New Perspectives on the Unique Micro and Nano-Structural Features of the Cu/ZnO Methanol Synthesis Catalyst

G. Mr.
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Abstract

The vapor phase methanol process, introduced by ICI technology in 1966, and the liquid phase methanol synthesis process (LPMeOHtm) introduced first by ChemSystems, Inc. (now Nexant) in 1975, are seen as the 2 big research/technology advances in the conventional methanol synthesis technology. The success of these 2 processes, both from a scientific and commercial standpoint, primarily is driven by the very superior, almost anomalous, performance of the proprietary Cu/ZnO/Al2O3ICI technical catalyst, and it’s very unique microstructural features, often termed as a “microcrystalline sponge”. The LPMeOHtm process overcomes some of the glaring drawbacks associated with the vapor phase process, viz., highly exothermal nature of methanol synthesis reactions, presence of local reactor hot spots which presents possibility of thermal runaways, and low per-pass CO/H2 conversions.
Cu/ZnO甲醇合成催化剂独特微纳米结构特征的新研究
1966年由ICI技术推出的气相甲醇工艺和1975年由ChemSystems公司(现为Nexant)首次推出的液相甲醇合成工艺(LPMeOHtm)被视为传统甲醇合成技术的两大研究/技术进步。从科学和商业的角度来看,这两个过程的成功主要是由于专有的Cu/ZnO/Al2O3ICI技术催化剂的非常优越,几乎异常的性能,以及它非常独特的微观结构特征,通常被称为“微晶海绵”。LPMeOHtm工艺克服了与气相工艺相关的一些明显缺点,即甲醇合成反应的高度放热性质,存在可能出现热失控的局部反应器热点,以及每道CO/H2转化率低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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