Pyrolysis behaviors of woody biomass torrefied at temperatures below 300°C

Nakorn Worasuwannarak, J. Wannapeera, B. Fungtammasan
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引用次数: 3

Abstract

Torrefaction is the thermal treatment techniques performed at relatively low temperature (< 300 °C) in an inert atmosphere, which aims to improve the fuel energy density and the fuel grindability. In this study, woody biomass (Leucaena leucocephala) was torrefied at various temperatures and holding times and the pyrolysis behaviors of the torrefied wood was examined in detail by using TG-MS technique. It was found that the carbon content and the calorific value of the torrefied leucaena increased significantly when increase the temperature and holding time during the torrefaction. From the TG-MS analysis, the pyrolysis behaviors of the torrefied leucaena were significantly different from that of the raw leucaena. The char yield at 800 °C for the torrefied leucaena was increased when increasing the holding time during the torrefaction. On the other hand, the tar yield during the pyrolysis decreased significantly with the increase in the holding time during the torrefaction. Through the results from the TG-MS analysis, it was concluded that the structure of leucaena was changed by the torrefaction at temperature below 275 oC and the cross-linking reactions occurred during the pyrolysis resulting in increase in char yields and decrease in tar yields. It was also suggested that the longer the holding time during the torrefaction, the more the cross-linking reactions proceed during the pyrolysis. The results obtained from the study provide the basic information for the pyrolyser and/or gasifier design by using torrefied biomass as a fuel.
木质生物质在低于300°C温度下的热解行为
热处理是在相对较低的温度(<300°C)在惰性气氛中,旨在提高燃料的能量密度和燃料的可研磨性。本研究以木质生物质(Leucaena leucocephala)为研究对象,在不同温度和保温时间下进行了碳化,并利用TG-MS技术对碳化木材的热解行为进行了详细研究。结果表明,随着温度的升高和保温时间的延长,蜡蜡木碳化后的含碳量和热值显著增加。从TG-MS分析中可以看出,碳化后的藻藻与生藻藻的热解行为有显著差异。在800℃下,随着保温时间的延长,蜡蜡木的焦炭产率也有所提高。另一方面,热解过程中的焦油产率随着保温时间的增加而显著降低。通过TG-MS分析结果可知,在275℃以下的温度下,蜡蜡的结构发生了变化,热解过程中发生了交联反应,导致炭产率增加,焦油产率降低。焙烧过程中保温时间越长,热解过程中的交联反应越多。研究结果为以碳化生物质为燃料的热解炉和/或气化炉的设计提供了基本信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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