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Mo influence on the kinetics of jatropha oil cracking over Mo/HZSM-5 catalysts

机译:Mo对Mo / HZSM-5催化剂上麻疯树油裂解动力学的影响

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The aim of this work is to study the influence of Mo on the kinetics of jatropha oil cracking on HZSM-5 catalysts, in order to select catalytic materials for the production of renewable fuels and hydrocarbons as raw chemicals for the petrochemical industry. Jatropha oil was selected as a model compound of an acidic non edible vegetable oil unsuitable for biodiesel production by conventional transesterification technology. Jatropha oil was used either pure or adsorbed on Mo/HZSM-5 surfaces. A model free kinetics was developed from non-isothermal thermogravimetric experiments of vegetable oil cracking. Fast cracking experiments were performed in a micro-pyrolysis set up, at 650 degrees C, under helium flow, with on line products analysis (GC/MS). Results show that the increase in the Mo content of HZSM-5 induced a decrease of both specific surface area and acidity. Mo also changed the amount and distribution of hydrocarbons obtained during cracking reactions, increasing monoaromatics and decreasing polyaromatics. TG and DTG profiles during decomposition followed by thermogravimetry indicate that the jatropha oil catalyst mixture led to a sharp decrease in the temperature at which the main mass loss events occurred. The different values obtained for the apparent activation energy of jatropha oil decomposition suggest a different route of reaction in the presence of Mo by comparison with cracking of pure oil. (C) 2016 Elsevier B.V. All rights reserved.
机译:这项工作的目的是研究Mo对HZSM-5催化剂上麻疯树油裂化动力学的影响,以便选择用于生产可再生燃料和碳氢化合物的催化材料,作为石化工业的原料。选择麻风树油作为不适合通过常规酯交换技术生产生物柴油的酸性非食用植物油的模型化合物。麻风树油可以纯或吸附在Mo / HZSM-5表面上使用。从植物油裂化的非等温热重实验开发了自由动力学模型。快速裂解实验是在氦气流下于650℃的微热解装置中进行的,并带有在线产物分析(GC / MS)。结果表明,HZSM-5中Mo含量的增加引起比表面积和酸度的降低。钼还改变了裂化反应过程中获得的碳氢化合物的数量和分布,增加了单芳烃含量并降低了多芳烃含量。分解和热重分析过程中的TG和DTG曲线表明,麻风树油催化剂混合物导致发生主要质量损失事件的温度急剧下降。与纯油裂化相比,获得的麻疯树油分解的表观活化能的不同值表明在Mo存在下的反应路线不同。 (C)2016 Elsevier B.V.保留所有权利。

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