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Catalytic performances of HZSM-5, NaY and MCM-41 in two-stage catalytic pyrolysis of pinewood

机译:HZSM-5,NAY和MCM-41在Pinewood两阶段催化热解中的催化性能

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Experiments were carried out in an atmospheric two-stage fixed bed reactor to investigate the catalytic cracking of pinewood pyrolysis vapour over three single catalysts, HZSM-5, NaY and MCM-41. The pinewood was pyrolyzed in the first stage reactor at a heating rate of 10 °C min~(-1) from room temperature to 700 °C, and the resultant vapour was cracked through the second reactor at a temperature of 500, 600 or 700 °C with and without catalyst. Both the gases and liquid compounds were thoroughly determined. It was found that all three catalysts had significant catalytic effects on the vapour cracking especially in the range of 500-600 °C. However, three catalysts showed dissimilarity to each other with respect to the distributions of products. Among three catalysts, HZSM-5 displayed the highest selectivity for the formation of olefins and light aromatics, with the least deposit of coke, though NaY showed the strongest capability of deoxygenation. The HZSM-5 cracking at 600 °C was preferred to balance the yield and quality of bio-products. MCM-41 behaved as a worse catalyst in the deoxygenation, and its resultant liquid product contained more heavy aromatics.
机译:实验是在大气两级固定床反应器中进行,调查松木热解蒸气在三个单一催化剂的催化裂解,HZSM-5,和的NaY MCM-41。松木是在第一级反应器在从室温10℃分钟〜(-1)的加热速率加热至700℃热解,将得到的蒸气通过第二反应器,在500,600或700的温度裂化℃下具有和不具有催化剂。无论是气体和液体化合物进行充分确定。结果发现,所有三种催化剂对蒸汽显著催化作用在500-600℃的范围内尤其是开裂。然而,三种催化剂表现出相异彼此相对于产品的分布。在三个催化剂,HZSM-5中显示的最高选择性为烯烃和轻质芳烃的形成,与焦炭的至少存款,虽然显示的NaY的脱氧能力最强。的HZSM-5在600℃下裂化是优选的,以平衡的生物产物的产率和质量。 MCM-41表现为在脱氧较差的催化剂,其得到的液体产物含有更多的重芳烃。

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