- By:
- Kinzer, Bryan T; Bilheux, Jean C; Stringfellow, D Erik; Zhang, Yuxuan
- Journal Name:
- ACS Materials Letters
- Page Number:
- 3936-3942
- Volume:
- 7
- Issue Number:
- 12
- Publication Date:
- August 20, 2026
- View DOI Listing:
- https://doi.org/10.1021/acsmaterialslett.5c00986
Abstract
Salt hydrates are a promising thermochemical energy storage medium that stores heat through the reversible uptake (hydration) and release (dehydration) of water vapor. Our study deploys operando neutron imaging to investigate salt hydrate performance with high spatial resolution (42 μm pixels). For flow over a packed bed with diffusion-driven transport, measurements reveal the formation of a solid diffusion layer due to particle swelling for the pure SrBr2 salt. In contrast, the SrBr2–vermiculite composite exhibits significantly less swelling and more than a 2-fold increase in the apparent water vapor diffusivity. For axial flow through a packed bed, neutron imaging confirms theoretically predicted transitions from a moving reaction front to a homogeneous profile with an increase in humid air flow rate. Our study establishes neutron imaging as a powerful technique to advance fundamental understanding of thermochemical systems and help guide composite material design.