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Exact(14)
With unmodified graphite felt (the control anode material) as anode, the maximal power density obtained was 9.5 mW m−2.
ANOVA (analysis of variance) analyses are used to compute the effects and the contributions of the various factors to the fuel cell maximal power density.
The maximal power density produced of 4 mW m−2 was lower than those reported previously with marine MFC using graphite electrodes.
When both the interconnector and electrolyte gap lengths are fixed, the cell module with 5 mm long anode gives the maximal power density for the SS-SOFC.
The single cell equipped with the Pd@GN catalysts exhibits a maximal power density of 1.75 kW g−1 at 75°CC.
Further experimental investigation on four types of flow fields also confirmed that the DMFC with double-serpentine flow field structure exhibits a maximal power density at a variety of inlet velocities, which is in good agreement with the simulated results.
Similar(46)
maximum power density.
The maximal power densities were 9.1 and 28.3 W/m3 for MFCs using phenol and glucose phenol mixture as the fuel, respectively.
CCF, HCF and ACF have their surface oxygen-containing groups of 1.52, 0.8 and 0.45 mM m−2 and specific surface areas of 0.33, 0.65 and 1.19 m2 g−1, but yield their maximal power densities of 606, 858 and 990 mW m−2, respectively.
The maximal power densities of 1031 and 729 mW cm−2 in H2 and CH4 have been achieved for the electrolyte supported SOFC with LCFNb-SDC-Ni|SSZ (Sc0.2Zr0.8O2−δ)|LSM (La0.8Sr0.2MnO3) configuration at 850 °C, respectively.
It is found that the maximal power densities (Pmax) of the fabricated PCFC (174 and 308 mW cm−2 at 600 and 725 °C, respectively) are acceptable for an intermediate-temperature range of operation and comparable with those reported in literature.
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