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Synthesis of Al-MTW with low Si/Al ratios by combining organic and inorganic structure directing agents

机译:结合有机和无机结构导向剂合成低Si / Al比的Al-MTW

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A rationalized combination of alkali cations and bulky dicationic organic structure directing agents (OSDAs) has allowed the synthesis of the Al-rich MTW zeolites with Si/Al ratios of similar to 12 and large pore accessibility. Al-27 MAS NMR spectroscopy indicates that most of the aluminum atoms are in tetrahedral coordination in framework positions, and in situ infrared pyridine adsorption/desorption spectroscopy reveals strong Bronsted acidity after cationic exchange for the Al-rich MTW. In addition, another MTW material with a Si/Al ratio of 30 has been synthesized under alkali-free conditions using a bulky dicationic molecule such as OSDA, the lowest Si/Al ratio being achieved for a MTW zeolite synthesized in the absence of alkali-cations in the synthesis media. The catalytic activity of these MTW materials has been tested for the n-decane cracking reaction, achieving higher catalytic activities and olefin yields than other related large pore zeolites.
机译:碱金属阳离子和庞大的阳离子有机结构导向剂(OSDAs)的合理组合,已使合成的Si / Al比值接近12且具有大孔可及性的富铝MTW沸石得以合成。 Al-27 MAS NMR光谱表明,大多数铝原子在骨架位置处于四面体配位状态,而原位红外吡啶吸附/解吸光谱表明,富铝的MTW经阳离子交换后具有强的布朗斯台德酸度。此外,另一种Si / Al比为30的MTW材料是在无碱条件下使用大体积的阳离子分子(如OSDA)合成的,对于在没有碱金属的情况下合成的MTW沸石,Si / Al比例最低合成介质中的阳离子。这些MTW材料的催化活性已针对正癸烷裂化反应进行了测试,与其他相关的大孔沸石相比,具有更高的催化活性和烯烃收率。

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