Last Update: 08/01/2026 at 1:00 PM EST

Upcycled Nitrile Rubber Carbon Capture

Coverage from American Chemical Society, Ars Technica, and others

Articles

4

Active Days

102

The Topic

Upcycled Nitrile Rubber Carbon Capture topic image

Researchers are turning discarded nitrile rubber, including gloves and shoe soles, into amine-rich materials that can capture carbon dioxide at high temperatures, while scale-up, catalyst cost, and stability remain open questions.

First Article: 02/27/26

Latest Article: 06/08/26

Summary

  • A small set of recent studies shows a shared route: hydrogenating nitrile rubber waste into amine-functional materials that bind CO2.
  • The strongest experimental signal is high-temperature performance, with adsorption reported around 90 C under flue-gas-like conditions.
  • The work is framed as circular materials innovation, using discarded gloves, O-rings, and shoe soles as feedstock rather than virgin polymer.
  • Catalyst expense, oxidative stability, and processing of crosslinked or vulcanized waste remain the main barriers to industrial use.
  • Results are being compared with established capture materials such as CALF-20 MOF, suggesting the new materials are promising but not yet clearly superior.
  • The topic is still early-stage and research-led, with little evidence of deployment beyond laboratory demonstrations.

History

05/30/2026

The story is largely unchanged, but the current version more explicitly broadens the feedstock to shoe soles and clarifies that the main unresolved issues are cost and stability at scale. It also tightens the framing around flue-gas-relevant high-temperature capture rather than general CO2 adsorption.

Featured

Timeline: 102 Days

Feb 27Mar 20Apr 10Apr 24May 15Jun 5

Additional Articles

⭐️⭐️

Chemistry World / Victoria Atkinson03-25-2026
Aarhus University and the University of St Andrews report hydrogenation-based upcycling of nitrile glove and shoe waste into polymers for CO2 adsorption and stretchable materials.