화학공학소재연구정보센터
검색결과 : 14건
No. Article
1 High energy efficiency and high power density aluminum-air flow battery
Wen HJ, Liu ZS, Qiao J, Chen RH, Zhao RJ, Wu JC, Qiao GJ, Yang JH
International Journal of Energy Research, 44(9), 7568, 2020
2 Insights into all-vanadium redox flow battery: A case study on components and operational conditions
Monteiro R, Leiros J, Boaventura M, Mendes A
Electrochimica Acta, 267, 80, 2018
3 Polarization curve measurements combined with potential probe sensing for determining current density distribution in vanadium redox-flow batteries
Becker M, Bredemeyer N, Tenhumberg N, Turek T
Journal of Power Sources, 307, 826, 2016
4 Performance characterization of a vanadium redox flow battery at different operating parameters under a standardized test-bed system
Mohamed MR, Leung PK, Sulaiman MH
Applied Energy, 137, 402, 2015
5 Spatial thermal condition in aluminum reduction cells under influences of electrolyte flow
Cheung CY, Menictas C, Bao J, Skyllas-Kazacos M, Welch BJ
Chemical Engineering Research & Design, 100, 1, 2015
6 Optimal electrolyte flow distribution in hydrodynamic circuit of vanadium redox flow battery
Rudolph S, Schroder U, Bayanov RI, Blenke K, Bayanov IM
Journal of Electroanalytical Chemistry, 736, 117, 2015
7 Pulsating electrolyte flow in a full vanadium redox battery
Ling CY, Cao H, Chng ML, Han M, Birgersson E
Journal of Power Sources, 294, 305, 2015
8 Numerical investigation and thermodynamic analysis of the effect of electrolyte flow rate on performance of all vanadium redox flow batteries
Khazaeli A, Vatani A, Tahouni N, Panjeshahi MH
Journal of Power Sources, 293, 599, 2015
9 Enhanced performance of direct methanol fuel cells: a study on the combined effect of various supporting electrolytes, flow channel designs and operating temperatures
Kumar P, Dutta K, Kundu PP
International Journal of Energy Research, 38(1), 41, 2014
10 Hydrodynamic analysis of flow fields for redox flow battery applications
Latha TJ, Jayanti S
Journal of Applied Electrochemistry, 44(9), 995, 2014