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Passive DMFC system using a proton conductive hydrocarbon membrane

机译:使用质子传导烃膜的无源DMFC系统

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摘要

A passive direct methanol fuel cell(DMFC)system was fabricated based on a sulfonated polyimide-silica nanocomposite(SPI-SiCVl)membrane with high proton conductivity,low methanol(MeOH)permeability,and thin thickness compared to Nation 117 as a reference sample.The electrochemical performance of the passive systems were highly affected by both MeOH permeation through the membranes and MeOH fuel concentration.Electrochemical performance was improved as the MeOH concentration increased up to 3 M.For high concentrations greater than 5 M MeOH,highly-permeated MeOH led to a severe poisoning on the Pt catalyst surface,which resulted in a rapid reduction in the activation polarization region.SPI-SiO2-1 acted as a better MeOH barrier than Nafion~R 117.The maximum power density of a passive DMFC based on SPI-SiO2-1 was 140% greater than Nafion~R 117,indicating that SPI-SiO2-1 may be an alternative proton exchange membrane for passive DMFC operated under high MeOH concentrations with high energy density.
机译:以质子传导率高,甲醇(MeOH)渗透率低,厚度薄的磺化聚酰亚胺-二氧化硅纳米复合材料(SPI-SiCVl)膜为基础,与Nation 117相比,制备了一种被动式直接甲醇燃料电池(DMFC)系统。膜上的MeOH渗透和MeOH燃料浓度都对被动系统的电化学性能有很大影响。随着MeOH浓度增加至3 M,电化学性能得到改善。对于大于5 M的MeOH,高渗透率的MeOH导致导致Pt催化剂表面严重中毒,导致活化极化区域迅速减小.SPI-SiO2-1比Nafion〜R 117具有更好的MeOH阻挡层。基于SPI的无源DMFC的最大功率密度-SiO2-1比Nafion〜R 117大140%,表明SPI-SiO2-1可能是在高d甲醇浓度和高MeOH浓度下运行的被动DMFC的替代质子交换膜感性。

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