选择性
双功能
催化作用
烯烃纤维
甲醇
二甲醚
化学
碳纤维
双功能催化剂
合成气
有机化学
材料科学
复合数
复合材料
作者
Kang Cheng,Bang Gu,Xiaoliang Liu,Jincan Kang,Qinghong Zhang,Ye Wang
标识
DOI:10.1002/ange.201601208
摘要
Abstract The direct synthesis of lower (C 2 to C 4 ) olefins, key building‐block chemicals, from syngas (H 2 /CO), which can be derived from various nonpetroleum carbon resources, is highly attractive, but the selectivity for lower olefins is low because of the limitation of the Anderson–Schulz–Flory distribution. We report that the coupling of methanol‐synthesis and methanol‐to‐olefins reactions with a bifunctional catalyst can realize the direct conversion of syngas to lower olefins with exceptionally high selectivity. We demonstrate that the choice of two active components and the integration manner of the components are crucial to lower olefin selectivity. The combination of a Zr–Zn binary oxide, which alone shows higher selectivity for methanol and dimethyl ether even at 673 K, and SAPO‐34 with decreased acidity offers around 70 % selectivity for C 2 –C 4 olefins at about 10 % CO conversion. The micro‐ to nanoscale proximity of the components favors the lower olefin selectivity.
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