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首页> 外文期刊>ChemCatChem >Methanol-to-Olefin Conversion Catalyzed by Low-Silica AlPO-34 with Traces of Bronsted Acid Sites: Combined Catalytic and Spectroscopic Investigations
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Methanol-to-Olefin Conversion Catalyzed by Low-Silica AlPO-34 with Traces of Bronsted Acid Sites: Combined Catalytic and Spectroscopic Investigations

机译:低二氧化硅ALPO-34催化的甲醇 - 烯烃转化术,痕量的富抗酸部位:组合催化和光谱研究

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摘要

The reasons for the high activity and long catalyst lifetime of AlPO-34 with a very low molar silicon content [nSi/(nAl+nP+nSi)=0.01] in the methanol-to-olefin (MTO) conversion were studied by using in situ FTIR spectroscopy, in situ UV/Vis spectroscopy, and solid-state NMR spectroscopy. The MTO activity of the low-silica AlPO-34 is explained by traces of accessible Bronsted acid sites existing in an isolated manner and characterized by a turnover frequency of 7.0 s-1 after a time-on-stream (TOS) of 1 h at 673 K. A contribution of Lewis acid sites to the MTO reaction over low-silica AlPO-34 could be excluded. The high selectivity of low-silica AlPO-34 to light olefins owes to a hydrocarbon pool consisting of benzene-type carbenium ions, as well as dienes. The very few Bronsted acid sites on low-silica AlPO-34 produce a much lower total coke content compared with SAPO-34, leading to an extended catalyst lifetime of the former material.
机译:通过使用在甲醇 - 烯烃(MTO)转化中具有非常低摩尔硅含量[NSI /(NAL + NP + NSI)= 0.01]的ALPO-34的高活性和长催化剂寿命的原因 原位FTIR光谱,原位UV / VIS光谱和固态NMR光谱。 低二氧化硅ALPO-34的MTO活性通过以孤立的方式现有的可偏转布朗酸位点进行解释,并且在1小时的次流(TOS)之后的7.0 s-1的周转频率的表征 673 K.可以排除在低二氧化硅ALPO-34上对MTO反应的路易斯酸部位对MTO反应的贡献。 低二氧化硅ALPO-34至Light Olefins的高选择性归于由苯型碳离子和二烯组成的烃基池。 与SAPO-34相比,低二氧化硅ALPO-34上的极少数刚性酸位点产生更低的总焦炭含量,导致前一种材料的延长催化剂寿命。

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