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Influence of the Surface Chemistry of Multiwalled Carbon Nanotubes on the Selective Conversion of Cellulose into Sorbitol

机译:多壁碳纳米管表面化学对山梨糖醇选择性转化的影响

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摘要

Carbon nanotubes (CNT) were submitted to liquid-phase chemical treatments using HNO3 and subsequently to gas-phase thermal treatments to incorporate different sets of oxygenated groups on the surface. The modified CNT were used as supports for 0.4 wt% Ru in the direct conversion of ball-milled cellulose to sorbitol and high conversions were reached after 3 h at 205 degrees C. Ru supported on the original CNT, although less active, was the most selective catalyst for the one-pot process (70% sorbitol selectivity after 2 h). Unlike the one-pot process, the support acidity greatly promoted the rate of cellulose hydrolysis (35% increase after 2 h) and the glucose selectivity (12% increase after 2 h). The rate of glucose hydrogenation was almost not affected by the support modification. However, the catalyst acidity improved the sorbitol selectivity from glucose. The support acidity was a central factor for the one-pot conversion of cellulose, as well as for the individual hydrolysis and hydrogenation steps, and the original CNT supported Ru catalyst was the most efficient and selective catalyst for the direct conversion of cellulose to sorbitol.
机译:使用HNO3将碳纳米管(CNT)提交至液相化学处理,随后在气相热处理中掺入表面上的不同含氧基团。将改性的CNT用作0.4wt%ru的载体在球磨纤维素的直接转化中,在山梨糖醇中,在205℃的3小时后达到高转化率,ru在原来的CNT上负载,虽然最活跃,但最活跃用于单罐过程的选择性催化剂(2小时后70%山梨糖醇选择性)。与单锅工艺不同,支持酸度大大促进了纤维素水解速率(2小时后35%增加),葡萄糖选择性(2小时后12%增加)。葡萄糖氢化的速率几乎不受支持改性的影响。然而,催化剂酸度改善了葡萄糖的山梨糖醇选择性。支持酸度是纤维素一罐转化的中心因素,以及各自水解和氢化步骤,并且原始的CNT负载的RU催化剂是最有效和选择性的催化剂,用于将纤维素直接转化为山梨糖醇。

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