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Catalytic Pyrolysis of Pine Wood Sawdust to Produce Bio-oil: Effect of Temperature and Catalyst Additives

机译:松木木屑催化热解生产生物油:温度和催化剂添加剂的影响

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In this work, non-catalytic pyrolysis of Turkish pine (Pinus brutia Ten.) wood sawdust was performed in a fixed-bed reactor at various temperatures to obtain the optimum conditions to achieve a maximum bio-oil yield. The highest yield of bio-oil was obtained about 46 wt% at 550 degrees C for non-catalytic pyrolysis. At the optimum conditions, the effects of different catalyst types (KOH, ZnCl2, and ZnO) and amount of catalyst (5, 10, 15, and 20wt%) on the pyrolysis product yields and bio-oil properties were investigated. The presence of catalysts changed the product distribution considerably. Increasing the amount of catalyst led to a decrease in the yield of liquid product, while the gas and char yields increased compared to non-catalytic pyrolysis. The chemical compositions of bio-oil were determined with GC-MS analyses. It was determined that bio-oils contain a large variety of organic compounds, such as furans, aldehydes, ketones, phenols, acids, benzenes, alcohols, alkanes, and polycyclic aromatic hydrocarbons (PAHs). The catalysis by KOH significantly increased the levels of phenols, while it reduced the formation of acids and aldehydes. ZnCl2 produced bio-oil with high percentages of aldehydes. Moreover, ZnO reduced the proportion of PAH in the bio-oil. These results demonstrated that bio-oils could improve with a catalyst. Therefore, catalyst selection for high bio-oil quality is crucial in industrial applications.
机译:在这项工作中,土耳其松木(Pinus brutia Ten。)的木屑的非催化热解是在固定床反应器中于各种温度下进行的,以获得获得最大生物油产量的最佳条件。在非催化热解下,在550摄氏度下获得了约46 wt%的最高生物油产率。在最佳条件下,研究了不同催化剂类型(KOH,ZnCl2和ZnO)和催化剂量(5、10、15和20wt%)对热解产物产率和生物油性质的影响。催化剂的存在极大地改变了产物分布。与非催化热解相比,增加催化剂的量导致液体产物的产率降低,而气体和焦炭的产率提高。用GC-MS分析确定生物油的化学成分。已确定生物油包含多种有机化合物,例如呋喃,醛,酮,酚,酸,苯,醇,烷烃和多环芳烃(PAH)。 KOH催化显着增加了酚的含量,同时减少了酸和醛的形成。 ZnCl2生产的生物油中醛的含量很高。此外,ZnO降低了生物油中PAH的比例。这些结果表明生物油可以用催化剂改善。因此,对于高生物油品质的催化剂选择在工业应用中至关重要。

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