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The CO2 Hydrogenation toward the Mixture of Methanol and Dimethyl Ether: Investigation of Hybrid Catalysts

机译:CO2加氢制甲醇和二甲醚的混合物:杂化催化剂的研究

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Catalytic hydrogenation of carbon dioxide for the simultaneous synthesis of methanol and dimethyl ether (together called oxygenates) over a combination of methanol synthesis and methanol dehydration catalysts has been studied. Various methanol synthesis and methanol dehydration catalysts were examined for this reaction. The addition of promotors like Ga2O3 and Cr2O3 to Cu/ZnO catalyst gave much more enhanced yield on the formation of oxygenates. From the results, the promotional effect of Cr2O3 has been explained in terms of increase in the intrinsic activity of Cu while that of Ga2O3 being increase in the dispersion of Cu. Among the methanol dehydration catalysts examined, the solid acids bearing high population of intermediate-strength acid sites were found to be very effective for the production of oxygenates. HY zeolite which contains strong acid sites produce small amount of hydrocarbons as by-products. However, CuNaY zeolite in which the presence of strong acid sites are minimum gives very high oxygenates yield without the formation of hydrocarbons.
机译:已经研究了在甲醇合成和甲醇脱水催化剂的组合下二氧化碳的催化加氢以同时合成甲醇和二甲醚(统称为含氧化合物)。针对该反应检查了各种甲醇合成和甲醇脱水催化剂。在Cu / ZnO催化剂中添加促进剂(如Ga2O3和Cr2O3)在形成含氧化合物上的产率大大提高。从结果可知,Cr 2 O 3的促进作用是通过增加Cu的固有活性来解释的,而Ga 2 O 3的促进作用是通过Cu的分散性来增加的。在所研究的甲醇脱水催化剂中,发现带有大量中等强度酸位点的固体酸对于生产含氧化合物非常有效。含有强酸位的HY沸石会产生少量的副产物碳氢化合物。但是,其中强酸位点最少的CuNaY沸石在不形成烃的情况下提供了很高的含氧化合物收率。

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