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Effect of zeolite framework type and Si/Al ratio on dimethoxymethane carbonylation

机译:沸石骨架类型和Si / Al比对二甲氧基甲烷羰基化的影响

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This work reports on the effects of zeolite framework type and Si/Al ratio on the carbonylation of dimethoxymethane (DMM) to produce methyl methoxyacetate (MMAc). Faujasite (FAU), ZSM-5 (MFI), Mordenite (MOR) and Beta (BEA) showed very similar activity for DMM carbonylation. However, FAU had a very high selectivity to MMAc compared to MFI, MOR and BEA because of very low rates of dimethyl ether (DME) and methyl formate (MF) formation, by-products of the disproportionation of DMM. The high rate of DMM disproportionation observed for MFI, MOR and BEA is ascribed to the small pores of these zeolites, which facilitate a critical initial step in the formation of DME and MF. FER showed very low activity for both carbonylation and disproportionation. Increasing the Si/Al ratio for both FAU and MFI led to an increase in the turnover frequency for DMM carbonylation. It is proposed that the low rate of MMAc formation found at low Si/Al ratios is due to repulsive interactions occurring between adsorbed species located within the same supercage (FAU) or channel intersection (MFI).
机译:这项工作报告了沸石骨架类型和Si / Al比对二甲氧基甲烷(DMM)羰基化生产甲氧基乙酸甲酯(MMAc)的影响。八面沸石(FAU),ZSM-5(MFI),丝光沸石(MOR)和Beta(BEA)显示出非常相似的DMM羰基化活性。但是,与MFI,MOR和BEA相比,FAU对MMAc的选择性很高,这是因为二甲醚(DME)和甲酸甲酯(MF)形成速率非常低,而二甲醚是DMM歧化的副产物。对于MFI,MOR和BEA观察到的高DMM歧化速率归因于这些沸石的小孔,这促进了DME和MF形成过程中关键的初始步骤。 FER对羰基化和歧化均显示出非常低的活性。 FAU和MFI的Si / Al比值的增加导致DMM羰基化反应的周转频率增加。有人提出,在低Si / Al比下发现的MMAc形成率低是由于位于相同超笼(FAU)或通道交叉点(MFI)内的吸附物种之间发生排斥相互作用。

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