首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Upgrading the characteristics of the bio-oil obtained from rapeseed oil cake pyrolysis through the catalytic treatment of its vapors
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Upgrading the characteristics of the bio-oil obtained from rapeseed oil cake pyrolysis through the catalytic treatment of its vapors

机译:通过菜籽油饼的蒸气催化处理,提高了菜籽油饼热解获得的生物油的特性

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The present work is aimed to investigate the upgrading of rapeseed oil cake pyrolysis bio-oil (PBO) through catalytic treatment of its vapors in a fixed bed reactor. In this regard, HZSM-5 zeolite and promoted Fe2O3/ZSM5 samples were prepared. The HZSM-5 zeolite was synthesized by NaOH treatment and then it was used as support material to obtain Fe2O3-ZSM-5 catalysts (2.5-10 wt% Fe2O3 load) produced by metalorganic chemical vapour deposition (MOCVD). The support material and catalysts prepared were characterized by BET, XRD, SEM, EDX methods. The Fe2O3-ZSM-5 catalysts were then used in the study on improving the characteristics of the rapeseed oil cake pyrolysis bio-oil through catalytic treatment of its vapors.The results obtained by non-catalytic and catalytic pyrolysis experiments showed that bio-oil yields have decreased in the presence of catalysts. In addition, the bio-oil composition was determined by GC/MS method and it was observed that Fe2O3/ ZSM-5 catalyst lead to a significant improved quality of the pyrolysis bio-oil in comparison with product obtained by non-catalytic process. The catalyst improved the oxygen removal process from the organic phase of pyrolysis bio-oil and further increased the quantity of desirable products such as aromatic and phenolics compounds.
机译:本工作旨在研究通过在固定床反应器中对其蒸气进行催化处理来提高菜籽油饼热解生物油(PBO)的性能。在这方面,制备了HZSM-5沸石和促进的Fe 2 O 3 / ZSM 5样品。通过NaOH处理合成HZSM-5沸石,然后将其用作载体材料,以通过金属有机化学气相沉积(MOCVD)获得Fe 2 O 3 -ZSM-5催化剂(Fe 2 O 3负载量为2.5-10重量%)。所制备的载体材料和催化剂通过BET,XRD,SEM,EDX方法表征。然后使用Fe2O3-ZSM-5催化剂通过对其蒸气进行催化处理来改善菜籽油饼热解生物油的特性。通过非催化和催化热解实验获得的结果表明,生物油的收率在催化剂的存在下已经减少。另外,通过GC / MS方法确定了生物油的组成,并且观察到与通过非催化方法获得的产物相比,Fe 2 O 3 / ZSM-5催化剂导致热解生物油的质量显着提高。该催化剂改善了从热解生物油的有机相中除氧的过程,并进一步增加了所需产物如芳族和酚类化合物的数量。

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