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Non-Isothermal Degradation and Thermodynamic Properties of Pine Sawdust

机译:松木屑的非等温降解和热力学性质

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The study of non-isothermal kinetics analyzed the reactivity of pine sawdust, while the thermodynamic properties analyzed energy consumed and released from the pine sawdust. The kinetic parameters were determined by analyzing mass loss of pine sawdust components by using Thermogravimeric analyzer. The cellulose has the highest conversion rate of 9.5%/min at 610 K compared to hemicellulose and lignin, which are 5%/min at 600 K and 2%/min at 800 K, respectively. The activation Energy for cellulose, hemicellulose and lignin was 457.644, 259.876, and 89.950 kJ/mol, respectively. The thermodynamic properties included the change of Gibbs free energy for cellulose and hemicellulose, which were -214.440 and -30.825 kJ/mol respectively, their degradation was spontaneous in forward direction, while change of Gibbs free energy for lignin was 207.507 kJ/mol, which is non-spontaneous reaction. The positive value of change of entropies for the active complex compounds formed from hemicellulose and cellulose is less stable, while the active complex compounds of lignin are characterized by a much higher degree of arrangement since its change of entropy is negative. The kinetic and thermodynamic properties show that pine sawdust is a good candidate for production of char since it is easier to remove hemicellulose through thermal process.
机译:非等温动力学的研究分析了松木屑的反应性,而热力学性质则分析了松木屑的消耗和释放的能量。通过使用热重分析仪分析松木屑成分的质量损失来确定动力学参数。与半纤维素和木质素相比,纤维素在610 K下的最高转化率为9.5%/ min,在600 K下分别为5%/ min,在800 K下则为2%/ min。纤维素,半纤维素和木质素的活化能分别为457.644、259.876和89.950 kJ / mol。热力学性质包括纤维素和半纤维素的吉布斯自由能的变化,分别为-214.440和-30.825 kJ / mol,它们的降解是自发向前的,而木质素的吉布斯自由能的变化为207.507 kJ / mol,其中是非自发反应。由半纤维素和纤维素形成的活性复合物的熵变化的正值不稳定,而木质素的活性复合物的熵变化为负,因此其排列度高得多。动力学和热力学性质表明,松木屑是焦炭生产的良好候选者,因为它易于通过热过程除去半纤维素。

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