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甘蔗废弃物与聚对苯二甲酸乙二酯的共热解特性:热分解、产物分布、协同效应及动力学分析

Co-pyrolysis characteristic of sugarcane waste with polyethylene terephthalate: thermal decomposition, product distribution, synergistic effect, and kinetics analysis.

作者信息

Hassan Hamizura, Hameed Bassim H

机构信息

Waste Management Group and Resource Recovery (WeResCue) Group, Chemical Engineering Studies, College of Engineering, Universiti Teknologi MARA, Cawangan Pulau Pinang, 13500 Permatang Pauh, Pulau Pinang, Malaysia.

Department of Chemical Engineering, College of Engineering, Qatar University, P.O. Box: 2713, Doha, Qatar.

出版信息

Environ Sci Pollut Res Int. 2024 Apr 19. doi: 10.1007/s11356-024-33291-0.

Abstract

This work has focused on the co-pyrolysis of sugarcane waste (SW) with polyethylene terephthalate (PET) to gain insight on its thermal decomposition, product distribution, kinetics, and synergistic effect. SW and PET were blended at different ratios (100:0, 80:20, 60:40, 40:60, and 0:100), and the Coats-Redfern method was used to determine the kinetics parameters. To ascertain the synergistic effect between SW and PET, product yields and composition of chemicals were compared with the synergistic effect of the individual components of pyrolysis. The bio-oil yield was significant at 60% of PET, with a difference of 19.41 wt% compared to the theoretical value. The synergistic impact of SW:PET on ester formation and acid compound inhibition was the most dominant at the 60:40 ratio. The kinetics analysis revealed that the diffusion mechanism, power law, and order of reactions were the most probable reaction models that can explain the pyrolysis of SW, and PET, and their blends. The resultant co-pyrolysis oil contained slightly larger hydrogen and carbon contents with low oxygen, and sulphur, and nitrogen contents, which improved the quality of the bio-oil. The results of this work could be used as a guide in selecting proper reaction conditions with optimal synergy during the co-pyrolysis process.

摘要

这项工作聚焦于甘蔗废弃物(SW)与聚对苯二甲酸乙二酯(PET)的共热解,以深入了解其热分解、产物分布、动力学及协同效应。SW和PET按不同比例(100:0、80:20、60:40、40:60和0:100)混合,并采用Coats-Redfern方法确定动力学参数。为确定SW和PET之间的协同效应,将产物产率和化学组成与热解各单一组分的协同效应进行比较。当PET含量为60%时生物油产率显著,与理论值相比相差19.41 wt%。SW:PET在60:40比例下对酯形成和酸化合物抑制的协同影响最为显著。动力学分析表明,扩散机理、幂律和反应级数是最有可能解释SW、PET及其混合物热解的反应模型。所得共热解油的氢和碳含量略高,氧、硫和氮含量较低,这提高了生物油的质量。这项工作的结果可作为在共热解过程中选择具有最佳协同作用的合适反应条件的指导。

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