Flow Batteries 1

Sunday, 1 October 2017: 08:30-12:10
Maryland D (Gaylord National Resort and Convention Center)
Chairs:
S. R. Narayan and Wei Wang
08:30
1
Conductivity of Vanadium Flow Battery (VFB) Catholytes: Dependence on Sulfur and Vanadium Concentration and Temperature
N. Quill, D. Oboroceanu, D. N. Buckley (Physics Dept., Bernal Institute, University of Limerick, Bernal Institute, University of Limerick, Ireland), and R. P. Lynch (Department of Physics, University of Limerick, Ireland, Dept. of Chem. Eng., Case Western Reserve University)
08:50
2
Passive Deposition of Carbon Nanoparticles for Robust Kinetic Enhancement in Vanadium Redox Flow Batteries
D. Aaron, S. Yeom, Y. Ashraf Gandomi, T. Ertugrul, K. Kihm, and M. M. Mench (University of Tennessee)
09:10
3
Direct Observation of Crossover and Current Distribution in All-Vanadium Redox Flow Batteries
Y. Ashraf Gandomi, T. Y. Ertugrul, J. T. Clement, D. Aaron, and M. M. Mench (University of Tennessee)
09:30
Break
09:50
4
Delineating Contributions from Vanadium Crossover and Electrode Degradation to Capacity Decay in Vanadium Redox Flow Batteries
M. C. Daugherty, Y. Ashraf Gandomi (University of Tennessee), A. Pezeshki (Oak Ridge National Laboratory), D. Aaron, and M. M. Mench (University of Tennessee)
10:10
5
Understanding Electrolyte Remixing As a Capacity Fade Mitigation Technique for Vanadium Redox Flow Batteries
N. H. Casco, N. Kourmanopoulos (University of Massachusetts Lowell), C. R. Dennison (École Polytechnique Fédérale de Lausanne), E. C. Kumbur (Drexel University), and E. Agar (University of Massachusetts Lowell)
10:50
7
Lower Overpotential of Vanadium Redox Flow Battery By Partially Mixed Carbon Nanofiber in the Electrode
H. Ishitobi, S. Sugawara, K. Oba, and N. Nakagawa (Gunma University)
11:10
8
Novel Obstructed Flow Field Designs for Improved Perfomance in Vanadium Redox Flow Batteries
B. Akuzum, N. Robinson (Drexel University), E. Agar (University of Massachusetts Lowell), and E. C. Kumbur (Drexel University)
11:30
9
Non-Perflourinated Ion Conducting Membranes with Internal Crosslinking Network for Vanadium Flow Batteries (VFBs)
Y. Zhao, Z. Yuan, X. Li, and H. Zhang (Dalian Institute of Chemical Physics)
11:50
10
Study of Transport in a Novel, Heteropoly Acid Hybrid Polymer Membrane Designed for Use in Flow Batteries
A. R. Motz, M. C. Kuo (Colorado School of Mines), A. Kusoglu, M. C. Tucker, A. Z. Weber (Lawrence Berkeley National Laboratory), G. M. Haugen (3M Fuel Cell Components Program, 3M), and A. M. Herring (Colorado School of Mines)