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Petrochemicals from ethanol over a W-Si-based nanocomposite bidisperse solid acid catalyst

机译:W-Si基纳米复合双分散固体酸催化剂上的乙醇石油化工产品

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Very high ethylene selectivity values approaching 100% and very high ethanol conversion values approaching 85% were obtained in dehydration of ethanol over a new W-silicate-based nanocomposite catalyst having both meso and macropores and containing a W/Si atomic ratio of 0.85. Silicotungsticacid was successfully incorporated into the catalyst structure following a one-pot hydrothermal synthesis procedure. This catalyst is highly stable and does not loose activity in polar solvents and it has a sufficiently high surface area for catalytic applications. Calcination temperature of the catalyst was found to have a very significant effect on the catalyst structure and also on its catalytic performance in ethanol dehydration. Maximum selectivity of the second major reaction product diethylether was obtained as 0.7 at 200 °C, with the catalyst which was calcined at 400 °C. Very high ethylene and diethylether yield values obtained in this study at different reaction conditions are highly promising for the production of petrochemicals from ethanol.
机译:在具有介孔和大孔且W / Si原子比为0.85的新型W-硅酸盐基纳米复合催化剂上进行乙醇脱水时,获得了接近100%的非常高的乙烯选择性值和接近85%的非常高的乙醇转化率。按照一锅法水热合成程序,将硅钨酸成功地掺入催化剂结构中。该催化剂是高度稳定的,并且在极性溶剂中不会失去活性,并且具有足够高的表面积用于催化应用。发现催化剂的煅烧温度对催化剂结构及其在乙醇脱水中的催化性能具有非常显着的影响。在400℃下煅烧的催化剂在200℃下获得第二主要反应产物乙醚的最大选择性为0.7。在这项研究中,在不同的反应条件下获得的非常高的乙烯和二乙醚产率值非常有希望从乙醇生产石油化工产品。

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