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Technical-economic analysis of a hydrogen production facility for power-to-gas and hydrogen mobility under different renewable sources in Southern Italy

机译:意大利不同可再生能源下电力与氢气流动性的氢气生产设施的技术经济分析

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Hydrogen facilities are worldwide recognized as decarbonizing energy systems, but strategic actions are needed by intensifying the effort on the feasibility studies concerning the integration of multiple hydrogen systems, to foster and accelerate the achievement of the break-even points.The present paper proposes a comprehensive technical-economical assessment of PEM hydrogen production system via water electrolysis, in three different Southern Italian locations powered by grid electricity and renewable energies, namely wind, solar, geothermal. Hydrogen is then stored in gaseous form at 350 bar. The generated hydrogen in each facility is used to meet two different end-users needs: hydrogen mobility and hydrogen injections in the natural gas grid/pipelines. Hydrogen-to-mobility serves fuel cell electric vehicles, requiring high-pressure delivery and dispensing up to 700 bar, while for hydrogen injections, a double-stage pressure reducer is considered, by stepping down the pressure level at 50 bar. The financial investigation has been based on two main sensitive analysis: a power-purchase agreement price ranging from 50 to 100 (sic)/MWh, and several scenarios for the hydrogen end-users, by ranging the potential hydrogen delivery from 25 to 100% of the daily production for the Hydrogen Mobility.As a novelty, the present paper integrates an emission analysis, in order to take into account the carbon footprint of these innovative applications and their benefits related to health and quality of life in terms of economic repercussions on society.
机译:全球氢气设施被认为是脱碳能源系统,但通过加强关于融合多个氢气系统的可行性研究的努力,需要战略行动,培养和加速突破性点的实现。本文提出全面通过水电解的PEM氢气生产系统的技术经济评估,三种不同的南部意大利地点,由电网电力和可再生能源,即风,太阳能,地热。然后在350巴中以气态形式储存氢。每个设施中所产生的氢用于满足两种不同的最终用户需求:天然气栅格/管道中的氢气迁移率和氢注射。氢气到迁移率是燃料电池电动车辆,需要高压输送并分配高达700巴,而用于氢注射,通过在50巴的压力水平下踩下压力水平来考虑双级压力减压器。金融调查一直基于两个主要敏感性分析:通过从25至100%的潜在氢递送来提供50至100(SiC)/ MWH的电源购买协议价格,以及氢气最终用户的几种情况在日常生产品的氢气流动性中。一种新颖性,本文集成了排放分析,以考虑这些创新应用的碳足迹及其与健康和生活质量的福利在经济影响方面社会。

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