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Study on the pyrolysis characteristics and mechanism of KCI -pretreated sunflower stalk

机译:KCI -PRetreated向日葵茎的热解特性及机理研究

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To study the influence of KCl pretreating on the pyrolysis kinetics of sunflower stalk, the pyrolysis of sunflower stalk pretreated by different concentration KCl solutions were performed by nonisothermal thermogravimetric analysis (TGA) at five different heating rates. The Ozawa and Kissinger methods were employed to calculate the activation energy and the Satava method was used to obtain the kinetic mechanism model. The results showed that the pyrolysis process of the sunflower stalk pretreated by 3% and 10% KCl solution can be separated into four stages (water loss, depolymerization and vitrification, thermal decomposition, and carbonization). With the heating rate increasing, the main pyrolysis zone of the TG (thermogravimetric) and DTG curves move to the higher temperature direction, and the maximum pyrolysis rate and its corresponding temperature increase too. Adding a small amount of metal salts is conducive to the formation of volatile, and a certain amount of metal salts can improve the charcoal yield. More KCl additive makes the lower activation energy value, and the obtained activation energy value increases with the heating rate increasing. By means of the Satava method, the kinetic mechanism model for the pyrolysis of KCl-pretreated sunflower stalk is Zhuralev-Lesakin-Tempelman equation, which is three-dimensional diffusion.
机译:为研究KCL预处理对向日葵茎的热解动力学的影响,通过不同浓度KCl溶液预处理的向日葵秸秆的热解,以5种不同的加热速率进行非热热重试验(TGA)进行。使用ozawa和吻指针方法来计算激活能量,并且使用Satava方法来获得动力学机制模型。结果表明,用3%和10%KCl溶液预处理的向日葵秸秆的热解过程可以分为四个阶段(水损,解聚和玻璃化,热分解和碳化)。随着加热速率的增加,Tg(热重)和DTG曲线的主要热解区域移动到较高的温度方向,也是最大的热解率及其相应的温度升高。加入少量金属盐有利于挥发性的形成,并且一定量的金属盐可以提高炭收率。更多KCl添加剂使得较低的激活能量值,并且所获得的激活能量值随着加热速率的增加而增加。通过SATAVA方法,KCL预处理向日葵秸秆热解的动力学机制模型是Zhallyev-Lesakin-Tempelman方程,其是三维扩散。

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