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Hydrogen-Free Deoxygenation of Bio-Oil Model Compounds over Sulfur-Free Polymer Supported Catalysts

机译:生物油模型化合物的无氢脱氧在无硫聚合物中负载型催化剂

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Hydrotreatment of bio-oil oxygen compounds allows the final product to be effectively used as a liquid transportation fuel from biomass. Deoxygenation is considered to be one of the most promising ways for bio-oil upgrading. In the current work, we describe a novel approach for the deoxygenation of bio-oil model compounds (anisole, guaiacol) using supercritical fluids as both the solvent and hydrogen-donors. We estimated the possibility of the use of complex solvent consisting of non-polar n-hexane with low critical points (Tc = 234.5 oC, Pc = 3.02 MPa) and propanol-2 used as H-donor. The experiments were performed without catalysts and in the presence of noble and transition metals hydrothermally deposited on the polymeric matrix of hypercrosslinked polystyrene (HPS). The experiments showed that the presence of 20 vol. % of propanol-2 in n-hexane results in the highest (up to 99%) conversion of model compounds. When the process was carried out without a catalyst, phenols were found to be a major product yielding up to 95 %. The use of Pd- and Co-containing catalyst yielded 90 % of aromatic compounds (benzene and toluene) while in the presence of Ru and Ni cyclohexane and methylcyclohexane (up to 98 %) were the main products.
机译:生物油化合物的加氢处理允许最终产品有效地用作生物质的液体运输燃料。脱氧被认为是生物油升级最有希望的方式之一。在目前的工作中,我们描述了一种使用超临界流体作为溶剂和氢气供体的生物油模型化合物(苯甲醚,愈伞)的脱氧的新方法。我们估计了使用由非极性正己烷组成的复合溶剂,其具有低关键点(Tc = 234.5℃,PC = 3.02MPa)和丙醇-2用作H-供体。在没有催化剂的情况下进行实验,并且在惰性和过渡金属存在下在高速沉积在高交联的聚苯乙烯(HPS)的聚合物基质上。实验表明,存在20体积。正己烷中丙醇-2的%导致模型化合物的最高(高达99%)转化。当没有催化剂进行过程时,发现酚是产物高达95%的主要产物。使用PD-和Co型催化剂的使用得到90%的芳族化合物(苯和甲苯),而在Ru和Ni环己烷存在下,甲基环己烷(高达98%)是主要产物。

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