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Optimization of catalytic cracking process for upgrading camelina oil to hydrocarbon biofuel

机译:优化将山茶油转化为烃类生物燃料的催化裂化工艺

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摘要

Catalytic cracking of camelina oil over Zn/ZSM-5 catalyst in a fixed-bed tubular reactor was investigated. An optimization study on the catalytic cracking conditions based on nine well-planned orthogonal experiments was carried out. Three main operation conditions including reaction temperature, liquid hourly space velocity and oil extraction press frequency were studied to examine their effects on the yield and quality of hydrocarbon biofuel produced. Characterization of the catalyst, hydrocarbon biofuel and non-condensable gas was conducted. There was no significant difference between the bulk structures of fresh Zn/ZSM-5 and used Zn/ZSM-5. Small ZnO particles dispersed well on the parent ZSM-5. Hydrocarbon biofuel contained 65.18% hydrocarbons and its properties including dynamic viscosity, density and higher heating value were improved after upgrading, compared to carnelina oil. It was found that the oil extraction press frequency was the most important factor and liquid hourly space velocity was the least important factor for the hydrocarbon biofuel production. In addition, the optimum conditions for camelina oil upgrading were a combination of reaction temperature of 550 degrees C, a liquid hourly space velocity of 1.0 h(-1) and an oil extraction press frequency of 15 Hz. (C) 2015 Elsevier B.V. All rights reserved.
机译:研究了在固定床管式反应器中用Zn / ZSM-5催化剂催化山茶油的催化裂化。基于9个精心设计的正交试验,对催化裂化条件进行了优化研究。研究了反应温度,液时空速和榨油压力频率这三个主要操作条件,以考察它们对所生产的烃类生物燃料的产量和质量的影响。进行了催化剂,碳氢化合物生物燃料和不凝性气体的表征。新鲜的Zn / ZSM-5与使用的Zn / ZSM-5的本体结构之间没有显着差异。 ZnO细小颗粒很好地分散在母体ZSM-5上。碳氢化合物生物燃料含有65.18%的碳氢化合物,其提质后的性能(包括动态粘度,密度和更高的热值)与卡宴那油相比有所改善。研究发现,对于烃类生物燃料的生产,榨油压力频率是最重要的因素,液体时空速是最不重要的因素。此外,山茶油提质的最佳条件是反应温度为550摄氏度,液时空速为1.0 h(-1)和抽油压力为15 Hz的组合。 (C)2015 Elsevier B.V.保留所有权利。

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