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The Simultaneous Uses of the Direct-Mode Bioorganic Fuel Cell and the Function Generator for the Enhancement of the Glucose Electro-chemical Oxidation

机译:直接模式生物有机燃料电池和函数发生器同时用于增强葡萄糖电化学氧化的用途

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In this study a test of the direct-mode bioorganic fuel cell (DMBFC) in which the fuel and the alkalineo electrolyte are mixed with each other at two temperatures of 20 and 35 C are carried out. The direct- mode bioorganic fuel cell is exposed to an externally generated electromagnetic field withsimultaneous discharging in order to split the fuel molecule before the electrochemical oxidation at thetwo operation temperatures. The current-voltage characteristics are measured and analyzed. The liquidphase of the fuel-electrolyte concentration of the glucose was analysed both before and after theelectrochemical tests at the operation temperature 20 oC. The aim is to continue with the development-2 of the direct-mode glucose fuel cell by increasing the power density range by several mWcm . Thistype of the fuel cell with glucose as a fuel has increased to the specific capacity levels of 120.8 ando o 132.7 Ah / kg glucose at the temperatures of 20 C and 35 C, respectively.
机译:在这项研究中,对直接模式生物有机燃料电池(DMBFC)进行了测试,其中燃料和碱性电解质在20和35 C的两个温度下相互混合。直接模式生物有机燃料电池在同时放电的情况下暴露于外部产生的电磁场,以便在两个操作温度下在电化学氧化之前分裂燃料分子。测量并分析了电流-电压特性。在20 oC的工作温度下进行电化学测试之前和之后,都对葡萄糖的燃料电解质浓度的液相进行了分析。目的是通过将功率密度范围增加几mWcm来继续进行直接模式葡萄糖燃料电池的开发2。在20℃和35℃的温度下,这种以葡萄糖为燃料的燃料电池的比容量水平分别增加到120.8和132.7Ah / kg葡萄糖。

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