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首页> 外文期刊>International journal of hydrogen energy >Feasibility of the integration of a molten carbonate fuel-cell system and an integrated gasification combined cycle
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Feasibility of the integration of a molten carbonate fuel-cell system and an integrated gasification combined cycle

机译:整合熔融碳酸盐燃料电池系统和整合气化联合循环的可行性

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摘要

IGCC (Integrated Gasification Combined Cycle) power plants look promising for the environmentally-friendly, large-scale production of electrical energy from low-cost fossil feedstocks such as coal or refinery residues.rnIn IGCC plants hydrogen is an intermediate product, as a syngas component, between the thermochemical section and the power section, which is a conventional combined cycle modified to handle this low-density fuel.rnReplacing the conventional power section with a fuel cell, the IGFC (Integrated Gasification Fuel Cell) configuration promises lower emissions, higher efficiency and possibility to scale down to smaller sizes.rnTo explore the challenges and the feasibility of such an integration we have proposed putting a pilot-scale fuel-cell system into operation within an existing, conventional IGCC, creating a hybrid fuel-cell-IGCC. Two innovative configurations have been proposed and optimised for a pilot-scale MCFC-GT (Molten Carbonate Fuel-Cell-Gas Turbine) system, based on a typical syngas for IGCC plants such as that in operation at ISAB Energy Srl. The system has been modelled using the LIBPF process simulation library.
机译:IGCC(整体煤气化联合循环)发电厂有望从低成本的化石原料(例如煤炭或炼油厂残渣)中环保,大规模地生产电能。rnIGIG电厂中的氢气是作为合成气成分的中间产品。在热化学部分和动力部分之间,这是经过修改的常规联合循环,可以处理这种低密度燃料。rn IGFC(整体气化燃料电池)配置用燃料电池代替了常规动力部分,可实现更低的排放,更高的效率为了探索这种整合的挑战和可行性,我们建议将中试规模的燃料电池系统在现有的常规IGCC中投入运行,从而创建混合燃料电池-IGCC。已经为中试规模的MCFC-GT(熔融碳酸盐燃料电池-燃气轮机)系统提出了两种创新配置,并对其进行了优化,该系统基于IGCC工厂的典型合成气,例如在ISAB Energy Srl运营的合成气。该系统已使用LIBPF过程仿真库建模。

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