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Bio-Oil Hydrotreatment for Enhancing Solubility in Biodiesel and the Oxydation Stability of Resulting Blends

机译:生物油加氢处理可提高生物柴油的溶解度和所得混合物的氧化稳定性

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The major challenge for the pyrolytic conversion of lignocellulosic materials into crude bio-oil is the poor quality of the final product. Several strategies (addition of solvents, production of emulsions, and extraction with biodiesel) have been studied to improve its fuel properties. The extraction with biodiesel is an interesting solution because it allows direct utilization of some bio-oil fractions as fuels. However, fraction extracted with biodiesel is typically between 10 and 18 wt. %. In this paper we studied mild hydrotreatment of pyrolysis oil to enhance its solubility in biodiesel. The study was conducted with BTG and Amaron oils hydrotreated at temperatures between 200 and 325 °C in the presence of Ru/C catalyst. Hydrotreated oils generated three phases: top oil (light hydrocarbons), middle aqueous phase and bottom heavy oil phase. Each of the phases was characterized and the content of acetic acid, phenols, aromatic compounds and linear alkane hydrocarbons quantified. The upgraded bio-oils were more soluble in biodiesel than the crude bio-oils, obtaining blends with up to 48 and 38 wt. % for the BTG and Amaron bio-oil, respectively. Some of the fuel properties of the resulting blends are also reported here.
机译:将木质纤维素材料热解转化为粗生物油的主要挑战是最终产品的质量差。已经研究了几种策略(添加溶剂,生产乳液以及用生物柴油萃取)以改善其燃料性能。生物柴油萃取是一种有趣的解决方案,因为它可以直接利用某些生物油馏分作为燃料。然而,用生物柴油提取的馏分通常为10至18重量%。 %。在本文中,我们研究了热解油的温和加氢处理,以提高其在生物柴油中的溶解度。该研究是在Ru / C催化剂存在下,对BTG和Amaron油在200至325°C之间进行加氢处理而进行的。加氢处理的油产生三个相:顶油(轻烃),中间水相和底油重油相。对每个相进行表征,并对乙酸,酚,芳族化合物和直链烷烃的含量进行定量。升级后的生物油比粗生物油更易溶于生物柴油,从而获得了高达48和38 wt%的混合物。分别为BTG和Amaron生物油的%。此处还报告了所得混合物的某些燃料特性。

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