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Hydrogen, Alcohols, and Ethers Production from Biomass in Supercritical Methanol-Subcritical Water Medium with Cu-K Nanocatalysts

机译:Cu-K纳米催化剂在超临界甲醇-亚临界水介质中生物质产生的氢,醇和醚

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摘要

In this study, Iranian bagasse was gasified and liquefied in a supercritical methanol/subcritical water medium in presence of potassium promoted Cu/γ-Al_2O_3MgO catalysts to generate H_2, alcohols, and ethers. Iranian bagasse as a waste cellulosic biomass in sugarcane industry was selected for the process feedstock. The gaseous and liquid products were evaluated in presence of catalysts with different potassium contents. Decrease in liquid production was observed with increasre in promoter content up to 2.5% but further promoter content addition increased liquid production. So that the catalyst with 10% potassium content showed liquid production 1.7 times more than catalyst with no potassium content. However, it was demonstrated that catalyst with copper content of 20% and potassium content of 2.5% also could make process most selective for alcohols and ethers producing. The produced alcohols and ethers percentage and selectivity in liquid product for this catalyst were approximately 40% and 5%, respectively. Production of gaseous products also showed a minimum amount of total produced gas at potassium content of 5%. Hydrogen that was another target product was obtained up to 310 mmole.
机译:在这项研究中,将伊朗甘蔗渣在钾促进的Cu /γ-Al_2O_3MgO催化剂存在下,在超临界甲醇/亚临界水介质中气化和液化,生成H_2,醇和醚。选择伊朗甘蔗渣作为甘蔗工业中的纤维素废生物质作为加工原料。在不同钾含量的催化剂存在下评估气态和液态产物。观察到液体产量的减少,其中促进剂含量最多增加2.5%,但是进一步添加促进剂含量增加了液体产量。因此,钾含量为10%的催化剂的液体产量是无钾催化剂的1.7倍。但是,事实证明,铜含量为20%,钾含量为2.5%的催化剂也可以使工艺对醇和醚的生产更具选择性。该催化剂在液体产物中产生的醇和醚的百分比和选择性分别约为40%和5%。气态产物的生产还显示出钾含量为5%时产生的总产气量最少。获得了高达310 mmole的氢,这是另一种目标产物。

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