National Center of Excellence in Physical Chemistry, University of Peshawar, Pakistan.
Department of Chemistry, The University of Lahore, Pakistan.
Waste Manag Res. 2020 Feb;38(2):202-212. doi: 10.1177/0734242X19865339. Epub 2019 Aug 13.
Due to a huge increase in polymer production, a tremendous increase in municipal solid waste is observed. Every year the existing landfills for disposal of waste polymers decrease and the effective recycling techniques for waste polymers are getting more and more important. In this work pyrolysis of waste polystyrene was performed in the presence of a laboratory synthesized copper oxide. The samples were pyrolyzed at different heating rates that is, 5°Cmin, 10°Cmin, 15°Cmin and 20°Cmin in a thermogravimetric analyzer in inert atmosphere using nitrogen. Thermogravimetric data were interpreted using various model fitting (Coats-Redfern) and model free methods (Ozawa-Flynn-Wall, Kissinger-Akahira-Sunose and Friedman). Thermodynamic parameters for the reaction were also determined. The activation energy calculated applying Coats-Redfern, Ozawa-Flynn-Wall, Kissinger-Akahira-Sunose and Friedman models were found in the ranges 105-148.48 kJmol, 99.41-140.52 kJmol, 103.67-149.15 kJmol and 99.93-141.25 kJmol, respectively. The lowest activation energy for polystyrene degradation in the presence of copper oxide indicates the suitability of catalyst for the decomposition reaction to take place at lower temperature. Moreover, the obtained kinetics and thermodynamic parameters would be very helpful in determining the reaction mechanism of the solid waste in a real system.
由于聚合物产量的大幅增加,城市固体废物的数量也大幅增加。每年用于处理废聚合物的现有垃圾填埋场减少,而有效的废聚合物回收技术变得越来越重要。在这项工作中,在实验室合成的氧化铜存在下进行了废聚苯乙烯的热解。将样品在不同的加热速率下进行热解,即在惰性气氛中使用氮气,在热重分析仪中以 5°Cmin、10°Cmin、15°Cmin 和 20°Cmin 的加热速率进行热解。使用各种模型拟合(Coats-Redfern)和无模型方法(Ozawa-Flynn-Wall、Kissinger-Akahira-Sunose 和 Friedman)对热重数据进行解释。还确定了反应的热力学参数。应用 Coats-Redfern、Ozawa-Flynn-Wall、Kissinger-Akahira-Sunose 和 Friedman 模型计算的活化能分别在 105-148.48 kJmol、99.41-140.52 kJmol、103.67-149.15 kJmol 和 99.93-141.25 kJmol 的范围内。在氧化铜存在下,聚苯乙烯降解的最低活化能表明催化剂适合在较低温度下进行分解反应。此外,获得的动力学和热力学参数将非常有助于确定实际系统中固体废物的反应机制。