Effect of hydrothermal carbonization temperature on pH, dissociation constants, and acidic functional groups on hydrochar from cellulose and wood N Saha, A Saba, MT Reza Journal of Analytical and Applied Pyrolysis 137, 138-145, 2019 | 169 | 2019 |
Co-Hydrothermal Carbonization of coal-biomass blend: Influence of temperature on solid fuel properties A Saba, P Saha, MT Reza Fuel processing technology 167, 711-720, 2017 | 95 | 2017 |
Techno-economic assessment of co-hydrothermal carbonization of a coal-Miscanthus blend A Saba, K McGaughy, MT Reza Energies 12 (4), 630, 2019 | 56 | 2019 |
Hydrothermal carbonization of various paper mill sludges: An observation of solid fuel properties N Saha, A Saba, P Saha, K McGaughy, D Franqui-Villanueva, WJ Orts, ... Energies 12 (5), 858, 2019 | 46 | 2019 |
Technoeconomic analysis of co-hydrothermal carbonization of coal waste and food waste S Mazumder, P Saha, K McGaughy, A Saba, MT Reza Biomass Conversion and Biorefinery 12, 39-49, 2022 | 31 | 2022 |
Hydrothermal liquefaction of loblolly pine: Effects of various wastes on produced biocrude A Saba, B Lopez, JG Lynam, MT Reza ACS omega 3 (3), 3051-3059, 2018 | 31 | 2018 |
Binder-free torrefied biomass pellets: significance of torrefaction temperature and pelletization parameters by multivariate analysis A Saba, N Saha, KC Williams, CJ Coronella, MT Reza Biomass Conversion and Biorefinery, 1-9, 2020 | 11 | 2020 |
Effect of supercritical water temperature and Pd/C catalyst on upgrading fuel characteristics of gumweed-derived solvent-extracted biocrude N Saha, A Saba, K McGaughy, MT Reza Biomass Conversion and Biorefinery, 1-8, 2022 | 5 | 2022 |
Synergistic effects of hydrothermally treating coal-biomass blend A Saba Ohio University, 2019 | 2 | 2019 |