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Stabilizing Low-Silica Zeolites through Aluminum Sulfate Assisted Cannibalistic Dealumination

机译:通过硫酸铝稳定低二氧化硅沸石辅助同类泛滥

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摘要

A versatile dealumination strategy was proposed to stabilize low-silica zeolites through cannibalistic interaction between the host framework Al (FAL) and the guest aluminum salt. It is possible to capture selectively the FAL and Na ions in NaY zeolite by employing a special external Al source such as aluminum sulfate as the dealuminating agent. This unique postmodification reduces the FAL amount efficiently and converts the chemically reacted Al species into a g-alumina support for the catalytically active component of zeolite, which avoids wasting Al sources. Possessing greatly enhanced hydrothermal stability, newly generated intracrystal mesopores, as well as an optimized distribution of FAL, the resultant dealuminated Y zeolite catalysts can be used practically in heavy oil cracking.
机译:提出了一种通过主机框架Al(FAL)和客人铝盐之间的同型相互作用稳定低硅沸石的多功能泛曲策略。 通过使用硫酸铝的特殊外部Al源作为浸入式试剂,可以选择性地捕获NAY沸石中的FAL和Na离子。 这种独特的后修整有效地降低了少量的粉霉素,并将化学反应的Al种转化为沸石的催化活性成分的G-氧化铝载体,这避免了浪费Al来源。 具有极大地增强的水热稳定性,新产生的内丙烯酮孔,以及FAL的优化分布,所得到的浸烧y沸石催化剂可以实际上用于重油裂化。

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