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Relative Roles of Methanol Synthesis and Solid Acid Catalysts in the Direct DME Synthesis from Syngas

机译:甲醇合成和固体酸催化剂在合成气直接二甲醚合成中的相对作用

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摘要

The Cu/ZnO/Al2O3 catalysts with 13.0 and 30.6 m(2) Cu/g were designated as HM (highly active catalysts for methanol synthesis) and LM (low active catalysts for methanol synthesis), respectively. gamma-Al2O3 and eta-Al2O3 were designated as LD (low active catalysts for methanol dehydration) and HD (highly active catalysts for methanol dehydration), respectively. Four catalytic systems (LMLD, LMHD, HMLD, and HMHD) were prepared by admixing methanol synthesis catalysts and methanol dehydration catalysts. The syngas to dimethyl ether (DME) (STD) reaction was conducted at a GHSV of 6000 mL/g(cat)/h, 42 atm, and 250 degrees C. The activity of LMLD was almost same as that of LMDH, indicating that the activity of solid acid catalysts did not influence the STD reaction on the admixed catalysts using LM. On the other hand, the activity of HMHD was much higher than that of HMLD, indicating that the solid acid catalysts controlled the STD reaction on the admixed catalysts using HM.
机译:具有13.0和30.6 m(2)Cu / g的Cu / ZnO / Al2O3催化剂分别指定为HM(用于甲醇合成的高活性催化剂)和LM(用于甲醇合成的低活性催化剂)。将γ-Al2O3和eta-Al2O3分别指定为LD(用于甲醇脱水的低活性催化剂)和HD(用于甲醇脱水的高活性催化剂)。通过混合甲醇合成催化剂和甲醇脱水催化剂,制备了四个催化体系(LMLD,LMHD,HMLD和HMHD)。合成气至二甲醚(DME)(STD)反应在GHSV为6000 mL / g(cat)/ h,42 atm和250摄氏度的条件下进行.LMLD的活性与LMDH几乎相同固体酸催化剂的活性不影响使用LM的混合催化剂的STD反应。另一方面,HMHD的活性远高于HMLD,表明固体酸催化剂控制了使用HM的混合催化剂上的STD反应。

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