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Characterization of Japanese cedar bio-oil produced using a bench-scale auger pyrolyzer

机译:使用台式螺旋钻热解器生产的日本雪松生物油的表征

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摘要

A bench-scale auger reactor was designed for use as a laboratory-scale fast pyrolyzer for producing bio-oil from Japanese cedar. An analytical pyrolysis method was performed simultaneously to determine the distribution of pyrolysis products. The pyrolysis temperature was found to have the greatest influence on the bio-oil characteristics; bio-oil yields increased as the pyrolysis temperature increased from 450 to 550 °C. The concentration of levoglucosan in the bio-oil, however, decreased significantly with increasing pyrolysis temperature, while it increased following analytical pyrolysis. The same results were obtained for 4-vinylguaiacol and E-isoeugenol, which were the major secondary products produced in the present study. Compared to the yields of these major products obtained via analytical pyrolysis, the yields from the auger reactor were very low, indicating that the auger reactor process had a longer vapor residence time than the analytical pyrolysis process, resulting in the acceleration of secondary reactions of the pyrolysates. The pH values and densities of the bio-oils produced in the auger reactor were similar to those reported by researchers using woody biomass, despite their lower viscosities. From these results, it was concluded that the pyrolysis temperature and residence time of the pyrolysates played a significant role in determining the characteristics of the cedar bio-oil.
机译:设计了台式规模的螺旋钻反应器,用作实验室规模的快速热解炉,用于从日本雪松生产生物油。同时进行分析热解方法以确定热解产物的分布。发现热解温度对生物油特性的影响最大。随着热解温度从450升至550°C,生物油产量增加。然而,随着热解温度的升高,生物油中左旋葡聚糖的浓度显着降低,而在分析热解后,其浓度升高。对4-乙烯基愈创木酚和E-异丁香酚也获得了相同的结果,它们是本研究中产生的主要副产物。与通过分析热解获得的这些主要产物的收率相比,螺旋钻反应器的收率非常低,这表明螺旋钻反应器工艺的蒸气停留时间比分析热解工艺更长,从而加速了反应器的二次反应。热解产物。螺旋钻反应器中产生的生物油的pH值和密度与使用木质生物质的研究人员报道的相似,尽管它们的粘度较低。从这些结果可以得出结论,热解产物的热解温度和停留时间在决定雪松生物油的特性方面起着重要作用。

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