Article ID Journal Published Year Pages File Type
1276925 International Journal of Hydrogen Energy 2012 7 Pages PDF
Abstract

Despite serious methanol crossover issues in Direct Methanol Fuel Cells (DMFCs), the use of high-concentration methanol fuel is highly demanded to improve the energy density of passive fuel DMFC systems for portable applications. In this paper, the effects of a hydrophobic anode micro-porous layer (MPL) and cathode air humidification are experimentally studied as a function of the methanol-feed concentration. It is found in polarization tests that the anode MPL dramatically influences cell performance, positively under high-concentration methanol-feed but negatively under low-concentration methanol-feed, which indicates that methanol transport in the anode is considerably altered by the presence of the anode MPL. In addition, the experimental data show that cathode air humidification has a beneficial effect on cell performance due to the enhanced backflow of water from the cathode to the anode and the subsequent dilution of the methanol concentration in the anode catalyst layer. Using an advanced membrane electrode assembly (MEA) with the anode MPL and cathode air humidification, we report that the maximum power density of 78 mW/cm2 is achieved at a methanol-feed concentration of 8 M and cell operating temperature of 60 °C. This paper illustrates that the anode MPL and cathode air humidification are key factors to successfully operate a DMFC with high-concentration methanol fuel.

► We studied the effects of a hydrophobic micro-porous layer and cathode air humidification. ► We design and fabricate novel MPL-coated MEAs that can operate with highly concentrated methanol fuel. ► Anode MPL retards the rate of methanol transport in the anode. ► Anode MPL plays a key role in controlling methanol transport in an MEA. ► The effect of cathode air humidification is influential for high concentrated methanol fuel cell.

Related Topics
Physical Sciences and Engineering Chemistry Electrochemistry
Authors
, , , , ,