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D-Glucose hydrogenation/hydrogenolysis reactions on noble metal (Ru, Pt)/activated carbon supported catalysts

机译:在贵金属(Ru,Pt)/活性炭负载的催化剂上进行D-葡萄糖加氢/氢解反应

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In the present work we studied the hydrogenation/hydrogenolysis of D-glucose over Pt and Ru catalysts supported on activated micro/mesoporous carbon (AC), under low hydrogen pressure (1.6 MPa) and relatively high reaction temperature, i.e. 180 degrees C. We also studied the effect of metal content (1-5 wt.%), method of metal pre-treatment/reduction (H-2 at 350 degrees C or NaBH4) and reaction time (1-12 h). All the Ru and Pt/AC catalysts were very active (conversion >= 97%) with the Pt/AC catalysts being also very selective toward sorbitol (sel. >= 90%) irrespective of metal content, method of reduction and reaction time (up to 12 h). On the other hand, the Ru/AC catalysts exhibited a wide range of sorbitol selectivity values (55-93%) having various C-3-C-6 sugar alcohols (1,2,5,6-hexanetetrol, arabinitol, threitol, glycerol and 1,2-propanediol) as main by-products. The formation of by-products was dependent on the crystalline/amorphous nature of Ru and Ru(O)(chi)(delta 1) nanoparticles which were in turn affected by the Ru content and the method of reduction. (C) 2014 Elsevier B.V. All rights reserved.
机译:在当前的工作中,我们研究了在低氢气压力(1.6 MPa)和相对较高的反应温度(即180摄氏度)下,负载在活性微/中碳(AC)上的Pt和Ru催化剂上D-葡萄糖的加氢/氢解反应。还研究了金属含量(1-5%(重量)),金属预处理/还原方法(350℃下的H-2或NaBH4)和反应时间(1-12小时)的影响。所有Ru和Pt / AC催化剂都非常活泼(转化率> = 97%),并且Pt / AC催化剂对山梨醇的选择性也很高(sel。> = 90%),无论金属含量,还原方法和反应时间如何(长达12小时)。另一方面,Ru / AC催化剂具有多种C-3-C-6糖醇(1,2,5,6-己四醇,阿拉伯糖醇,苏糖醇,甘油和1,2-丙二醇)作为主要副产物。副产物的形成取决于Ru和Ru(O)(chi)(δ1)纳米粒子的晶体/无定形性质,而这些粒子又受Ru含量和还原方法的影响。 (C)2014 Elsevier B.V.保留所有权利。

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