2006 AIChE Annual Meeting
(423c) A Mechanistic Modeling Framework for Describing Tertiary Recycling of Polymers
Authors
Recently, debate has emerged about the details of PS degradation despite decades of research. For example, a wide range of activation energies, 20 to 75 kcal/mol, has been reported, and structural anomalies have been proposed as the underlying cause. In addition, there is also a large disparity between reported quantities of the major products of PS pyrolysis. To help resolve this debate, we have implemented algorithms to increase the level of detail tracked in the PS pyrolysis model. Specifically, a methodology was included to track chain backbone triad units based on conditional probabilities in the continuum model. Individual triad concentrations are tracked using triad balance differential equations. Furthermore, the mechanistic model was coupled with a spatially dependent reactor model that was solved using a multiple timestep approach. These improvements were applied to develop a model of PS pyrolysis that allowed us to probe the effect of weak links on the activation energy and the role of small molecule diffusion on the observed low molecular weight product distribution. The methodologies developed are sufficiently general that they can be applied to study a wide range of polymer degradation systems, including multicomponent mixtures of plastics that are relevant to resource recovery.