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An efficient Co-ZSM-5 catalyst for the abatement of volatile organics in air: effect of the synthesis protocol

机译:一种高效的Co-ZSM-5催化剂,用于减轻空气中的挥发性有机物:合成方案的效果

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摘要

Co supported on ZSM-5 (Co-ZSM-5) catalysts was synthesized by wet ion exchange (WIE), impregnation (IM), and in situ hydrothermal (IHT) methods. Their adsorptive catalytic activities for the removal of VOC's [Benzene, Toluene, Ethylbenzene and Toluene (BTEX)] in air were tested. The physicochemical properties were investigated by XRD, FTIR, SEM, XPS, and low-temperature N-2 adsorption. The results indicate that the catalytic performance of Co-ZSM-5 for VOC's abatement is effective and the synthesis methods reasonably influence the catalytic activity of Co-ZSM-5. Among three samples prepared by three different methods, the catalyst synthesized by the hydrothermal method possesses the highest adsorptive catalytic activity for BTEX oxidation. The optimized contact time was 60 min. The catalytic activities of the prepared catalysts are varied in the order of IHT IM WIE based on the combined removal capacity 59.24 34.46 23.82 (mg/g). For the Co-ZSM-5 WIE catalysts, the procedure has an evident effect on their catalytic performance. For example, the WIE catalysts prepared with cobalt chloride (II) by ion exchange have a higher acidity and surface area than the catalyst prepared with cobalt chloride (II) by impregnation method but less cobalt content. The excellent performance of IHT catalysts may be endorsed to the better availability of the oxidized form (Co3+), due to high content, higher surface area and acidity. Moreover, the Co-ZSM-5 catalyst synthesized by the IHT method shows high stability after being used.
机译:通过湿离子交换(WIE),浸渍(IM)和原位水热(IHT)方法合成ZSM-5(共ZSM-5)催化剂的CO。测试其在空气中除去VOC的[苯,甲苯,乙苯和甲苯(BTEX)的吸附催化活性。通过XRD,FTIR,SEM,XPS和低温N-2吸附研究了物理化学性质。结果表明,用于VOC的催化性能的CO-ZSM-5是有效的,合成方法合理地影响CO-ZSM-5的催化活性。在三种不同方法制备的三个样品中,通过水热法合成的催化剂具有最高的BTEX氧化吸附催化活性。优化的接触时间为60分钟。制备的催化剂的催化活性为IHT&gt的顺序变化; IM&基于组合的去除能力59.24& 34.46& 23.82(mg / g)。对于Co-ZSM-5 WIE催化剂,该方法对其催化性能具有明显的影响。例如,通过离子交换用氯化钴(II)制备的WIE催化剂具有比用浸渍方法用氯化钴(II)制备的催化剂更高的酸度和表面积,但含量较低。 IHT催化剂的优异性能可以通过高含量,更高的表面积和酸度更好地获得氧化形式(CO3 +)的更好的可用性。此外,通过IHT方法合成的Co-ZSM-5催化剂在使用后表示高稳定性。

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