Huang, Q.; Cabral, N.M.; Tong, X.; Schafranski, A.S.; Kennepohl, P.; Hill, J.M.
Preparation of Carbon-Based Solid Acid Catalyst from High-Sulfur Petroleum Coke with Nitric Acid and Ball Milling, and a Computational Evaluation of Inherent Sulfur Conversion Pathways. Molecules 2023, 28, 7051.
https://doi.org/10.3390/molecules28207051
AMA Style
Huang Q, Cabral NM, Tong X, Schafranski AS, Kennepohl P, Hill JM.
Preparation of Carbon-Based Solid Acid Catalyst from High-Sulfur Petroleum Coke with Nitric Acid and Ball Milling, and a Computational Evaluation of Inherent Sulfur Conversion Pathways. Molecules. 2023; 28(20):7051.
https://doi.org/10.3390/molecules28207051
Chicago/Turabian Style
Huang, Qing, Natalia M. Cabral, Xing Tong, Annelisa S. Schafranski, Pierre Kennepohl, and Josephine M. Hill.
2023. "Preparation of Carbon-Based Solid Acid Catalyst from High-Sulfur Petroleum Coke with Nitric Acid and Ball Milling, and a Computational Evaluation of Inherent Sulfur Conversion Pathways" Molecules 28, no. 20: 7051.
https://doi.org/10.3390/molecules28207051
APA Style
Huang, Q., Cabral, N. M., Tong, X., Schafranski, A. S., Kennepohl, P., & Hill, J. M.
(2023). Preparation of Carbon-Based Solid Acid Catalyst from High-Sulfur Petroleum Coke with Nitric Acid and Ball Milling, and a Computational Evaluation of Inherent Sulfur Conversion Pathways. Molecules, 28(20), 7051.
https://doi.org/10.3390/molecules28207051