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Different roles of CNTs in hierarchical HZSM-5 synthesis with hydrothermal and steam-assisted crystallization

机译:碳纳米管在水热和蒸汽辅助结晶的分层HZSM-5合成中的不同作用

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Hierarchical HZSM-5 zeolites with uniform mesopore distribution were synthesized by hydrothermal synthesis (HTS) and steam-assisted crystallization (SAC) methods using multi-walled carbon nanotubes (CNTs) as hard templates. Compared with the HTS method, the SAC method favored the utilization of CNTs because of lower phase separation degree. It was also found that the crystallization process of HZSM-5 was slowed down after the addition of CNTs in the HTS method, while was accelerated in the SAC method. Furthermore, after the addition of CNTs, the hierarchical samples prepared by the HTS method showed lower Si/Al ratios and higher acid amounts while slight changes in the acid properties were observed for those prepared by SAC method. The synthesized hierarchical HZSM-5 zeolites using the SAC method exhibit similar catalytic activities but better stabilities in the catalytic cracking of n-decane than the HTS samples as a result of the presence of more mesopores.
机译:以多壁碳纳米管(CNTs)为硬模板,通过水热合成(HTS)和蒸汽辅助结晶(SAC)方法合成了具有均匀中孔分布的分层HZSM-5分子筛。与HTS方法相比,SAC方法具有较低的相分离度,有利于CNT的利用。还发现,在HTS方法中添加CNT之后,HZSM-5的结晶过程减慢了,而在SAC方法中加速了。此外,在添加CNT之后,通过HTS方法制备的分级样品显示出较低的Si / Al比和较高的酸量,而对于通过SAC方法制备的那些,观察到酸性质的轻微变化。使用SAC方法合成的分层HZSM-5沸石表现出相似的催化活性,但是由于存在更多的中孔,因此与HTS样品相比,正癸烷的催化裂化稳定性更高。

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