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Effect of start-stop cycle on Direct Ethanol Fuel Cell for transportation purpose

机译:起动停止周期对运输目的直接乙醇燃料电池的影响

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Energy has become fundamental human needs throughout the world. One form of renewable energy as an alternative fuel is hydrogen fuel cell. Fuel cell is an electrochemical device that can convert chemical energy directly into electrical energy and heat with high efficiency and a low negative impact on the environment. Direct Ethanol Fuel Cell (DEFC) is one type of fuel cell that can utilize ethanol derived from biomass. Studies have shown that addition of sodium hydroxide is able to improve the performance of DEFC. However, the effect of pH in the fuel cell has not been studied. In addition, application of DEFC always works with start and stop cycle, which may affect its durability. This study focused on the endurance test of DEFC fueled with synthetic bioethanol influenced by start-stop cycles in various pH (6???8). Constant load of 1 and 2 mA/cm2 were given. The performance of DEFC was analyzed using electrochemical characterization methods, such as the Open Circuit Potential and Potentiodynamic. Physical characterization using Scanning Electron Microscopy (SEM). The Results shown ethanol variation pH 8 produce best power density than the others after repeated cycles on a certain constant load. The addition of sodium hydroxide push electro-oxidation reaction perfectly takes place. Degradation phenomenon occurred particularly detachment catalyst that affected performance of DEFC.
机译:能源已成为全世界的基本人类需求。作为替代燃料的一种形式可再生能量是氢燃料电池。燃料电池是一种电化学装置,可以将化学能量直接转换为电能和热量,高效,对环境的低负面影响。直接乙醇燃料电池(DEFC)是一种燃料电池,可利用衍生自生物质的乙醇。研究表明,加入氢氧化钠能够改善DEFC的性能。然而,尚未研究pH在燃料电池中的pH的效果。此外,DEFC的应用始终适用于开始和停止周期,这可能会影响其耐用性。本研究专注于DEFC的耐久性试验,通过各种pH(6 ??? 8)的开始 - 停止循环影响的合成生物乙醇。给出了1和2mA / cm2的恒定负载。使用电化学表征方法分析DEFC的性能,例如开路电位和电位动力学。使用扫描电子显微镜(SEM)的物理特征。所示结果显示乙醇变化pH8产生比在一定恒定载荷上的重复循环后的最佳功率密度。加入氢氧化钠推动电氧化反应完美发生。脱离现象特别是脱离催化剂,其影响DEFC的性能。

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