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Analysis of pyrolysis characteristics and kinetics of sweet sorghum bagasse and cotton stalk

机译:甜高粱甘蔗渣和棉秸秆的热解特性和动力学分析

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The pyrolysis kinetic behavior of sweet sorghum bagasse (SSB) and cotton stalk (CS) samples was investigated in this work. Thermogravimetric analysis of two samples at five heating rates (15, 25, 35, 45 and 55 A degrees C min(-1)) in nitrogen atmosphere was performed. Results show that the pyrolysis trends of SSB and CS in their respective five heating rates are similar. The thermal decomposition process of the SSB and CS can be divided into four stages. With the heating rate increasing, the main pyrolysis stage appeared thermal hysteresis phenomenon, the whole TG and DTG curves shifted to the higher temperature area, and the maximum pyrolysis rate increased too. For the kinetic analysis, fifteen degrees of conversion (alpha) were selected between 10 and 80% using the two isoconversional methods of Kissinger-Akahira-Sunose (KAS) and Flynn-Wall-Ozawa (FWO). The average activation energies for SSB and CS were found to be between 154.61 and 142.93 kJ mol(-1) by KAS method and 155.61 and 145.39 kJ mol(-1) using FWO method, respectively. Also, the variation of activation energy with the degree of conversion shows the apparent activation energies changed with the conversion degree, rising in an irregular jagged trend. The apparent activation energy value of SSB is also seen to be higher than that of CS at the same degree of conversion (alpha) except when it is 80% which gives lower value. The works therefore provide useful information for understanding energy requirement in pyrolysis process of biomass and in pyrolysis system design.
机译:在这项工作中研究了甜高粱甘蔗渣(SSB)和棉茎(CS)样品的热解动力学行为。在氮气氛中,在五个加热速率(15,25,35,45和55℃C min(-1))中的两个样品的热重分析。结果表明,SSB和CS各自五种加热率的热解趋势是相似的。 SSB和CS的热分解过程可分为四个阶段。随着加热速率的增加,主要热解阶段出现了热滞后现象,整个TG和DTG曲线移至较高的温度面积,并且最大的热解率也增加。对于动力学分析,使用基辛格-Akahira-Sunose(KAS)和Flynn-Wall-Ozawa(FWO)的两种同源性方法在10至80%之间选择十五个转化率(α)。发现SSB和Cs的平均活化能量分别在154.61和142.93 kJmol(-1)之间,通过KAS方法和155.61和145.39 kJ摩尔(-1)使用FWO方法。而且,随着转化程度的激活能量的变化显示了表观激活能量随着转换程度而变化,以不规则的锯齿状趋势上升。除了为较低值较低时,SSB的表观激活能量值也高于同一转化程度(α)的Cs。因此,作品提供了了解生物质和热解系统设计中的热解过程中的能量要求的有用信息。

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