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Experimental and theoretical development of a PEM electrolyzer model applied to energy storage systems

机译:用于储能系统的PEM电解器模型的实验和理论开发

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Electrolyzers have been pointed out as a promising technology for use in energy storage applications. Basically, electrolyzers convert electrical energy to electrochemical energy, which stays encapsulated in diatomic hydrogen molecule for posterior use in fuel cells, which convert the electrochemical energy back to electrical energy. The main advantages of the electrolysis process are the zero-emission of greenhouse gases, the use of water as the source of hydrogen, and the high efficiency in energy conversion. Electrolyzers can be fed by the grid or by renewable sources such as solar and wind. In both cases a power converter is necessary to conditioning the electrical energy in order to deliver a clean DC current to the electrolyzer. In this context, this work shows a modeling of a PEM (proton exchange membrane) electrolyzer intending its use in conjunction with power converters. The main losses in such electrolyzer are modeled and it is shown the influence of the current ripple in the electrolyzer behavior and efficiency.
机译:电解槽已被指出是一种用于能量存储应用的有前途的技术。基本上,电解器将电能转换为电化学能,然后将其保持封装在双原子氢分子中,以便在燃料电池中后期使用,从而将电化学能转换回电能。电解过程的主要优点是温室气体的零排放,使用水作为氢源以及高效的能量转换。电解槽可以由电网或可再生能源(例如太阳能和风能)供电。在这两种情况下,都需要功率转换器来调节电能,以便将纯净的直流电流输送到电解槽。在这种情况下,这项工作显示了打算与电源转换器一起使用的PEM(质子交换膜)电解槽的建模。对这种电解槽中的主要损耗进行了建模,并显示了电流纹波对电解槽性能和效率的影响。

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