首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Pyrolysis characteristics and kinetics of the marine microalgae Dunaliella tertiolecta using thermogravimetric analyzer
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Pyrolysis characteristics and kinetics of the marine microalgae Dunaliella tertiolecta using thermogravimetric analyzer

机译:热重分析仪对海洋微藻杜氏盐藻热解特性和动力学的影响

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摘要

A genus of unicellular green marine microalgae, Dunaliella tertiolecta, was pyrolysed in a thermogravimetric analyzer from room temperature to 900 degrees C in a highly purified N-2 atmosphere at different heating rates of 5, 10, 20, and 40 degrees C/min. The results showed that three stages appeared in this thermal degradation process, with increasing temperature, initial temperature. and peak temperature of pyrolysis shifting to a higher value as the heating rate increased. The increased heating rate also resulted in increased total volatile matter. The kinetic analysis of the main pyrolysis process used a composite procedure involving the iso-conversional method and the master-plots method. The iso-conversional method indicated that the pyrolysis reaction should conform to a single reaction model with an activation energy of 145.713 kJ mol(-1) using Kissinger's method and 146.421 kJ mol(-1) using Flynn-Wall-Ozawa's method, respectively. The master-plots method suggested that the most probable reaction mechanism was described by an Fir model. Finally, it was estimated that the pre-exponential factor was A = 2.28 x 10(13) s(-1), the kinetic exponent was n = 2.4, and the reaction model function Was f(alpha) = (1 - alpha)(2.4). The results of this Study provide useful information for designing a pyrolytic processing system using microalgae D. tertiolectar as feedstock.
机译:将单细胞绿色海洋微藻属杜氏藻(Dunaliella tertiolecta)在热重分析仪中于室温至900摄氏度,高度纯化的N-2气氛中以5、10、20和40摄氏度/分钟的不同加热速率热解。结果表明,随着温度,初始温度的升高,该热降解过程出现三个阶段。随着加热速率的增加,热解的峰值温度移至更高的值。升高的加热速率还导致总挥发物增加。主要热解过程的动力学分析采用了包括等转化法和主图法的复合程序。等转换法表明,热解反应应符合单一反应模型,使用基辛格方法的活化能为145.713 kJ mol(-1),使用Flynn-Wall-Ozawa方法的活化能为146.421 kJ mol(-1)。主样法表明,最可能的反应机理是由Fir模型描述的。最后,估计前指数因子为A = 2.28 x 10(13)s(-1),动力学指数为n = 2.4,反应模型函数为fα=(1-alpha) (2.4)。这项研究的结果为设计使用微藻D.teriolectar作为原料的热解工艺系统提供了有用的信息。

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