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采用三平行反应模型对工业废弃大麻秸秆的非等温热解动力学进行研究。

Investigation of non-isothermal pyrolysis kinetics of waste industrial hemp stem by three-parallel-reaction model.

机构信息

Engineering Research of Metallurgy Energy Conservation & Emission Reduction, Ministry of Education, Kunming University of Science and Technology, Kunming 650093, Yunnan Province, PR China.

Engineering Research of Metallurgy Energy Conservation & Emission Reduction, Ministry of Education, Kunming University of Science and Technology, Kunming 650093, Yunnan Province, PR China; Kunming Metallurgy College, 650033 Kunming, PR China.

出版信息

Bioresour Technol. 2022 Mar;347:126402. doi: 10.1016/j.biortech.2021.126402. Epub 2021 Nov 23.

Abstract

The evaluation of pyrolysis kinetics for waste industrial hemp stem (IHS) is essential to achieve the high-value utilization of agricultural waste. In present study, firstly, non-isothermal pyrolysis experiments of IHS were performed at different heating rates using a thermogravimetric analyzer. Then, the kinetic triplets (apparent activation energy, pre-exponential factor, and reaction mechanism) of the three pseudo components for IHS (hemicellulose, cellulose, and lignin) were determined by a three-parallel-reaction model. Moreover, the pyrolysis products were also characterized via FTIR and SEM. The results showed that the apparent activation energies of hemicellulose, cellulose and lignin were 86.523, 113.257 and 197.961 kJ/mol, respectively; the pre-exponential factors were 6.887 × 10, 8.179 × 10 and 1.801 × 10 s, respectively; and the reaction mechanism functions were f(α) = α(1-α)[-ln(1-α)], f(α) = α(1-α)[-ln(1-α)], f(α) = α(1-α)[-ln(1-α)], respectively. The release temperature for volatile products of IHS pyrolysis was mainly between 440 and 840 K. IHS as an agricultural waste is a suitable feedstock to produce renewable energy.

摘要

对工业大麻秸秆(IHS)进行热解动力学评估对于实现农业废弃物的高值化利用至关重要。在本研究中,首先使用热重分析仪在不同加热速率下对 IHS 进行非等温热解实验。然后,通过三平行反应模型确定了 IHS 的三个拟组分(半纤维素、纤维素和木质素)的动力学三参数(表观活化能、指前因子和反应机理)。此外,还通过 FTIR 和 SEM 对热解产物进行了表征。结果表明,半纤维素、纤维素和木质素的表观活化能分别为 86.523、113.257 和 197.961 kJ/mol;指前因子分别为 6.887×10、8.179×10 和 1.801×10 s;反应机理函数分别为 f(α) = α(1-α)[-ln(1-α)]、f(α) = α(1-α)[-ln(1-α)]和 f(α) = α(1-α)[-ln(1-α)]。IHS 热解挥发物的释放温度主要在 440 和 840 K 之间。IHS 作为农业废弃物是生产可再生能源的合适原料。

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