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A study of hydrogen peroxide microfluidic fuel cells

机译:过氧化氢微流体燃料电池的研究

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This study investigated various effects, including reactant concentrations, volumetric flow rates and microchannel width, as well as the electrode distance, on the performance of microfluidic fuel cells employing hydrogen peroxide dissolved in alkaline and acid electrolytes as both fuel and oxidant, respectively. Three concentrations ranging from 0.1 M to 0.6 M and five volumetric flow rates ranging from 0.01 mL/min to 1.0 mL/min were tested in the present study for cell performance measurement and discussion. Three microfluidic fuel cells were tested here. Two of them have rectangular microchannel of 0.5 mm and 1.0 mm in width with electrode distance of 0.4 mm. An additional 0.5-mm-wide microchannel fuel cell was also tested with a shorter electrode distance of 0.2 mm. Results show that cell performed at either larger volumetric flow or with smaller microchannel width usually had higher current output at a given cell voltage. The highest cell output at 0.1 V and 0.1 M among the present cells was approximately 100 mA/cm2 produced by the cell whose microchannel width and electrode distance are 0.5 mm and 0.2 mm, respectively. However, with a higher reactant concentration of 0.6 M, the highest cell output at 0.1 V and 0.1 M among the present cells was 2.5 times higher than the abovementioned value, namely 250 mA/cm2, produced by the cell with microchannel width and electrode distance of 0.5 mm and 0.4 mm, respectively.
机译:这项研究调查了各种影响,包括反应物浓度,体积流量和微通道宽度以及电极距离,分别对溶解在碱性和酸性电解质中的过氧化氢作为燃料和氧化剂的微流体燃料电池的性能产生影响。在本研究中测试了三种浓度从0.1 M到0.6 M的浓度和五个体积流速从0.01 mL / min到1.0 mL / min的浓度,以进行电池性能测量和讨论。在此测试了三个微流体燃料电池。它们中的两个具有0.5毫米和1.0毫米宽度的矩形微通道,电极距离为0.4毫米。还测试了另一个0.5毫米宽的微通道燃料电池,电极距离更短,仅为0.2毫米。结果表明,在给定的电池电压下,以较大的体积流量或较小的微通道宽度执行的电池通常具有较高的电流输出。在本电池中,在0.1V和0.1M下的最高电池输出是由微通道宽度和电极距离分别为0.5mm和0.2mm的电池产生的大约100mA / cm 2。然而,当反应物浓度为0.6 M时,本电池中在0.1 V和0.1 M时的最高电池输出比上述具有微通道宽度和电极距离的电池产生的上述值(即250 mA / cm2)高2.5倍。分别为0.5毫米和0.4毫米。

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