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Catalytic steam reforming of ethanol to produce hydrogen and acetone

机译:Catalytic steam reforming of ethanol to produce hydrogen and acetone

摘要

Steam reforming of ethanol over CuO/CeO2 was studied. Acetaldehyde and hydrogen were mainly produced at 260degreesC. At 380degreesC, acetone was the main product, and 2 mol of hydrogen was produced from 1 mol of ethanol. The formation of hydrogen accompanied by the production of acetone was considered to proceed through the following, consecutive reactions: dehydrogenation of ethanol to acetaldehyde. aldol condensation of the acetaldehyde, and the reaction of the aldol with the lattice oxygen [O(s)] on the catalyst to form a surface intermediate, followed by its dehydrogenation and decarboxylation. The overall reaction was expressed by2C(2)H(5)OH + H2O --> CH3COCH3 + CO2 + 4H(2). Ceria played an important role as an oxygen supplier. The addition of MgO to CuO/CeO2 resulted in the production of hydrogen at lower temperatures by accelerating aldol condensation. (C) 2004 Elsevier B.V. All rights reserved.
机译:研究了在CuO / CeO2上对乙醇进行蒸汽重整。乙醛和氢气主要在260℃下产生。在380℃下,丙酮为主要产物,由1摩尔的乙醇产生2摩尔的氢。氢的生成伴随着丙酮的产生被认为是通过以下连续的反应进行的:乙醇脱氢为乙醛。乙醛的醛醇缩合,醛醇与催化剂上的晶格氧[O(s)]反应形成表面中间体,然后进行脱氢和脱羧。整个反应由2C(2)H(5)OH + H2O-> CH3COCH3 + CO2 + 4H(2)表示。 Ceria作为氧气供应商发挥了重要作用。在CuO / CeO2中添加MgO可通过促进羟醛缩合在较低的温度下产生氢气。 (C)2004 Elsevier B.V.保留所有权利。

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