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Combined Cooling Heating and Power (CCHP) Generation in a Fuel Cell-Heat Pump Hybrid System

机译:燃料电池-热泵混合动力系统中的冷热电联产(CCHP)

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摘要

Fuel cells enable clean and silent electric power production in smaller units with efficiencies reached only in MW-facilities by central power plants. The waste heat of the fuel cell can easily be utilized for residential heating. Membrane steam reformers purify hydrogen without cooling the reactor's effluent; only permeated hydrogen has to be cooled down prior to the electro-oxidation at the fuel cell's anode. Both the absorption and compression heat pumps may be utilized for utilizing waste heat and electricity of the fuel cell in heating and cooling applications. The following work contains scenarios for different coefficient of heating performance for both types of heat pumps. According to the net electric efficiency of the fuel cell and the coefficient of performance of the heat pumps, an overall coefficient of performance of the CCHP system is obtained. Such a CCHP system can contribute to a reduction of CO_2 emissions in residential heating.
机译:燃料电池可在较小的单元中实现清洁,安静的电力生产,而中央电厂仅在兆瓦级设施中才能达到其效率。燃料电池的废热可以容易地用于住宅取暖。膜蒸汽重整器可在不冷却反应器流出物的情况下净化氢气。在燃料电池阳极进行电氧化之前,只需要冷却渗透的氢气即可。吸收式和压缩式热泵均可用于在加热和冷却应用中利用燃料电池的废热和电能。以下工作包含两种热泵的不同加热性能系数的方案。根据燃料电池的净电​​效率和热泵的性能系数,可以获得CCHP系统的总体性能系数。这种CCHP系统可有助于减少住宅采暖中的CO_2排放。

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