September 29, 2022
Report

Noble Gas Management: SBMOF 1 vs. NUCON Carbon - CRADA 459 (Final Report)

Abstract

Pacific Northwest National Laboratory (PNNL), in collaboration with Flibe Energy, Inc., demonstrated the fabrication of metal organic frameworks (MOFs) into engineered beads to manage off-gases released from molten salt reactors. Among the many MOF options, SBMOF 1 was selected as an ideal sorbent to manage off-gases released from a molten salt reactor because its pore size is optimal. The SBMOF 1 was synthesized and fabricated into engineered particles using three different methods, with and without polymers. All the engineered particles were exposed to Co-60 radiation (1,000 kGy) to demonstrate their radiation stability. Single column breakthrough experiments were performed at different temperatures, activation conditions, flow rates, and off-gas compositions to optimize the Xe capacity at the breakthrough point and at saturation. The Xe loading in SBMOF 1 was compared with that of standard solid sorbent (Nucon carbon) under identical conditions. Based on the single column experiments, SBMOF 1 outperforms the Nucon carbon at all the temperatures and reduces the mass (to as little as 55%) of sorbent needed to achieve the same performance as carbon. The bed volume is also reduced, down to 48% of that of Nucon carbon, when the MOF is used. These results clearly demonstrate improvement in the amount of adsorbent needed and show a reduction in bed volume compared to traditional sorbent material.

Published: September 29, 2022

Citation

Thallapally P.K., A.J. Robinson, A.A. Zbib, B.J. Riley, S. Chong, J. Liu, and M.K. Murphy, et al. 2022. Noble Gas Management: SBMOF 1 vs. NUCON Carbon - CRADA 459 (Final Report) Richland, WA: Pacific Northwest National Laboratory. doi:10.2172/1889654.

Research topics