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Catalytic conversion of lignin pyrolysis model compound- guaiacol and its kinetic model including coke formation

机译:木质素热解模型化合物愈创木酚的催化转化及其包括焦炭形成的动力学模型

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摘要

Lignin is the most difficult to be converted and most easy coking component in biomass catalytic pyrolysis to high-value liquid fuels and chemicals. Catalytic conversion of guaiacol as a lignin model compound was conducted in a fixed-bed reactor over ZSM-5 to investigate its conversion and coking behaviors. The effects of temperature, weight hourly space velocity (WHSV) and partial pressure on product distribution were studied. The results show the maximum aromatic carbon yield of 28.55% was obtained at temperature of 650 °C, WHSV of 8 h−1 and partial pressure of 2.38 kPa, while the coke carbon yield was 19.55%. The reaction pathway was speculated to be removing methoxy group to form phenols with further aromatization to form aromatics. The amount of coke increased with increasing reaction time. The surface area and acidity of catalysts declined as coke formed on the acid sites and blocked the pore channels, which led to the decrease of aromatic yields. Finally, a kinetic model of guaiacol catalytic conversion considering coke deposition was built based on the above reaction pathway to properly predict product distribution. The experimental and model predicting data agreed well. The correlation coefficient of all equations were all higher than 0.90.
机译:木质素是生物质催化热解中最难转化和最容易焦化的成分,可转化为高价值的液体燃料和化学品。在固定床反应器中通过ZSM-5进行了愈创木酚作为木质素模型化合物的催化转化,以研究其转化率和焦化行为。研究了温度,时空重(WHSV)和分压对产品分布的影响。结果表明,在650 C,WHSV为8 hs-1,分压为2.38 kPa的条件下,芳烃的最高收率为28.55%,而焦炭的收率为19.55%。推测该反应途径是除去甲氧基以形成酚,并进一步芳构化以形成芳族化合物。焦炭的量随着反应时间的增加而增加。催化剂的表面积和酸度随着在酸位上形成焦炭并堵塞孔道而下降,这导致芳烃产率的降低。最后,基于上述反应路径建立了考虑焦炭沉积的愈创木酚催化转化动力学模型,以正确预测产物分布。实验数据和模型预测数据吻合良好。所有方程的相关系数均高于0.90。

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