Papuga Saša, Savković Jelena, Djurdjevic Milica, Ciprioti Stefano Vecchio
Faculty of Technology, University of Banja Luka, 78000 Banja Luka, Bosnia and Herzegovina.
Faculty of Mechanical Engineering, University of Banja Luka, 78000 Banja Luka, Bosnia and Herzegovina.
Polymers (Basel). 2024 May 7;16(10):1302. doi: 10.3390/polym16101302.
This paper presents the results of investigations into the pyrolysis of waste polypropylene in a laboratory fixed-bed batch reactor. The experiments were designed and verified in such a way as to allow the application of the response surface methodology (RSM) in the development of an empirical mathematical model that quantifies the impacts mentioned above. The influence of the mass of the raw material (50, 100, and 150 g) together with the reactor temperature (450, 475, and 500 °C) and the reaction time (45, 50 and 75 min) was examined. It has been shown that the mass of the raw material, i.e., the filling volume of the reactor, has a significant influence on the pyrolysis oil yield. This influence exceeds the influence of reactor temperature and reaction time. This was explained by observing the temperature change inside the reactor at three different spots at the bottom, middle, and top of the reactor. The recorded temperature diagrams show that, with greater masses of feedstock, local overheating occurs in the middle part of the reactor, which leads to the overcracking of volatile products and, from there, to an increased formation of non-condensable gases, i.e., a reduced yield of pyrolytic oil.
本文介绍了在实验室固定床间歇式反应器中对废聚丙烯热解的研究结果。实验的设计和验证方式使得能够应用响应面方法(RSM)来建立一个经验数学模型,该模型可量化上述影响。研究了原料质量(50、100和150克)、反应器温度(450、475和500℃)以及反应时间(45、50和75分钟)的影响。结果表明,原料质量,即反应器的填充体积,对热解油产率有显著影响。这种影响超过了反应器温度和反应时间的影响。通过观察反应器底部、中部和顶部三个不同位置的内部温度变化对此进行了解释。记录的温度图表明,随着原料质量的增加,反应器中部会出现局部过热,这会导致挥发性产物过度裂解,进而导致不可冷凝气体的生成增加,即热解油产率降低。