Dubdub Ibrahim, Al-Yaari Mohammed
Chemical Engineering Department, King Faisal University, P.O. Box 380, Al-Ahsa 31982, Saudi Arabia.
Materials (Basel). 2020 Oct 31;13(21):4912. doi: 10.3390/ma13214912.
Plastic wastes have become one of the biggest global environmental issues and thus recycling such massive quantities is targeted. Low-density polyethylene (LDPE), high-density polyethylene (HDPE), polypropylene (PP), and polystyrene (PS) are considered among the main types of plastic wastes. Since pyrolysis is one of the most promising recycling techniques, this work aims to build knowledge on the co-pyrolysis of mixed polymers using two model-fitting (Criado and Coats-Redfern) methods. Seventeen co-pyrolysis tests using a thermogravimetric analyzer (TGA) at 60 K/min for different mixed compositions of LDPE, HDPE, PP, and PS were conducted. It was observed that the pyrolysis of the pure polymer samples occurs at different temperature ranges in the following order: PS < PP < LDPE < HDPE. However, compared to pure polymer samples, the co-pyrolysis of all-polymer mixtures was delayed. In addition, the synergistic effect on the co-pyrolysis of polymer blends was reported. The Master plot of the Criado model was used to determine the most suitable reaction mechanism. Then, the Coats-Redfern model was used to efficiently obtain the kinetic parameters (R ≥ 97.83%) and the obtained values of the activation energy of different polymer blends were ranging from 104 to 260 kJ/mol. Furthermore, the most controlling reaction mechanisms were in the following orders: First order reaction (F1), Contracting sphere (R3), and then Contracting cylinder (R2).
塑料废弃物已成为全球最大的环境问题之一,因此回收如此大量的塑料废弃物成为目标。低密度聚乙烯(LDPE)、高密度聚乙烯(HDPE)、聚丙烯(PP)和聚苯乙烯(PS)被认为是塑料废弃物的主要类型。由于热解是最有前景的回收技术之一,这项工作旨在利用两种模型拟合方法(Criado法和Coats-Redfern法)建立关于混合聚合物共热解的知识体系。使用热重分析仪(TGA)在60K/min的升温速率下,针对LDPE、HDPE、PP和PS的不同混合组成进行了17次共热解试验。观察到纯聚合物样品的热解在不同温度范围内按以下顺序发生:PS < PP < LDPE < HDPE。然而,与纯聚合物样品相比,所有聚合物混合物的共热解有所延迟。此外,还报道了聚合物共混物共热解的协同效应。利用Criado模型的主曲线确定了最合适的反应机理。然后,使用Coats-Redfern模型有效地获得动力学参数(R≥97.83%),不同聚合物共混物的活化能取值范围为104至260kJ/mol。此外,最主要的控制反应机理顺序如下:一级反应(F1)、收缩球体(R3),然后是收缩圆柱体(R2)。