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Vasudev Haribal, Ph.D.
Vasudev Haribal, Ph.D.
Susteon Inc., North Carolina State University
Verified email at susteon.com - Homepage
Title
Cited by
Cited by
Year
Perovskite nanocomposites as effective CO2-splitting agents in a cyclic redox scheme
J Zhang, V Haribal, F Li
Science advances 3 (8), e1701184, 2017
1212017
Oxidative dehydrogenation of ethane under a cyclic redox scheme–Process simulations and analysis
VP Haribal, LM Neal, F Li
Energy 119, 1024-1035, 2017
812017
Manganese silicate based redox catalysts for greener ethylene production via chemical looping–oxidative dehydrogenation of ethane
S Yusuf, L Neal, V Haribal, M Baldwin, HH Lamb, F Li
Applied Catalysis B: Environmental 232, 77-85, 2018
672018
Intensification of ethylene production from naphtha via a redox oxy-cracking scheme: Process simulations and analysis
VP Haribal, Y Chen, L Neal, F Li
Engineering 4 (5), 714-721, 2018
622018
Iron‐Doped BaMnO3 for Hybrid Water Splitting and Syngas Generation
VP Haribal, F He, A Mishra, F Li
ChemSusChem 10 (17), 3402-3408, 2017
542017
Mixed iron-manganese oxides as redox catalysts for chemical looping–oxidative dehydrogenation of ethane with tailorable heat of reactions
S Yusuf, V Haribal, D Jackson, L Neal, F Li
Applied Catalysis B: Environmental 257, 117885, 2019
532019
Modified Ceria for “Low‐Temperature” CO2 Utilization: A Chemical Looping Route to Exploit Industrial Waste Heat
VP Haribal, X Wang, R Dudek, C Paulus, B Turk, R Gupta, F Li
Advanced Energy Materials 9 (41), 1901963, 2019
492019
A tailored multi-functional catalyst for ultra-efficient styrene production under a cyclic redox scheme
X Zhu, Y Gao, X Wang, V Haribal, J Liu, LM Neal, Z Bao, Z Wu, H Wang, ...
Nature communications 12 (1), 1329, 2021
482021
Substituted SrFeO 3 as robust oxygen sorbents for thermochemical air separation: correlating redox performance with compositional and structural properties
E Krzystowczyk, X Wang, J Dou, V Haribal, F Li
Physical Chemistry Chemical Physics 22 (16), 8924-8932, 2020
462020
Intensified ethylene production via chemical looping through an exergetically efficient redox scheme
LM Neal, VP Haribal, F Li
IScience 19, 894-904, 2019
442019
Highly efficient reduction of O2-containing CO2 via chemical looping based on perovskite nanocomposites
X Liao, H Xiao, V Haribal, X Shi, Z Huang, L Zhu, K Li, F Li, H Wang, ...
Nano Energy 78, 105320, 2020
372020
Chemical looping air separation using a perovskite-based oxygen sorbent: system design and process analysis
E Krzystowczyk, V Haribal, J Dou, F Li
ACS Sustainable Chemistry & Engineering 9 (36), 12185-12195, 2021
312021
Mixed conductive composites for ‘low-temperature’thermo-chemical CO 2 splitting and syngas generation
Q Jiang, Y Gao, VP Haribal, H Qi, X Liu, H Hong, H Jin, F Li
Journal of materials chemistry A 8 (26), 13173-13182, 2020
222020
Computational discovery of metal oxides for chemical looping hydrogen production
J Rojas, V Haribal, IH Jung, A Majumdar
Cell Reports Physical Science 2 (3), 2021
152021
Ethane to liquids via a chemical looping approach–Redox catalyst demonstration and process analysis
L Brody, L Neal, V Haribal, F Li
Chemical Engineering Journal 417, 128886, 2021
142021
CexZr1–xO2-Supported CrOx Catalysts for CO2-Assisted Oxidative Dehydrogenation of Propane─Probing the Active Sites and Strategies for Enhanced …
J Dou, J Funderburg, K Yang, J Liu, D Chacko, K Zhang, AP Harvey, ...
ACS Catalysis 13 (1), 213-223, 2022
132022
Modular‐scale ethane to liquids via chemical looping oxidative dehydrogenation: Redox catalyst performance and process analysis
L Neal, V Haribal, J McCaig, HH Lamb, F Li
Journal of Advanced Manufacturing and Processing 1 (1-2), e10015, 2019
102019
Technoeconomics and carbon footprint of hydrogen production
J Rojas, S Zhai, E Sun, V Haribal, S Marin-Quiros, A Sarkar, R Gupta, ...
International Journal of Hydrogen Energy 49, 59-74, 2024
92024
Non-thermal plasma-assisted steam methane reforming for electrically-driven hydrogen production
F Geng, VP Haribal, JC Hicks
Applied Catalysis A: General 647, 118903, 2022
82022
Intensified ethylene production via chemical looping through an exergetically efficient redox scheme. iScience 2019, 19, 894–904
LM Neal, VP Haribal, F Li
DOI, 0
7
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