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Catalytic conversion of glucose, fructose, and sucrose to high-valued chemicals.

机译:葡萄糖,果糖和蔗糖催化转化为高价值化学品。

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Many industrially important chemicals are currently produced using petroleum and natural gas as feedstocks. These fossil fuel resources are finite and nonrenewable. Development of new technology for the conversion of sugars to major industrial chemicals namely glycerol, propylene glycol, and ethylene glycol may replace the current petroleum or fermentation based processes. Selectivity-controlled hydrogenolysis is a promising pathway for conversion of sugars to polyhydric alcohols with no carbon atom loss. In this research with substrates glucose, fructose, and sucrose, I examine the efficacy of nine different catalysts and two solvents in the sugar hydrogenolysis process. Catalysts or catalyst combinations that favored the desired reaction pathway included 5% ruthenium on carbon; nickel on kieselguhr; palladium 1% on carbon and boron oxide; and nickel on alumina/silica and iron (III) oxide. Yields as high as 39%, 33%, and 12% were attained for propylene glycol, glycerol, and ethylene glycol, respectively. Also, a total selectivity of 63% for the products propylene glycol, glycerol, and ethylene glycol was achieved under the studied reaction conditions. Barium promoted copper chromite yielded 100% conversions for substrates glucose, fructose, and sucrose. The catalytic conversion of glucose, fructose, and sucrose in this work has demonstrated that further development of an efficient selectivity-controlled sugar hydrogenolysis process would inevitably lead to an industrially, economically, and environmentally significant process.
机译:当前,许多工业上重要的化学药品都是使用石油和天然气作为原料生产的。这些化石燃料资源是有限且不可再生的。用于将糖转化为甘油,丙二醇和乙二醇等主要工业化学品的新技术的开发可能会取代当前基于石油或发酵的工艺。选择性控制的氢解是将糖转化为多元醇且无碳原子损失的有前途的途径。在这项针对底物葡萄糖,果糖和蔗糖的研究中,我研究了糖氢解过程中九种不同催化剂和两种溶剂的功效。有利于所需反应途径的催化剂或催化剂组合包括5%钌/碳;硅藻土上的镍;碳和氧化硼上的钯含量为1%;以及氧化铝/二氧化硅上的镍和三氧化二铁。丙二醇,甘油和乙二醇的收率分别高达39%,33%和12%。同样,在研究的反应条件下,产物丙二醇,甘油和乙二醇的总选择性达到63%。钡促进的亚铬酸铜对底物葡萄糖,果糖和蔗糖的转化率达100%。这项工作中葡萄糖,果糖和蔗糖的催化转化表明,高效控制选择性糖氢解工艺的进一步发展将不可避免地导致工业,经济和环境方面的重大变化。

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