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CO_2 discharge characteristic of PEM-FC/hydrogen-gas-engine hybrid cogeneration

机译:PEM-FC /氢气-燃气混合热电联产的CO_2排放特性

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When introducing fuel cell cogeneration into an apartment house, operations in a low-load region that accord with load fluctuation occur frequently. The power generation efficiency of a fuel cell drops in a low-load region. Therefore, in order to keep energy costs low, it is necessary to introduce a method of improving power generation efficiency at the time of low load. Thus, in this paper, the hybrid cogeneration system (HCGS) that uses a hydrogen gas engine (NEG) and proton exchange membrane fuel cell (PEM-FC) together is proposed. The technology of controlling hydrogen concentration and improving the efficiency fall of gas engine at the time of low load is studied. In the gas engine, when hydrogen concentration is increased at the time of low load, the improvement of an exhaust cleanup and brake thermal efficiency is confirmed. So, the method of operating PEM-FC corresponding to a base load, and following NEG at load fluctuation and operating is proposed. There is a target of this study in proposing the energy system excellent in the power generation efficiency and the exhaust characteristic from low load to high load. In this paper, the capacity of fuel consumption, and carbon dioxide emissions are investigated by numerical analysis regarding the introduction of HCGS into apartment houses in Sapporo in Japan. The carbon dioxide emissions of HCGS are very advantageous. Especially HCGS is advantageous when operations in a low-load region occur frequently. For example, concerning the power-demand pattern of a house, when operations in a low-load region occur frequently, HCGS is especially advantageous. It is thought that fuel consumption conditions with little heat demand and the power generation efficiency of HCGS are more advantageous.
机译:当将燃料电池热电联产引入公寓时,经常发生在与负载波动相符的低负载区域中的操作。燃料电池的发电效率在低负荷区域下降。因此,为了保持较低的能源成本,有必要介绍一种在低负荷时提高发电效率的方法。因此,在本文中,提出了同时使用氢气发动机(NEG)和质子交换膜燃料电池(PEM-FC)的混合热电联产系统(HCGS)。研究了低负荷时控制氢气浓度和改善燃气发动机效率下降的技术。在燃气发动机中,当低负荷时氢浓度增加时,可以确认排气净化和制动热效率的提高。因此,提出了一种操作PEM-FC的方法,该方法对应于基本负载,并在负载波动时跟随NEG进行操作。本研究的目的是提出一种从低负荷到高负荷的发电效率和排气特性优异的能量系统。本文通过对日本札幌市将HCGS引入公寓房的数值分析来研究燃料消耗量和二氧化碳排放量。 HCGS的二氧化碳排放非常有利。当在低负载区域中的操作频繁发生时,尤其是HCGS是有利的。例如,关于房屋的电力需求模式,当在低负载区域中频繁发生操作时,HCGS特别有利。认为热需求少的燃料消耗条件和HCGS的发电效率更有利。

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