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Steady state simulation of energy production from biomass by molten carbonate fuel cells

机译:熔融碳酸盐燃料电池从生物质产生能量的稳态模拟

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This paper presents an integrated approach to the steady state simulation of biomass gasification, fuel cells and power generation processes. Attention is devoted to molten carbonate fuel cells (MCFC) due to the relative low cost, simpler construction and flexibility in the use of fuel. A steady state model simulating a global MCFC power plant based on real plants data is described and the simulations are selected according to real operating conditions. The software developed allows to study 'in silico' the effect of variations of the process conditions as well as modification of the input fuel, thus providing a useful tool for supporting technical decisions and feasibility study on the use of fuel cells in developing countries. The paper reports results of computer simulation focusing on macroscopic quantities of interest such as stack efficiency, global process electrical efficiency, cogenerative efficiency. The computer simulation is applied to a feasibility study of a MCFC coupled with a biomass gasification module focusing on the energy consumption of the process and reporting comparison of the energy efficiency for three kinds of biomass.
机译:本文提出了一种用于生物质气化,燃料电池和发电过程稳态仿真的集成方法。由于相对较低的成本,更简单的构造以及燃料使用的灵活性,人们将注意力集中在熔融碳酸盐燃料电池(MCFC)上。描述了基于实际工厂数据模拟全球MCFC电厂的稳态模型,并根据实际运行条件选择了仿真。开发的软件允许“计算机模拟”研究过程条件变化以及输入燃料的修改的影响,从而为支持有关发展中国家使用燃料电池的技术决策和可行性研究提供了有用的工具。该论文报告了计算机仿真的结果,重点关注宏观关注的数量,例如烟囱效率,全局过程电效率,热电效率。该计算机模拟应用于结合了生物质气化模块的MCFC的可行性研究,其重点是过程的能源消耗并报告了三种生物质的能源效率比较。

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