Chemistry Program, Department of Natural and Exact Sciences, San Pablo Campus, University of Cartagena, Cartagena 130015, Colombia.
Chemical Engineering Program, School of Engineering, Universidad Tecnológica de Bolivar, Parque Industrial y Tecnológico Carlos Vélez Pombo Km 1 Vía Turbaco, Cartagena 130001, Colombia.
Int J Mol Sci. 2022 Oct 3;23(19):11708. doi: 10.3390/ijms231911708.
For the synthesis of polymeric resins, it is of great importance to review the raw materials and the equipment to be used to avoid the presence of compounds that may affect the effectiveness of the polymerization and the characteristics of the plastic to be obtained. Iron oxide is a compound that can be present in reactors after maintenance due to the techniques used and the cleaning of this equipment, and it can affect the characteristics of the resins, reducing their quality. In this study, the presence of FeO in different concentrations was evaluated to determine its effects on the properties and pyrolysis of polypropylene resins by using X-ray refraction to determine the elements of the samples, evaluating thermal degradation by TGA, the variation in molecular weight by measuring the MFI, and the compounds obtained from pyrolysis by chromatography. The results showed that the thermal degradation decreased as the FeO concentration increased, while for the MFI, the relationship was directly proportional. The evaluation of the compounds obtained from pyrolysis showed an increase in the production of alcohols, alkynes, ketones, and acids, and a decrease in alkanes and alkenes, showing that FeO affects the properties of polypropylene and the compounds that are produced during pyrolysis.
对于聚合树脂的合成,审查原材料和要使用的设备非常重要,以避免存在可能影响聚合效果和要获得的塑料特性的化合物。氧化铁是一种化合物,由于使用的技术和该设备的清洁,可能会在维护后存在于反应器中,并且会影响树脂的特性,降低其质量。在这项研究中,评估了不同浓度的 FeO 的存在,以通过使用 X 射线折射来确定样品的元素,通过 TGA 评估热降解,通过测量 MFI 来评估分子量的变化,以及通过色谱法从热解中获得化合物,来确定其对聚丙烯树脂的性能和热解的影响。结果表明,随着 FeO 浓度的增加,热降解减少,而对于 MFI,关系是直接成正比的。对热解得到的化合物的评估表明,醇、炔、酮和酸的产量增加,烷烃和烯烃的产量减少,表明 FeO 会影响聚丙烯的性能和热解过程中产生的化合物。