On the characterization and performance of highly dispersed TiO2 nanoparticles onto BEA zeolite in the continuous gas-phase photooxidation of ethylene†

Ricardo Ferreira, Sergio Morales-Torres, Luisa M. Pastrana-Martinez, Francisco J. Maldonado-Hódar, João Paulo Lourenço, João Miguel Silva, Isabel M. João, Maria Filipa Ribeiro and Auguste Fernandes
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Abstract

Two series of TiO2-based zeolite composites (BEA structures) were prepared by employing a sol–gel method using two different synthesis approaches, i.e., acidic and basic media. Different photocatalytic composites obtained with increasing amounts of TiO2 (10–50 wt%) were thoroughly characterized and subsequently tested in the photooxidation of ethylene in a continuous gas-phase system. Results showed that sol–gel experimental conditions had a significant effect on the final properties of the samples, as photocatalytic composites obtained under basic conditions showed better TiO2 dispersion and interaction with the BEA support than their counterparts prepared in an acidic medium. The same photocatalysts showed high performance in ethylene photooxidation, demonstrating complete mineralization and results comparable to or even better than those of the bulk TiO2 material.

Abstract Image

乙烯连续气相光氧化过程中BEA沸石上高分散TiO2纳米颗粒的表征及性能研究
采用溶胶-凝胶法制备了两种不同的tio2基沸石复合材料(BEA结构),采用酸性和碱性两种不同的合成方法。通过增加TiO2 (10-50 wt%)的量,得到了不同的光催化复合材料,并对其进行了全面表征,随后在连续气相系统中对乙烯进行了光氧化测试。结果表明,溶胶-凝胶实验条件对样品的最终性能有显著影响,因为在碱性条件下获得的光催化复合材料比在酸性介质中制备的光催化复合材料具有更好的TiO2分散和与BEA载体的相互作用。同样的光催化剂在乙烯光氧化中表现出优异的性能,表现出完全矿化,结果与大块TiO2材料相当甚至更好。
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