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纤维/环氧树脂复合材料中环氧树脂的氧化热解综合研究:产物特性及动力学

A comprehensive study on the oxidative pyrolysis of epoxy resin from fiber/epoxy composites: Product characteristics and kinetics.

作者信息

Ma Chuan, Sánchez-Rodríguez Daniel, Kamo Tohru

机构信息

National Institute of Advanced Industrial Science and Technology (AIST), 16-1 Onogawa, Tsukuba, Ibaraki 305-8569, Japan.

National Institute of Advanced Industrial Science and Technology (AIST), 16-1 Onogawa, Tsukuba, Ibaraki 305-8569, Japan.

出版信息

J Hazard Mater. 2021 Jun 15;412:125329. doi: 10.1016/j.jhazmat.2021.125329. Epub 2021 Feb 6.

Abstract

Thermal treatment has been the most feasible process to recycle valuable carbon fibers and obtain fuel and chemicals from waste fiber/epoxy composites. The present work studied the oxidative pyrolysis behaviors of epoxy resin from fiber/epoxy composites using a thermogravimetric apparatus and a fixed-bed reactor, respectively. The effects of various O concentrations on the thermal behaviors of epoxy resin were investigated and the product characteristics were analyzed. Furthermore, a multi distributed activation energy model (multi-DAEM) was first developed to determine the oxidative pyrolysis kinetics of epoxy resin under various atmospheres. Results showed that the degradation behaviors of epoxy resin were largely altered by the O concentrations. High O concentrations accelerated the primary decomposition of epoxy resin and shifted the oxidation of resin residue into lower temperatures. High contents of methylcyclohexene and phenolic derivatives were detected in liquid products. In air atmosphere, high yields of CO and CO were generated and distributed in several stages. The kinetic analysis indicated that the multi-DAEM method can well explain the oxidative pyrolysis behaviors of epoxy resin. A minimum six-reaction fitting process can perfectly simulate the oxidative pyrolysis of epoxy resin. The predictions for various O concentrations were in good agreement with the experimental tests.

摘要

热处理一直是回收有价值的碳纤维并从废纤维/环氧树脂复合材料中获取燃料和化学品的最可行方法。目前的工作分别使用热重分析仪和固定床反应器研究了纤维/环氧树脂复合材料中环氧树脂的氧化热解行为。研究了不同氧气浓度对环氧树脂热行为的影响,并分析了产物特性。此外,首次开发了多分布活化能模型(multi-DAEM)来确定不同气氛下环氧树脂的氧化热解动力学。结果表明,氧气浓度极大地改变了环氧树脂的降解行为。高氧气浓度加速了环氧树脂的初次分解,并将树脂残渣的氧化转移到更低温度。在液体产物中检测到高含量的甲基环己烯和酚类衍生物。在空气气氛中,产生了高产量的一氧化碳和二氧化碳,并分几个阶段分布。动力学分析表明,multi-DAEM方法可以很好地解释环氧树脂的氧化热解行为。最少六反应拟合过程可以完美模拟环氧树脂的氧化热解。对不同氧气浓度的预测与实验测试结果吻合良好。

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