TY - JOUR
T1 - Round Robin Measurements of Molten Salt Properties for LiF-NaF-KF (FLiNaK) and NaCl-KCl Mixtures
AU - Munro, Troy
AU - Chiu, Randall
AU - Rose, Melissa A.
AU - Benes, Ondrej
AU - Boca, Miroslav
AU - Gardner, D. Nathanael
AU - Leong, Amanda
AU - Mastromarino, Sara
AU - Pamplin, Kim L.
AU - Piro, Markus H. A.
AU - Saoudi, Mouna
AU - Schorne-Pinto, Juliano
AU - Sclafani, Christian Michael
AU - Smith, Anna L.
AU - Smith, Nathan D.
AU - Sulejmanovic, Dino
AU - Berry, Allison M.
AU - Chen, Renkun
AU - Chung, Ka Man
AU - Dahman, Christa
AU - Detrick, Kent
AU - Feng, Tianshi
AU - Ocadiz Flores, J. A.
AU - Gallagher, Ryan
AU - Gardner, Levi
AU - Guo, Xiaofeng
AU - Jackson, J. Matthew
AU - Karlsson, Toni
AU - Kasper, Peter
AU - Kim, Hojong
AU - Mcilwain, Logan
AU - Memmott, Matthew
AU - Merritt, Brian
AU - Monreal, Marisa J.
AU - Oishi, Kentaro
AU - Orlovskaya, Liana
AU - Parker, S. Scott
AU - Prudil, Andrew A.
AU - Robison, Aaron D.
AU - Scott, Sean
AU - Romero III, Raul C.
AU - Vlieland, John
AU - Woods, Michael E.
AU - Zhang, Jinsuo
AU - Besmann, Theodore M.
AU - Scarlat, Raluca O.
N1 - Publisher Copyright:
© 2025 American Chemical Society
PY - 2025/10/30
Y1 - 2025/10/30
N2 - The development, operation, and regulation of nuclear reactors that utilize molten salts as fuel or as heat transfer media require knowledge of the thermal properties of the salt systems and quantification of the corresponding uncertainties. Knowledge of molten salt properties is also necessary for applications in material synthesis, processing, separations, solar thermal power generation, and energy storage. A round robin was conducted with national laboratory and university participants from twenty-one laboratories in five countries to compare property measurements, to better understand uncertainties, and to identify possible best practices. Two salt mixtures, each from a common batch, were distributed to participants for evaluation: equimolar NaCl-KCl and 45.0LiF-13.7NaF-41.3KF mol % (FLiNaK). Measurements were performed to determine the major constituent composition, oxygen content, density, thermal expansivity, melting point, and thermal conductivity. Error analysis was performed on each measurement for uncertainty quantification for each type of property that was explored. The resulting discussion of the methodologies used in this work is meant to lay the groundwork for the development of standard methods and reference materials for future high-temperature property measurements on halide melts.
AB - The development, operation, and regulation of nuclear reactors that utilize molten salts as fuel or as heat transfer media require knowledge of the thermal properties of the salt systems and quantification of the corresponding uncertainties. Knowledge of molten salt properties is also necessary for applications in material synthesis, processing, separations, solar thermal power generation, and energy storage. A round robin was conducted with national laboratory and university participants from twenty-one laboratories in five countries to compare property measurements, to better understand uncertainties, and to identify possible best practices. Two salt mixtures, each from a common batch, were distributed to participants for evaluation: equimolar NaCl-KCl and 45.0LiF-13.7NaF-41.3KF mol % (FLiNaK). Measurements were performed to determine the major constituent composition, oxygen content, density, thermal expansivity, melting point, and thermal conductivity. Error analysis was performed on each measurement for uncertainty quantification for each type of property that was explored. The resulting discussion of the methodologies used in this work is meant to lay the groundwork for the development of standard methods and reference materials for future high-temperature property measurements on halide melts.
UR - https://www.webofscience.com/api/gateway?GWVersion=2&SrcApp=pure_id&SrcAuth=WosAPI&KeyUT=WOS:001604955400001&DestLinkType=FullRecord&DestApp=WOS_CPL
UR - https://www.mendeley.com/catalogue/3854d4eb-50ca-348e-a572-e7bcdf731d36/
UR - https://www.scopus.com/pages/publications/105035660380
U2 - 10.1021/acs.jced.5c00421
DO - 10.1021/acs.jced.5c00421
M3 - Article
SN - 0021-9568
VL - 71
SP - 1541
EP - 1562
JO - Journal of Chemical and Engineering Data
JF - Journal of Chemical and Engineering Data
IS - 4
ER -