Devolatilization of African Palm (Elaeis guineensis) Husk studied by TG-MS

A. Arrieta, E. O. Muñoz, Ismael Piñeres Ariza, Andrés Escobar, M. Chamorro
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引用次数: 1

Abstract

Using simultaneous thermogravimetrical analysis coupled with mass spectroscopy, the pyrolysis of African palm husk, using several heat rates and programs was performed. Seven relations of mass/charge were followed of the evolved gas of the pyrolysis process, fitting the kinetics and the mass spectroscopy signals to the distributed activation energy model (DAEM) with different numbers of pseudo-components. Fitting with four pseudo-components proved to be the best for modeling the thermal degradation process. Kinetic parameters were not affected by the heating rate or program employed, which agrees with other reports for similar biomass. Methane, methanol formaldehyde, furfural were successfully fitted to the DAEM model, nevertheless CO2 and NO2 were not able to be represented by this model due to its production in secondary reactions in gaseous phase.
用TG-MS研究非洲棕榈(Elaeis guineensis)皮的挥发性
采用质谱联用热重分析方法,对非洲棕榈壳在不同热速率下的热解过程进行了研究。根据热解过程中析出气体的7种质量/电荷关系,将动力学和质谱信号拟合到具有不同伪组分数的分布式活化能模型(DAEM)中。用四个伪分量拟合是模拟热降解过程的最佳方法。动力学参数不受加热速率或程序的影响,这与其他类似生物质的报道一致。甲烷、甲醇、甲醛、糠醛被成功地拟合到DAEM模型中,而CO2和NO2由于在气相的二次反应中产生而无法用该模型表示。
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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