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Synergism of Titanium in MFI Zeolite to Acidity with Its Appliance to N-Hexane Catalytic Cracking Reaction

机译:钛沸石中钛的协同作用与酸度与其电器与N-己烷催化裂化反应

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Catalytic cracking of naphtha is now a process of huge development potential to produce light olefins, which are important basic raw materials used in various industries, but current industrial catalysts like ZSM-5 zeolites suffer from low selectivity and high energy consumption. Here, Ti/Al-containing nanosize MFI-structure zeolites in-situly synthesized through one-pot method were applied to the catalytic cracking using n-hexane as the model reactant. The maximum mass yield of combined light olefins reaches 49.2% with 99% conversion at 600 ° C and 1 atm. Multiple characterizations are used to identify the Ti-related active species and their effect on the performance. It was found that a higher proportion of LAS caused by Ti was beneficial to the activation of reactant, and the slightly increased amount of BAS leaded to more alkanes converting into light olefins. This understanding may open new opportunities for design and modification of catalytic cracking catalysts.
机译:石脑油的催化裂化现在是生产轻质烯烃的巨大发展潜力的过程,这是各种行业中使用的重要基本原料,但目前的产业催化剂如ZSM-5沸石的选择性低,能量消耗低。 这里,使用N-己烷作为模型反应物,将含有1罐方法合成的Ti / Al纳米氧化MFI结构沸石。 综合光烯烃的最大质量产量达到49.2%,600&amp的转化率为99.2%;#176; c和1 atm。 使用多种特征来识别与TI相关的活性物种及其对性能的影响。 发现由Ti引起的LAS比例较高,有利于反应物的激活,并且施加略微增加的碱量导致更多的烷烃转化为光烯烃。 这种理解可以开辟催化裂化催化剂的设计和改性的新机会。

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