Key Laboratory of High Efficiency and Clean Mechanical Manufacture, Department of Mechanical Engineering, Shandong University, Jinan 250061, PR China.
Bioresour Technol. 2013 Jan;127:298-305. doi: 10.1016/j.biortech.2012.09.089. Epub 2012 Sep 29.
The study concerns the pyrolysis kinetics of agricultural wastes, corn straw (CS) and rice husk (RH). Thermogravimetric experiments were carried out in a thermogravimetric analyzer under inert conditions, and operated at different heating rates ranging from 5 to 40K/min. As the increment of heating rates, the variations of characteristic parameters from the TG-DTG curves were determined. Iso-conversional Starink approach and Avrami theory were used to evaluate the kinetic parameters, including apparent activation energy and reaction order. For the range of conversion fraction investigated (20-80%), the apparent activation energy of CS initially increased from 98.715 to 148.062 kJ/mol and then decreased to 144.387 kJ/mol afterwards, whilst the apparent activation energy of RH increased gradually from 50.492 to 88.994 kJ/mol. With varied temperatures (517-697 K), the corresponding value of reaction order was increased from 0.288 and 0.359 to 0.441 and 0.692, along with a decrease to 0.306 and 0.445, respectively.
本研究关注农业废弃物(玉米秸秆 CS 和稻壳 RH)的热解动力学。在热重分析仪中于惰性条件下进行热重实验,操作温度范围为 5-40K/min。随着升温速率的增加,从 TG-DTG 曲线确定特征参数的变化。采用等转化率 Starink 法和 Avrami 理论评估动力学参数,包括表观活化能和反应级数。在所研究的转化率范围(20-80%)内,CS 的表观活化能最初从 98.715 增加到 148.062 kJ/mol,然后降低到 144.387 kJ/mol,而 RH 的表观活化能则逐渐从 50.492 增加到 88.994 kJ/mol。在不同温度(517-697 K)下,反应级数的对应值分别从 0.288 和 0.359 增加到 0.441 和 0.692,然后分别降低到 0.306 和 0.445。