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首页> 外文期刊>International journal of hydrogen energy >Analyzing the levelized cost of hydrogen in refueling stations with on-site hydrogen production via water electrolysis in the Italian scenario
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Analyzing the levelized cost of hydrogen in refueling stations with on-site hydrogen production via water electrolysis in the Italian scenario

机译:在意大利情景中通过水电解与现场氢气产生加油站氢气稳定成本

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摘要

Hydrogen refueling infrastructures with on-site production from renewable sources are an interesting solution for assuring green hydrogen with zero CO2 emissions. The main problem of these stations development is the hydrogen cost that depends on both the plant size (hydrogen production capacity) and on the renewable source.In this study, a techno-economic assessment of on-site hydrogen refueling stations (HRS), based on grid-connected PV plants integrated with electrolysis units, has been performed. Different plant configurations, in terms of hydrogen production capacity (50 kg/day, 100 kg/day, 200 kg/day) and the electricity mix (different sharing of electricity supply between the grid and the PV plant), have been analyzed in terms of electric energy demands and costs.The study has been performed by considering the Italian scenario in terms of economic streams (i.e. electricity prices) and solar irradiation conditions.The levelized cost of hydrogen (LCOH), that is the more important indicator among the economic evaluation indexes, has been calculated for all configurations by estimating the investment costs, the operational and maintenance costs and the replacement costs.Results highlighted that the investment costs increase proportionally as the electricity mix changes from Full Grid operation (100% Grid) to Low Grid supply (25% Grid) and as the hydrogen production capacity grows, because of the increasing in the sizes of the PV plant and the HRS units. The operational and maintenance costs are the main contributor to the LCOH due to the annual cost of the electricity purchased from the grid.The calculated LCOH values range from 9.29 (sic)/kg (200 kg/day, 50% Grid) to 12.48 (sic)/kg (50 kg/day, 100% Grid). (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:与现场生产来自可再生资源的加氢基础设施是用于确保绿色氢具有零二氧化碳排放量的有趣的解决方案。这些电站开发的主要问题在于,取决于工厂规模(产氢能力)两种这项研究的氢气成本和可再生source.In,现场加氢站的技术经济评估(HRS),基于与电解单元集成并网光伏植物,已被执行。不同的植物构造,在氢生产能力方面(50 kg /天,为100kg /天200 kg /天)和电力混合物(不同的共享网格和PV植物之间的电力供应),都在术语被分析电能需求和costs.The研究已经考虑在经济流方面,意大利的情况(即电价)和太阳辐射conditions.The平准化氢(LCOH)的代价,那就是经济中的更重要的指标进行评价指标,已经通过估计的投资成本,操作和维护成本,并强调了投资成本成比例地增加从满网格运算(100%网格)的电结构的变化替换costs.Results至低价格计算所有配置供应(25%网格)和作为氢生产能力的增长,因为在光伏电站的尺寸和HRS单位增加,。的操作和维护成本是主要贡献者LCOH由于从计算出的grid.The LCOH值购买的电力的年度费用的范围从9.29(原文如此)/公斤(200 kg /天,50%的网格)到12.48(原文如此)/千克(50千克/天,100%网格)。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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