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Pyrolysis of Waste Castor Seed Cake: A Thermo-Kinetics Study

机译:蓖麻籽饼的热解:热动力学研究

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Biomass pyrolysis is a thermo-chemical conversion process that is of both industrial and ecological importance. The efficient chemical transformation of waste biomass to numerous products via pyrolysis reactions depends on process kinetic rates; hence the need for kinetic models to best design and operate the pyrolysis. Also, for an efficient design of an environmentally sustainable pyrolysis process of a specific lignocellulosic waste, a proper understanding of its thermo-kinetic behavior is imperative. Thus, pyrolysis kinetics of castor seed de-oiled cake (Ricinus communis) using thermogravimetric technique was studied. The decomposition of the cake was carried out in a nitrogen atmosphere with a flow rate of 100mL min-1 from ambient temperature to 900 ?°C. The results of the thermal profile showed moisture removal and devolatilization stages, and maximum decomposition of the cake occurred at a temperature of 200-400 ?°C. The kinetic parameters such as apparent activation energy, pre-exponential factor, and order of reaction were determined using Friedman (FD), Kissinger-Akahira-Sunose (KAS), and Flynn-Wall-Ozawa (FWO) kinetic models. The average apparent activation energy values of 124.61, 126.95 and 129.80 kJmol-1 were calculated from the slopes of the respective models. The apparent activation energy values obtained depends on conversion, which is an evidence of multi-step kinetic process during the pyrolytic decomposition of the cake. The kinetic data would be of immense benefit to model, design and develop a suitable thermo-chemical system for the conversion of waste de-oil cake to energy carrier.
机译:生物质热解是一种热化学转化过程,具有工业和生态意义。通过热解反应将废物生物质有效化学转化为多种产品的过程取决于过程动力学速率。因此,需要动力学模型来最佳设计和运行热解。同样,为了有效设计特定木质纤维素废料在环境上可持续的热解过程,必须正确理解其热动力学行为。因此,利用热重技术研究了蓖麻籽脱油饼(Ricinus communis)的热解动力学。从环境温度到900℃,在氮气气氛中以100mL min-1的流速进行滤饼的分解。热曲线的结果显示了水分去除和脱挥发分阶段,并且饼的最大分解发生在200-400℃的温度下。使用弗里德曼(FD),基辛格-赤平-Sunose(KAS)和Flynn-Wall-Ozawa(FWO)动力学模型确定动力学参数,例如表观活化能,前指数因子和反应顺序。从各个模型的斜率计算出平均表观活化能值为124.61、126.95和129.80 kJmol-1。获得的表观活化能值取决于转化率,这是饼热解过程中多步动力学过程的证据。动力学数据对于建模,设计和开发合适的热化学系统以将废油饼转化为能量载体具有极大的益处。

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