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Techno-economic analysis and optimization of hydrogen production from renewable hybrid energy systems: Shagaya renewable power plant-Kuwait

机译:可再生混合能源系统制氢的技术经济分析和优化:科威特沙加亚可再生能源发电厂

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? 2024 Hydrogen Energy Publications LLCThe present study examines the potential for hydrogen production using the hybrid energy system at the Shagaya renewable power plant. Techno-economic and optimization analyses are used to identify the optimum configurations that reduce costs while increasing the renewable fraction and lowering greenhouse gas emissions. Three configurations were considered, exploring on- and off-grid combinations of photovoltaic solar (PV), wind turbine (WT), fuel cells and batteries. Integrating PV solar with wind power connected to the power grid was found to achieve the lowest levelized cost of energy of 0.539$/kWh and a hydrogen production cost of 6.85$/kg. However, for the stand-alone system where battery storage banks or fuel cells are used, the cost of hydrogen increases to more than 8.0$/kg due to the larger capital cost of the system. The optimized system achieves annual green hydrogen production of 111 877 kg along with an annual carbon dioxide emission reduction of 14 819 kg. A sensitivity analysis proves that COE is more sensitive to PV price than wind turbines and electrolyzers. LCOE falls by 32.3 to 0.365 kWh when the PV unit price drops to 50. The LCOE falls by 4 to 0.517 kWh when WT costs decrease by 50.
机译:?2024 Hydrogen Energy Publications LLC本研究考察了 Shagaya 可再生能源发电厂使用混合能源系统生产氢的潜力。技术经济和优化分析用于确定最佳配置,以降低成本,同时增加可再生部分并降低温室气体排放。研究了三种配置,探索了光伏太阳能 (PV)、风力涡轮机 (WT)、燃料电池和电池的并网和离网组合。研究发现,将光伏太阳能与并网的风力发电相结合,可实现最低的平准化能源成本为0.539美元/千瓦时,制氢成本为6.85美元/千克。然而,对于使用电池存储组或燃料电池的独立系统,由于系统的资本成本较大,氢气的成本增加到 8.0 美元/公斤以上。优化后的系统可实现年绿氢产量111877千克,年二氧化碳减排量14819千克。敏感性分析证明,与风力涡轮机和电解槽相比,COE对光伏电价更敏感。当光伏单价降至50%时,度电成本下降32.3%至0.365千瓦时。当WT成本降低50%时,LCOE下降4%至0.517 kWh。

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