首页> 外文会议>International conference on fuel cell science, engineering and technology >GASIFICATION AND FUEL CELL INTEGRATION WITH BOTTOMING TURBINE CYCLE: PERFORMANCES OF A HYBRID PLANT FOR ELECTRICITY PRODUCTION
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GASIFICATION AND FUEL CELL INTEGRATION WITH BOTTOMING TURBINE CYCLE: PERFORMANCES OF A HYBRID PLANT FOR ELECTRICITY PRODUCTION

机译:与底涡轮机循环的气化和燃料电池集成:电力生产杂交厂的性能

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The increasing need of energy resources along with the growing environmental interest promote the creation of new concepts in the field of energy production and management strategies. The development of high temperature fuel cells, suitable for stationary energy production, is one of the most promising aspects, able to bring a significant change in the power generation scenario. One of the most important features for fuel cells is the potential coupling with advanced gasification systems, thus enabling the possibility of energy recovery from waste, RDF (Refuse Derived Fuel) and biomass. The gasification process transfers the energetic value of the original solid fuel to a gaseous product rich in hydrogen, carbon monoxide and dioxide, and other compounds. A post-gasification treatment removes tars, particulates, impurities and makes the gas suitable for power production in a fuel cell unit. In this work an example of an innovative plant for biomass utilization has been considered. The plant includes a gasification section and a Molten Carbonate Fuel Cell unit, coupled with a hot gas cleanup system. For gasification technology, a recent typology was considered involving an indirect heating system such as the Battelle process. Gaseous streams conveyed to the cell after the conditioning processes were considered. In order to achieve higher efficiencies, a bottoming cycle has been added. It comprises a turbine power plant integrated with the gasification and fuel cell lay-out.In the turbine cycle air is compressed in the operating pressure and internally heated by the waste heat of the fuel cell and of the gasification process. The expanded air is then used in the combustion reactor of the gasification system. The proposed plant allows high electric efficiency and high flexibility in choosing for air compression ratio and unit size; sensitivity analyses were performed.
机译:能源资源与不断增长的环境权益沿着增长的需求推动的能源生产和管理战略领域创造新的概念。高温燃料电池,适用于固定能源生产的发展,是最有前途的方面,能够带来发电方案一显著的变化之一。之一的用于燃料电池的最重要的特点是具有先进的气化系统的潜在的耦合,从而使从废物的能量回收,RDF(垃圾衍生燃料)和生物质的可能性。气化过程的原始固体燃料的能量值传送到气体产物富含氢气,一氧化碳和二氧化碳,以及其它化合物。甲后气化处理除去焦油,颗粒,杂质和使适合于在燃料电池单元的电力生产气体。在这项工作中的创新植物生物质利用的例子已经被考虑。所述植物包括气化部和熔融碳酸盐燃料电池单元,耦接与热气体净化系统。用于气化技术,最近的类型学被认为涉及间接加热系统,诸如巴特尔过程。调理过程被认为是后气流输送到细胞。为了实现更高的效率,一个周期谷底已经添加。它包括与所述气化和燃料电池一体化的涡轮发电设备lay-out.In汽轮机循环空气在操作压力压缩,并且通过燃料电池的废热和气化过程的内部加热。膨胀的空气然后在气化系统的燃烧反应器中使用。所提出的植物允许高电效率和在选择用于空气压缩比和单元尺寸的高灵活性;进行灵敏度分析。

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