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Can fuel cell micro-CHP justify the hydrogen gas grid? Operating experience from a UK domestic retrofit

机译:燃料电池微型CHP能证明氢气网格合理吗?英国国内改造的运营经验

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Fuel cell based micro combined heat and power (micro CHP) has been the subject of numerous simulation studies. We report on actual practical performance of a proton exchange membrane fuel cell (PEMFC) micro CHP in a UK dwelling over the 2017-18 heating season and compare its performance with a Stirling engine micro CHP which it replaced. Results show that the PEMFC micro CHP achieves a much higher annual electricity output over a year, with household self-consumption and operating economics dependent on electric vehicle charging. Empirical models derived from this operating experience show that the value of this technology is less sensitive to building parameters, occupancy, and climate change when compared to engine-based micro CHP. We consider the potential role of this technology in the decarbonisation of heat, and highlight the benefit of reliable electricity generation injected into low voltage distribution to mitigate winter demand peaks from heat pumps. A comparative analysis of the primary energy efficiency of different methods of meeting domestic energy demand using natural gas with carbon capture shows that a mixed solution to decarbonisation of heat, combining heat pumps, PEMFC micro CHP, and hydrogen boilers, should not degrade energy efficiency substantially by comparison with an all-electric solution and could be more acceptable to consumers. (C) 2019 Elsevier B.V. All rights reserved.
机译:基于燃料电池的微型热电联产(微型CHP)已成为众多模拟研究的主题。我们报告了2017-18采暖季节在英国居住的质子交换膜燃料电池(PEMFC)微型CHP的实际实用性能,并将其性能与替换的斯特林发动机微型CHP进行了比较。结果表明,PEMFC微型热电联产在一年内可实现更高的年发电量,家庭自用和运营经济性取决于电动汽车的充电。从这种操作经验中得出的经验模型表明,与基于引擎的微型CHP相比,该技术的价值对建筑参数,占用率和气候变化不太敏感。我们考虑了该技术在热量脱碳中的潜在作用,并强调了将可靠的发电量注入低压配电的好处,以缓解热泵带来的冬季需求高峰。对使用天然气和碳捕获来满足家庭能源需求的不同方法的一次能源效率的比较分析表明,将热泵,PEMFC微型热电联产和制氢锅炉结合使用的混合热脱碳解决方案不会显着降低能源效率与全电解决方案相比,可能更受消费者欢迎。 (C)2019 Elsevier B.V.保留所有权利。

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