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Optimal design and operation of a biogas fuelled MCFC (molten carbonate fuel cells) system integrated with an anaerobic digester

机译:集成厌氧消化池的沼气燃料MCFC(熔融碳酸盐燃料电池)系统的优化设计和运行

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摘要

In this paper, a biogas fuelled hybrid system, obtained by integrating a molten carbonate fuel cell with a micro-turbine is considered. The size of the plant is selected on the basis of the maximum biogas production registered by monitoring the annual operation of an anaerobic digestion plant. The system produces electricity and supplies heat to the digester. Heat is necessary to keep correct operating temperature of the bacteria. A model of the system components is built and the plant optimization is performed. Design parameters are the fuel cell temperature, pressure ratio, inlet turbine temperature, reforming temperature, recirculation percentage, size of the two subsystems. Two competing objective functions are considered: the energy efficiency and the unit cost of electricity. The Pareto front shows that efficiencies close to 50% are obtained, with unit costs comparable with market prices of electricity. The off-design conditions caused by variations in biogas production and thermal request of the digester are also considered. Experimental data from the digester are used to investigate these variations. The optimal operation is selected depending on the daily heat request and biogas production. Possible economic and energy benefits that can be achieved by adding natural gas are also investigated.
机译:在本文中,考虑了通过将熔融碳酸盐燃料电池与微型涡轮机集成而获得的沼气燃料混合系统。通过监测厌氧消化厂的年运行量,根据注册的最大沼气产量来选择工厂的规模。该系统发电并向蒸煮器供热。为了保持正确的细菌工作温度,必须加热。建立系统组件的模型并执行工厂优化。设计参数是燃料电池温度,压力比,进气涡轮温度,重整温度,再循环百分比,两个子系统的大小。考虑了两个相互竞争的目标功能:能源效率和电的单位成本。帕累托曲线表明,效率接近50%,单位成本与电力市场价格相当。还应考虑由沼气产量和消化池热量需求变化引起的非设计条件。来自蒸煮器的实验数据用于研究这些变化。根据每日热量需求和沼气产量选择最佳运行。还研究了通过添加天然气可能实现的经济和能源利益。

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