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Role of fuel cell based micro-cogeneration in low carbon heating

机译:基于燃料电池的微型热电联产在低碳加热中的作用

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摘要

Micro-cogeneration, otherwise known as micro-combined heat and power (micro-CHP), is an emerging class of technologies designed to replace conventional home space heating and hot water systems. In addition to meeting thermal needs, they also provide electricity for on-site consumption or sale. The prime mover in a micro-CHP system can be based on a number of technologies: Stirling engine, internal combustion engine, Rankine cycle, or fuel cells. This article is concerned with the technology, techno-economics, and environmental credentials of the fuel cell-based systems, notably polymer electrolyte fuel cells and solid oxide fuel cells. It is demonstrated that these systems have a distinct advantage over their engine-based counterparts in that they have a low heat-to-power ratio, allowing them to operate more consistently over the year and thus achieve higher utilization. It is also shown that they could form an important part of a future portfolio of low carbon heating technologies. The challenge now lies with fuel cell developers and integrators to demonstrate their durability and to reduce capital costs.
机译:微型热电联产,也称为微型热电联产(micro-CHP),是一类新兴的技术,旨在取代传统的家庭供暖和热水系统。除了满足热量需求外,它们还为现场消耗或销售提供电力。微型热电联产系统中的原动机可以基于多种技术:斯特林发动机,内燃机,朗肯循环或燃料电池。本文关注基于燃料电池的系统(尤其是聚合物电解质燃料电池和固体氧化物燃料电池)的技术,技术经济性和环境证明。事实证明,这些系统相对于基于引擎的系统具有明显的优势,因为它们的热电比低,因此一年中它们的运行更加稳定,从而实现了更高的利用率。还表明它们可以构成未来低碳加热技术产品组合的重要组成部分。现在的挑战在于燃料电池开发人员和集成商如何展示其耐用性并降低资本成本。

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