乙醇在铜钨氧化物二元催化剂上的氧化反应

K. Aghayeva
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引用次数: 0

摘要

研究了乙醇在铜钨氧化物二元催化剂上的氧化反应。结果表明,在高达300°C的温度下,乙醛实际上是乙醇氧化反应在铜钨氧化物催化剂上的唯一产物。在较高的温度下,除乙醛外,还会形成丙酮、二氧化碳和乙烯。结果表明,Cu-W-O催化剂上丁烯-1的异构化始于200℃,随着温度的升高,丁烯-2的产率增加,在350℃时达到最大值。结果表明,丁烯-2产率与铜钨原子比的关系呈曲线形式,在样品Ti-W=3-7时达到最大值。在此样品上,丁烯-2的最高收率可达57%。研究发现,随着异构化程度的增加,乙醛和乙烯的产率增加,而深度氧化产物的产率降低,这是由于在碱性位点形成了二氧化碳。关键词:乙醇氧化,异构化,二元催化剂,氧化钨,氧化铜,乙醛。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
OXIDATION OF ETHANOL OVER BINARY COPPER-TUNGSTEN OXIDE CATALYSTS
The oxidation reaction of ethanol on binary copper-tungsten oxide catalysts has been studied. It was shown that at temperatures up to 300°C, acetaldehyde is practically the only product of the ethanol oxidation reaction on copper-tungsten oxide catalysts. At higher temperatures, in addition to acetaldehyde, acetone, carbon dioxide and ethylene are also formed. It is found that the isomerization of butene-1 on the Cu-W-O catalysts begins from a temperature of 200°C and with an increase in temperature, the yield of butenes-2 increases and at 350°C reaches its maximum. It was shown that the dependence of the yields of butenes-2 on the atomic ratio of copper to tungsten has the form of a curve with a maximum on the sample Ti-W=3-7. On this sample, the maximum yield of butenes-2 reaches 57%. It is found that with an increase in the degree of isomerization, the yields of acetaldehyde and ethylene increase, and the yield of the product of deep oxidation decreases, which is due to formation of carbon dioxide at sites of basic nature. Keywords: Ethanol oxidation, isomerization, binary catalysts, tungsten oxide, copper oxide, acetaldehyde.
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