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Oxygen-Containing Fuels from High Acid Water Phase Pyrolysis Bio-Oils by ZSM−5 Catalysis: Kinetic and Mechanism Studies

机译:ZSM-5催化高酸性水相热解生物油中的含氧燃料:动力学和机理研究

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This study developed an upgrading process focusing on acid transformations of water phase pyrolysis bio-oils to esters of oxygen-containing fuels via ZSM−5 catalyst. Temperature was set as a factor with five levels ranging from 60 to 135 °C with reaction time from 1 to 8 h. The results showed that 89% of high acid conversion and over 90% of ester selectivity was obtained from the feedstock via 2 wt % ZSM−5 catalysts in a fixed feedstock to methanol ratio analyzed by HPLC and GC–MS. The upgrading process followed Langmuir–Hinshelwood and reaction constants were calculated to build a practical upgrading model for bio-oil compounds. Thermodynamics of the process showed endothermic properties during the breaking bonds’ reaction on carbonyl of acid while the reaction between the carbon in methanol and electrophile acid intermediate demonstrated exothermic performance. The optimum reaction conditions for the process was at a temperature of 100.1 °C with catalyst loading of 3.98 wt %.
机译:这项研究开发了一种升级工艺,重点是通过ZSM-5催化剂将水相热解生物油酸转化为含氧燃料的酯。将温度设置为一个因子,范围为60至135°C,反应时间为1至8 h的五个温度。结果表明,通过固定的原料甲醇比,通过HPLC和GC-MS分析,通过2 wt%ZSM-5催化剂从原料中获得89%的高酸转化率和90%以上的酯选择性。升级过程遵循Langmuir-Hinshelwood,并计算了反应常数以建立生物油化合物的实用升级模型。该过程的热力学显示了在酸的羰基上的断裂键反应期间的吸热特性,而甲醇中的碳与亲电子酸中间体之间的反应则显示出放热性能。该方法的最佳反应条件是在100.1℃的温度下,催化剂负载量为3.98wt%。

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