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Flash pyrolysis of myristic acid adsorbed on supported nickel catalysts for biofuel production

机译:闪速热解吸附在负载型镍催化剂上的肉豆蔻酸用于生物燃料生产

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摘要

The present work is part of a more general project aiming at studying the decomposition products formed during the pyrolysis of fatty compounds adsorbed on solid catalysts. It deals with the decomposition of myristic acid in contact with nickel-supported catalysts. The pyrolysis was performed at 650 A degrees C in a flash mode. The products were analyzed on-line through a GCMS setup. The catalysts were prepared by impregnation with nickel nitrate, dried at 110 A degrees C and heat treated at 600 A degrees C before use. Solid myristic acid was added at room temperature to the dehydrated catalyst by mechanical mixing followed by heat treatment at 120 A degrees C under intense manual mixing, in order to allow the liquid myristic acid to wet the catalyst surface. The catalysts precursors and the catalysts containing myristic acid were characterized by DTG, and the catalysts in their oxide form were characterized by TPR and XRD. The catalysts containing adsorbed myristic acid were also characterized by FTIR. Compared with Ni/silica producing a high amount of linear 1-olefins during flash pyrolysis, the contents of deoxygenated products, of poly olefins and aromatics, were higher with the Ni/alumina catalyst. The presence of carboxylic acids with a chain length between 6 and 12 C in the pyrolysis products on the Ni/silica catalyst suggests that the cracking along the carbon chain occurred parallel to reactions of decarbonylation and decarboxylation. We also found a direct demethylation route with the Ni/silica catalyst in this experiment.
机译:目前的工作是旨在研究吸附在固体催化剂上的脂肪化合物热解过程中形成的分解产物的更一般项目的一部分。与镍负载的催化剂接触时,肉豆蔻酸的分解处理。热解在闪蒸模式下在650 A摄氏度下进行。通过GCMS设置对产品进行在线分析。通过使用硝酸镍浸渍来制备催化剂,在使用前在110 A的温度下干燥并在600 A的温度下进行热处理。通过机械混合在室温下将固体肉豆蔻酸加入到脱水的催化剂中,然后在剧烈的手动混合下在120 A的温度下进行热处理,以使液体肉豆蔻酸润湿催化剂表面。用DTG对催化剂前体和含肉豆蔻酸的催化剂进行了表征,而其氧化物形式的催化剂通过TPR和XRD进行了表征。 FTIR还对含有吸附的肉豆蔻酸的催化剂进行了表征。与闪速热解过程中生成大量线性1-烯烃的Ni /二氧化硅相比,Ni /氧化铝催化剂的聚烯烃和芳烃的脱氧产物含量更高。 Ni /二氧化硅催化剂上热解产物中链长为6至12 C的羧酸的存在表明,沿着碳链的裂解与脱羰和脱羧反应平行发生。在本实验中,我们还发现了使用Ni /二氧化硅催化剂的直接脱甲基途径。

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