Taehwan Kim, Ph.D.
Affiliations: | 2013 | Civil Engineering | Purdue University, West Lafayette, IN, United States |
Area:
Civil Engineering, GeochemistryGoogle:
"Taehwan Kim"Parents
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Publications
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Panchmatia P, Kim T, Olek J. (2020) Effects of Air-Cooled Blast Furnace Slag Aggregate on Pore Solution Chemistry of Cementitious Systems Journal of Materials in Civil Engineering. 32: 4019317 |
Nguyen QD, Kim T, Castel A. (2020) Mitigation of alkali-silica reaction by limestone calcined clay cement (LC3) Cement and Concrete Research. 137: 106176 |
Kim T, Alnahhal MF, Nguyen QD, et al. (2019) Initial sequence for alkali-silica reaction: Transport barrier and spatial distribution of reaction products Cement & Concrete Composites. 104: 103378 |
Kim T, Moradian M, Ley MT. (2018) Dissolution and Leaching of Fly Ash in Nitric Acid Using Automated Scanning Electron Microscopy Advances in Civil Engineering Materials. 7: 291-307 |
Panchmatia P, Olek J, Kim T. (2018) The influence of air cooled blast furnace slag (ACBFS) aggregate on the concentration of sulfates in concrete’s pore solution Construction and Building Materials. 168: 394-403 |
Kim T, Olek J. (2016) The effects of lithium ions on chemical sequence of alkali-silica reaction Cement and Concrete Research. 79: 159-168 |
Kim T, Olek J, Jeong H. (2015) Alkali-silica reaction: Kinetics of chemistry of pore solution and calcium hydroxide content in cementitious system Cement and Concrete Research. 71: 36-45 |
Kim T, Olek J. (2015) Modeling of early age loss of lithium ions from pore solution of cementitious systems treated with lithium nitrate Cement and Concrete Research. 67: 204-214 |
Kim T, Olek J. (2014) Chemical sequence and kinetics of alkali-silica reaction part I. Experiments Journal of the American Ceramic Society. 97: 2195-2203 |
Kim T, Olek J. (2014) Chemical sequence and kinetics of alkali-silica reaction part II. A thermodynamic model Journal of the American Ceramic Society. 97: 2204-2212 |