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首页> 外文期刊>Reaction Kinetics, Mechanisms and Catalysis >The role of the acidity of alumina prepared by aluminum-carbon black composite for CO hydrogenation to dimethyl ether on hybrid Cu–ZnO–Al2O3/alumina
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The role of the acidity of alumina prepared by aluminum-carbon black composite for CO hydrogenation to dimethyl ether on hybrid Cu–ZnO–Al2O3/alumina

机译:铝-炭黑复合材料制备的氧化铝在混合Cu-ZnO-Al2O3 /氧化铝上CO加氢成二甲醚的酸度作用

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摘要

The effects of surface area and the acidity of mesoporous γ-Al2O3, which is prepared by calcining aluminum-carbon black composite (Al/CB) of the precipitated aluminum nitrate on carbon black at different weight ratios, were investigated to verify the roles of carbon black in the surface properties and stability of Cu–ZnO–Al2O3 for the direct synthesis of dimethyl ether (DME) from syngas. A high surface area of ~100 m2/g with a large pore diameter of ~25 nm originated from the occupied spaces of carbon black enhanced the dispersion of the active Cu–ZnO–Al2O3 particles by forming a strong and stable interaction with mesoporous solid acid γ-Al2O3 surfaces. The enhanced dispersion of copper-containing particles, being strongly interacted with the acid sites of the hybrid Cu–ZnO–Al2O3/Al2O3 catalyst using γ-Al2O3 prepared at an optimal Al/CB weight ratio of 10, is mainly responsible for the high CO conversion with a high yield to oxygenates and a suppressed aggregation of active copper species during the direct synthesis of DME from syngas.
机译:研究了介孔γ-Al2O3的表面积和酸度的影响,该介孔是通过将沉淀的硝酸铝的铝-炭黑复合物(Al / CB)煅烧成不同重量比的炭黑而制得的,以验证炭的作用用于从合成气直接合成二甲醚(DME)的Cu-ZnO-Al2O3的表面性质和稳定性方面呈黑色。由炭黑的占据空间引起的约100m2 / g的高表面积和约25nm的大孔径,通过与介孔固体酸形成强而稳定的相互作用而增强了活性Cu-ZnO-Al2O3颗粒的分散γ-Al2O3表面。使用最佳Al / CB重量比为10的γ-Al2O3制备的含铜颗粒分散性增强,与杂化Cu-ZnO-Al2O3 / Al2O3催化剂的酸性位强相互作用,这主要是由于高CO从合成气直接合成DME时,可以高收率转化为含氧化合物并抑制活性铜的聚集。

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