April 17, 2024
Journal Article

Ceramic-metal (cermet) composites: A review of key properties and synthesis methods focused on nuclear waste immobilization

Abstract

This paper reviews key properties, applications, and examples of ceramic-metal composites (cermets), and metal matrix composites (MMC) with emphasis on their applicability as waste forms for immobilizing nuclear waste. While the literature is mature for vitrified and cementitious radioactive waste forms, cermet materials have not received adequate attention as potential candidates for immobilizing nuclear waste. To promulgate this effort, this review connects cermet and MMC design, such as hardened tools, with the chemistry of radioactive waste streams. A discussion on certification and qualification standards for cermet waste forms, literature gaps, and “how-to” sections on cermet processing techniques. Key parameters discussed include thermal conductivity, chemical durability, and waste loading, as well as examples for metal-containing waste forms. As cermet waste forms gain momentum within the community, this review paper aims ensure the end-of-life nuclear fuel cycle is addressed from a materials and waste disposition perspective.

Published: April 17, 2024

Citation

Evarts J.S., S. Chong, J.M. Oshiro, B.J. Riley, R.M. Asmussen, and J.S. McCloy. 2024. Ceramic-metal (cermet) composites: A review of key properties and synthesis methods focused on nuclear waste immobilization. Industrial and Engineering Chemistry Research 63, no. 14:6003-6023. PNNL-SA-191155. doi:10.1021/acs.iecr.3c04450

Research topics