己烷,环己烯,和o-二甲苯。在所有情况下,获得了唯一完全的氧化产品,即,二氧化碳和水。此外,转化为二氧化碳的程度依赖于有机化合物的性质。在阳光下,发现铀酰锚定催化剂非常有效地用于苯如苯如苯的降解,尽管其完全转化需要更长的照射时间。本研究意味着铀酰锚定光催化剂的潜在适用性,用于在太阳辐射和空气环境条件下与空气清洁有关的应用。

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