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ENHANCED DEGRADATION EFFICIENCY OF TOLUENE USING TITANIA/SILICA PHOTOCATALYSIS AS A REGENERATION PROCESS

机译:二氧化钛/二氧化硅光催化再生过程提高了甲苯的降解效率

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Three kinds of titania/silica pellets were prepared using the sol-gel method with surface areas of 50.4 m~2 g~(-1), 421.1 m~2.g~(-1) and 89.1 m~2.g~(-1). An annular reactor was designed and built to determine the degradation efficiency of toluene and to investigate the relationship between the adsorption and desorption-photocatalytic processes. Surface area is an important factor influencing the adsorption-photocatalytic efficiency. Higher surface areas of pellets contribute to high rates of conversion of toluene. Un-reacted toluene and reaction intermediates accumulating on their surface deactivated the titania/silica catalyst. To overcome this problem, the adsorption and regeneration process were alternated in a dual reactor system. Connecting or disconnecting the toluene feed gas enabled one reactor to adsorb toluene, while the second reactor was regenerated by photocatalysis. Using UV irradiation and titania/silica pellets with high BET surface area (421.1 m~2.g~(-1)), the alternating adsorption/regeneration processes kept the degradation efficiency of toluene at 90% after 8 hours operation. By improving the adsorption-photocatalysis efficiency, and minimising the generation and accumulation of intermediate on the surface of pellets, the method extended catalyst life and maintained a high degradation efficiency of toluene.
机译:使用溶胶-凝胶法制备了三种二氧化钛/二氧化硅颗粒,其表面积分别为50.4 m〜2 g〜(-1),421.1 m〜2.g〜(-1)和89.1 m〜2.g〜( -1)。设计并建造了一个环形反应器,以确定甲苯的降解效率,并研究吸附和解吸-光催化过程之间的关系。表面积是影响吸附-光催化效率的重要因素。粒料的较高表面积有助于甲苯的高转化率。未反应的甲苯和积聚在其表面上的反应中间体使二氧化钛/二氧化硅催化剂失活。为了克服这个问题,在双反应器系统中交替进行吸附和再生过程。连接或断开甲苯进料气可使一个反应器吸附甲苯,而第二个反应器通过光催化再生。使用UV辐射和具有高BET表面积(421.1 m〜2.g〜(-1))的二氧化钛/二氧化硅颗粒,交替吸附/再生过程在操作8小时后将甲苯的降解效率保持在90%。通过提高吸附-光催化效率,并使颗粒表面上中间体的产生和积累最小化,该方法延长了催化剂寿命并保持了较高的甲苯降解效率。

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