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Exploratory catalyst screening studies on the liquefaction of model humins from C6 sugars

机译:从C6糖中提取模型胡敏酸液化的催化剂探索性研究

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摘要

A catalyst screening study is reported on the liquefaction of humins, the solid byproducts from C6 sugar biorefineries for levulinic acid and 5-hydroxymethylfurfural production. Experiments were carried out in a batch reactor using an artificial model of humin derived from glucose with isopropanol (IPA) as the solvent at 400 degrees C for a 3 h batchtime. Initial studies using noble metal catalysts (Rh, Pt, Pd, Ru) on a carbon support revealed that Pt was the best catalyst in terms of humin conversion (77%) and amounts of alkylphenolics and aromatics in the product oil (GCxGC-FID). Subsequent support screening studies (TiO2, ZrO2, CeO2) were performed using Pt as the active metal and the results were compared with Pt/C. Detailed liquid product analysis (GPC, GC-MS, GCxGC) including blank reactions in the absence of humins revealed that the humins are mainly converted to monomeric alkylphenolics and aromatics oligomers (GPC) and (GC). IPA was shown not to be inert and is converted to acetone and hydrogen, and the latter is the hydrogen source for the various metal catalysed hydrogenolysis and hydro(deoxy) genation reactions. In addition, acetone is converted to aldolcondensation products (like methylisobutylketone, MIBK) and hydrogenation products derived thereof. The best results were obtained with Pt/C when considering humin conversion. However, Pt/CeO2 was shown to be more attractive when considering the amounts of alkylphenolics in the product oils (20.4 wt% based on humin intake).
机译:据报道,有一项催化剂筛选研究涉及腐殖酸的液化,腐殖酸是C6糖生物精炼厂生产乙酰丙酸和5-羟甲基糠醛的固体副产物。在间歇反应器中,使用衍生自葡萄糖的腐殖质的人工模型,以异丙醇(IPA)作为溶剂,在400摄氏度下进行了3小时的间歇实验。使用碳载体上的贵金属催化剂(Rh,Pt,Pd,Ru)进行的初步研究表明,就腐殖质转化率(77%)以及成品油中烷基酚和芳烃的含量(GCxGC-FID)而言,Pt是最好的催化剂。随后使用铂作为活性金属进行了支持物筛选研究(TiO2,ZrO2,CeO2),并将结果与​​Pt / C进行了比较。详细的液体产物分析(GPC,GC-MS,GCxGC)包括在没有腐殖质的情况下的空白反应,结果表明,腐殖质主要转化为单体烷基酚和芳香族低聚物(GPC)和(GC)。 IPA被证明不是惰性的,可以转化为丙酮和氢,后者是各种金属催化的氢解和加氢(脱氧)反应的氢源。另外,丙酮被转化为醛醇缩合产物(如甲基异丁基酮,MIBK)和由其衍生的氢化产物。考虑到人的转化,用Pt / C可获得最佳结果。但是,当考虑产品油中烷基酚的含量时(基于腐殖质的摄入量为20.4 wt%),Pt / CeO2更具吸引力。

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