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Modelling And Analysis Of A Direct Ascorbic Acid Fuel Cell

机译:直接抗坏血酸燃料电池的建模与分析

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L-Ascorbic acid (AA), also known as vitamin C, is an environmentally-benign and biologically-friendly compound that can be used as an alternative fuel for direct oxidation fuel cells. While direct ascorbic acid fuel cells (DAAFCs) have been studied experimentally, modelling and simulation of these devices have been overlooked. In this work, we develop a mathematical model to describe a DAAFC and validate it with experimental data. The model is formulated by integrating the mass and charge balances, and model parameters are estimated by best-fitting to experimental data of current-voltage curves. By comparing the transient voltage curves predicted by dynamic simulation and experiments, the model is further validated. Various parameters that affect the power generation are studied by simulation. The cathodic reaction is found to be the most significant determinant of power generation, followed by fuel feed concentration and the mass-transfer coefficient of ascorbic acid. These studies also reveal that the power density steadily increases with respect to the fuel feed concentration. The results may guide future development and operation of a more efficient DAAFC.
机译:L-抗坏血酸(AA),也称为维生素C,是一种对环境无害且对生物友好的化合物,可用作直接氧化燃料电池的替代燃料。尽管已经对直接抗坏血酸燃料电池(DAAFC)进行了实验研究,但这些设备的建模和仿真却被忽略了。在这项工作中,我们开发了描述DAAFC的数学模型,并用实验数据对其进行了验证。通过整合质量和电荷平衡来制定模型,并通过最适合电流-电压曲线的实验数据来估算模型参数。通过比较动态仿真和实验预测的瞬态电压曲线,进一步验证了该模型。通过仿真研究了影响发电的各种参数。发现阴极反应是发电的最重要决定因素,其次是燃料进料浓度和抗坏血酸的传质系数。这些研究还表明,功率密度相对于燃料进料浓度稳定增加。结果可能指导未来开发和运行更有效的DAAFC。

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