@misc{f2a72cf352594e589dc1a709f99b1882,
title = "Recycling of PET by Dissolution-Purification-Recovery (DPR) Process Using Bioderived Solvent",
abstract = "Polyethylene terephthalate (PET) waste continues to accumulate at staggering rates, with the majority still routed to landfills due to limitations in current recycling methods. While mechanical recycling is widely implemented, it struggles to effectively remove colorants, additives, and harmful contaminants - resulting in discolored, degraded materials with limited reuse potential. In this presentation, we demonstrate a scalable dissolution-purification-recovery (DPR) process designed to selectively reclaim high-purity PET from post-consumer bottle flake. The method utilizes a food grade bio-based solvent for targeted PET dissolution, followed by activated carbon treatment for impurity removal and antisolvent-induced precipitation for polymer recovery. The resulting recycled PET exhibits complete decolorization, significantly reduced metal contamination, and minimal loss in molecular weight. These performance metrics indicate strong suitability for remanufacturing into new bottles, offering a circular alternative to traditional mechanical recycling pathways.",
keywords = "bio solvent, PET, recycling",
author = "Hudson Neyer and Taofeng Lu and Minjung Lee and Jason DesVeaux and Robert Allen and Katrina Knauer",
year = "2026",
doi = "10.66816/pr4255247",
language = "American English",
series = "Presented at the American Chemical Society (ACS) Spring 2026 Meeting, 22-26 March 2026, Atlanta, Georgia",
type = "Other",
}