Redox Flow Batteries

Tuesday, 7 October 2014: 07:40-12:00
Sunrise, 2nd Floor, Galactic Ballroom 4 (Moon Palace Resort)
Chairs:
Robert F. Savinell and Jesse S. Wainright
07:40
19
Recent Advances in Inexpensive Aqueous Batteries for Large Scale Electrical Energy Storage
S. R. Narayanan, A. K. Manohar, S. Malkhandi, B. Yang, C. Yang, P. Trinh, L. Hoober-Burkhardt, K. M. Kim, and G. K. S. Prakash (University of Southern California)
08:10
20
Porous Conducting Membranes and Their Application in Vanadium Flow Battery
X. Li and H. Zhang (Dalian Institute of Chemical Physics, Chinese Academy of Sciences)
08:30
21
A Three-Dimensional Model for Thermal Analysis in a Vanadium Flow Battery
Q. Zheng (Dalian Institute of Chemical Physics,Chinese Academy of Sciences), H. Zhang, X. Li (Dalian Institute of Chemical Physics, Chinese Academy of Sciences), X. Ma (Rongke Power), G. Ning (School of Chemical Engineering, Dalian University of Technology), and F. Xing (Dalian Institute of Chemical Physics, Chinese Academy of Sciences)
08:50
22
Factors Affecting Spectroscopic State-of-Charge Measurement
N. Quill, M. O'Mahony (Department of Physics & Energy, and Materials & Surface Science Institute, University of Limerick, Ireland), R. P. Lynch (University of Limerick), X. Gao (Department of Physics & Energy, and Materials & Surface Science Institute, University of Limerick, Ireland, University of Kentucky), D. Oboroceanu, C. Lenihan, C. Petchsingh, D. Ní Eidhin (Department of Physics & Energy, and Materials & Surface Science Institute, University of Limerick, Ireland), and D. N. Buckley (University of Limerick)
09:10
23
Study of Loss Mechanisms in a Regenerative Hydrogen Vanadium Fuel Cell
H. Hewa Dewage, V. Yufit, B. Wu, F. Tariq, S. J. Cooper, and N. P. Brandon (Imperial College London)
09:30
Break
10:00
24
Recent Advances in Electrode Design for an All-Iron Redox Flow Battery
K. L. Hawthorne, T. J. Petek, N. C. Hoyt, J. S. Wainright, and R. F. Savinell (Case Western Reserve University)
10:20
25
10:40
26
Performance Evaluation of the Non-Aqueous Vanadium Redox Flow Battery with Different Separators
I. L. Escalante-Garcia, J. S. Wainright (Case Western Reserve University), L. T. Thompson (University of Michigan), and R. F. Savinell (Case Western Reserve University)
11:00
27
Microfluidic Redox Battery with Symmetric, Dual-Pass Architecture
O. Ibrahim (School of Mechatronic Systems Engineering, Simon Fraser University), M. A. Goulet, and E. Kjeang (Simon Fraser University)
11:20
28
Low-Temperature, High Energy Density Non-Aqueous Redox Flow Battery
T. Herr, P. Fischer, J. Tübke, K. Pinkwart, and P. Elsner (Fraunhofer Institute for Chemical Technology ICT)
11:40
29
Surfactant for Enhanced Rheological, Electrical and Electrochemical Performance of Suspensions for Semi-Solid Redox Flow Batteries and Supercapacitors
L. Madec (Institut des Matériaux Jean Rouxel (IMN), Nantes University, CNRS, Nantes, France. Réseau sur le Stockage Electrochimique de l’Energie (RS2E), FR CNRS 3459, France), M. Youssry (Materials Science and Technology Program, College of Arts and Sciences, Qatar University), M. Cerbelaud (Institut des Matériaux Jean Rouxel (IMN), University of Nantes, CNRS, Nantes, France. Réseau sur le Stockage Electrochimique de l’Energie (RS2E), FR CNRS 3459, France), P. Soudan (Institut des Matériaux Jean Rouxel (IMN), Nantes University, CNRS, Nantes, France. Réseau sur le Stockage Electrochimique de l’Energie (RS2E), FR CNRS 3459, France), D. Guyomard (Institut des Matériaux Jean Rouxel (IMN), Nantes University, CNRS), and B. Lestriez (Institut des Matériaux Jean Rouxel (IMN), University of Nantes, CNRS, Nantes, France. Réseau sur le Stockage Electrochimique de l’Energie (RS2E), FR CNRS 3459, France)