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Thermal degradation of polypropylene reprocessed in a co-rotating twin-screw extruder: kinetic model and relationship between Melt Flow Index and Molecular weight

L. Martínez-Jothar, Tecnología Sustentable Greennova, I. Montes-Zavala, Nancy Araceli Rivera‐García, Y. Díaz-Ceja, Elı́as Pérez, Miguel Waldo-Mendoza

2021Revista Mexicana de Ingeniería Química16 citationsDOIOpen Access PDF

Abstract

Thermo-mechanical degradation of polypropylene (PP) during reprocessing causes significant changes in its properties and presents a challenge to recycling. In this study, PP was reprocessed multiple times (1 to 5 cycles, at 240, 260, or 280 °C), and the physical and structural properties of the reprocessed material were evaluated. In comparison to virgin PP, the reprocessed polymer presented a higher carbonyl index, higher melt flow index, lower average molecular weight, and narrower polydispersity. Changes in these parameters became more pronounced as the processing time and temperature increased. Additionally, two different behavior regions were identified, the first one spanning between 240 - 260 °C, and the second one comprising higher temperatures (280 °C). Moreover, a kinetic model that calculates the Mw of PP reprocessed at different temperatures was evaluated. Finally, adjusted parameters for the relationship between MFI and Mw were obtained, and the MFI of reprocessed PP was also calculated. 

Topics & Concepts

PolypropyleneMelt flow indexDispersityDegradation (telecommunications)Plastics extrusionPolymerMaterials scienceChemistryKinetic energyMolar mass distributionFlow propertiesChemical engineeringThermodynamicsComposite materialPolymer chemistryCopolymerMechanicsPhysicsEngineeringQuantum mechanicsTelecommunicationsComputer sciencePolymer crystallization and propertiesPolymer Science and PVCbiodegradable polymer synthesis and properties
Thermal degradation of polypropylene reprocessed in a co-rotating twin-screw extruder: kinetic model and relationship between Melt Flow Index and Molecular weight | Litcius