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A Study on the Water Splitting using Polymer Electrolyte Membrane for producing Hydrogen and Oxygen

机译:高分子电解质膜分解制氢和制氧的研究。

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Hydrogen is expected to be the clean and sustainable fuel as well as the most promising energy carrier.Water splitting using polymer electrolyte membrane have studied numerically and experimentally forproducing hydrogen and oxygen by electrolysis in conjunction with intermittent renewable energies. Inthis study, a control-oriented model for polymer electrolyte membrane electrolyzer are developed tocalculate mole balance and electrochemical reaction between at the anode and at the cathode. Numericalsimulations are performed using MATLAB ? and Simulink ? software packages. The electrolyzer teststation equipped with flow, temperature and power controllers are manufactured to evaluate the flowand temperature characteristics of circulating water, the uniformity of the pressure over the cell area,then enhance the performance of polymer electrolyte membrane electrolyzer. DC power supply cansimulate experimentally the power of renewable energies. The numerical and experimental results arecapable of characterizing the flow and temperature characteristics of circulating water and enhancingthe performance of polymer electrolyte membrane electrolyzer, then developing the highly efficientcontrol strategy. This polymer electrolyte membrane electrolyzer will be combined with polymerelectrolyte membrane fuel cell to establish a regenerative fuel cell with the integrated control system.
机译:氢有望成为清洁,可持续的燃料以及最有前途的能源载体。使用高分子电解质膜进行水分解的数值研究和实验研究是通过电解结合间歇性可再生能源生产氢和氧。在这项研究中,建立了面向控制的高分子电解质膜电解槽模型,以计算阳极和阴极之间的摩尔平衡和电化学反应。使用MATLAB进行数值模拟。和Simulink?软件包。制造配有流量,温度和功率控制器的电解槽测试站,以评估循环水的流量和温度特性,整个单元区域内压力的均匀性,从而增强聚合物电解质膜电解槽的性能。直流电源可以通过实验模拟可再生能源的电力。数值和实验结果能够表征循环水的流量和温度特性,提高聚合物电解质膜电解槽的性能,从而开发出高效的控制策略。该聚合物电解质膜电解槽将与聚合物电解质膜燃料电池组合在一起,以建立带有集成控制系统的可再生燃料电池。

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