Characterization of commercial membranes for non-aqueous vanadium redox flow battery

KW Sung, SH Shin, SH Moon - Korean Chemical Engineering …, 2013 - koreascience.kr
KW Sung, SH Shin, SH Moon
Korean Chemical Engineering Research, 2013koreascience.kr
Membrane characterization methods for aqueous redox flow batteries aqueous RFBs were
modified for non-aqueous RFBs. The modified characterization methods, such as ion
exchange capacity, transport number, permeability and single cell test, were carried out to
evaluate commercial membranes in non-aqueous electrolyte. It was found that columbic
efficiency and energy efficiency in a single cell test were dependent on the ion selectivity of
commercial anion exchange membranes. Neosepta AHA anion exchange membrane …
Abstract
Membrane characterization methods for aqueous redox flow batteries aqueous RFBs were modified for non-aqueous RFBs. The modified characterization methods, such as ion exchange capacity, transport number, permeability and single cell test, were carried out to evaluate commercial membranes in non-aqueous electrolyte. It was found that columbic efficiency and energy efficiency in a single cell test were dependent on the ion selectivity of commercial anion exchange membranes. Neosepta AHA anion exchange membrane showed the anion transport number of 0.81, which is a relatively low ion selectivity in non-aqueous electrolyte, however, exhibited 92% of coulombic efficiency and 86% of energy efficiency in a single cell test. It was also found that a porous membrane without ion selectivity is suitable for a non-aqueous redox flow battery at a high current density.
koreascience.kr
以上显示的是最相近的搜索结果。 查看全部搜索结果