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CO2 hydrogenation to methanol over CuZnGa catalysts prepared using microwave-assisted methods

机译:微波辅助法制备的CuZnGa催化剂上CO2加氢制甲醇

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A series of CuZnGa catalysts was synthesized by microwave-assisted method and their performance for CO2 hydrogenation to methanol was measured under a range of reaction conditions (temperatures between 250 degrees C and 270 degrees C and pressure up to 4.5 MPa). The influence of the preparation method on the physicochemical properties of catalysts was studied by N-2 adsorption, XRD, TPR, XPS, N2O titration and CO2 adsorption followed by temperature programmed desorption and calorimetry. The results indicate that the one-pot microwave-assisted precipitation method used in the preparation of the (CuZnGa)mw catalyst, promoted copper and Ga2O3 dispersion. Moreover, the mean basic site strength of (CuZnGa)mw was higher than that of the other catalysts prepared. All of these factors were found to affect its catalytic performance greatly in terms of CO2 conversion and methanol selectivity. (CuZnGa)mw was highly stable and produced 4.87 mol methanol kg(cat)(-1) h(-1) at 250 degrees C with a selectivity of approximately 50% (P=4.5 MPa, GHSV =3000 h(-1), CO2/H-2=1/3). The strong interaction between copper and support prevented metallic copper sintering, affording high stability of catalyst. The promoting effect was related to an intimate association between highly dispersed copper species and strong basic ZnO species in the presence of small particles of Ga2O3. (C) 2014 Elsevier B.V. All rights reserved.
机译:通过微波辅助方法合成了一系列CuZnGa催化剂,并在一系列反应条件下(温度介于250℃至270℃,压力高达4.5 MPa)测量了它们对CO2加氢成甲醇的性能。通过N-2吸附,XRD,TPR,XPS,N2O滴定和CO2吸附,然后程序升温解吸和量热,研究了制备方法对催化剂理化性质的影响。结果表明,一锅法微波辅助沉淀法制备了(CuZnGa)mw催化剂,促进了铜和Ga2O3的分散。而且,(CuZnGa)mw的平均基本位点强度高于所制备的其他催化剂的平均位点强度。发现所有这些因素都在CO2转化率和甲醇选择性方面极大地影响了其催化性能。 (CuZnGa)mw高度稳定,在250摄氏度下产生4.87 mol甲醇kg(cat)(-1)h(-1),选择性约为50%(P = 4.5 MPa,GHSV = 3000 h(-1) ,CO2 / H-2 = 1/3)。铜与载体之间的强相互作用阻止了金属铜的烧结,从而提供了催化剂的高稳定性。促进作用与在存在Ga2O3小颗粒的情况下高度分散的铜物质与强碱性ZnO物质之间的紧密结合有关。 (C)2014 Elsevier B.V.保留所有权利。

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