Advances in single component adhesive enable the production of high-performance rubber composites containing 40 wt% rubber waste and 95 wt% rubber waste when supplemented with devulcanization
Name
troyano-valls_clara_masters_cheme_2023_thesis.pdf
Description
Thesis PDF
Size
1.51 MB
Format
Adobe PDF
Checksum (MD5)
bec16eea4602d8f139743959976686d1
Author(s)
Troyano-Valls, Clara
Advisor(s)
Olsen, Bradley D.
Date Issued
February 2023
Publisher
Massachusetts Institute of Technology
Abstract
Tire waste management is a significant and unsolved issue that continues to threaten human and environmental health. Here, a single component adhesive developed by our group is further optimized to produce rubber composites containing 40 wt% recycled rubber crumb and an unused polybutadiene matrix. The best-performing 40 wt% samples outperform those produced in the previous study, and which only contain 15 wt% recycled content. To push the recycled content in the composite even further, the single component adhesive was combined with devulcanization to produce a 95 wt% sample that also outperforms the 15 wt% samples from the predecessor study. Finally, scanning electron microscopy and elemental mapping enabled a new understanding of the architecture of the composites, and shows that the adhesive is not acting as a coating to the rubber crumb, but is instead shearing off substantially and distributing itself in the composite.
MIT Department
Massachusetts Institute of Technology. Department of Chemical Engineering
Terms of Use
In Copyright - Educational Use Permitted
Copyright MIT
Persistent DSpace Link