Energy Efficient Routes to Renewable Terephthalic Acid: Pathways Toward Sustainable Polyethylene Terephthalate, PET (Adv. Sustainable Syst. 10/2026)

Sustainable PET The cover depicts energy-efficient pathways that transform renewable carbon resources into terephthalic acid, a key building block of PET. The design highlights the integration of renewable feedstocks, advanced conversion technologies, and circular strategies in the transition toward more sustainable polyester production. See Research Article e70592 by Udishnu Sanyal, Karthikeyan K. Ramasamy and co-workers for more details.

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Publication Details

Journal
Advanced Sustainable Systems
Published
2026-09-25
DOI
https://doi.org/10.1002/adsu.70672
Primary Topic
biodegradable polymer synthesis and properties
Type
article
Field-Weighted Citation Impact
0.00
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article

Energy Efficient Routes to Renewable Terephthalic Acid: Pathways Toward Sustainable Polyethylene Terephthalate, PET (Adv. Sustainable Syst. 10/2026)

Jasan Robey Mangalindan, Mond F. Guo, Udishnu Sanyal, Karthikeyan K. Ramasamy et al.
Advanced Sustainable Systems
biodegradable polymer synthesis and properties
article

Energy Efficient Routes to Renewable Terephthalic Acid: Pathways Toward Sustainable Polyethylene Terephthalate, PET (Adv. Sustainable Syst. 10/2026)

Jasan Robey Mangalindan, Mond F. Guo, Udishnu Sanyal, Karthikeyan K. Ramasamy, Casper Brady, Senthil Subramaniam
article en

Abstract

Sustainable PET The cover depicts energy-efficient pathways that transform renewable carbon resources into terephthalic acid, a key building block of PET. The design highlights the integration of renewable feedstocks, advanced conversion technologies, and circular strategies in the transition toward more sustainable polyester production. See Research Article e70592 by Udishnu Sanyal, Karthikeyan K. Ramasamy and co-workers for more details.

Advanced Sustainable SystemsVol. 10(10)
Pacific Northwest National Laboratory (US), Environmental Molecular Sciences Laboratory (US)
Responsible consumption and production
Openalex Percentile: Top 23%
biodegradable polymer synthesis and properties
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