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光伏发电技术
★ 5.0
意大利全境基于光伏并网制氢厂的氢气平准化成本最新研究视角
An up-to-date perspective of levelized cost of hydrogen for PV-based grid-connected power-to-hydrogen plants across all Italy
| 作者 | A.Ademoll · M.Calabres · Carlo Carcasci |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 379 卷 |
| 技术分类 | 光伏发电技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Assessment of performance degradation of electrolyzer BESS and [PV](https://www.sciencedirect.com/topics/engineering/photovoltaics "Learn more about PV from ScienceDirect's AI-generated Topic Pages") over time. |
语言:
中文摘要
摘要 绿色氢能在能源部门脱碳方面具有巨大潜力,但高昂的生产成本仍是主要障碍。本研究对基于光伏的并网制氢厂进行了全面的技术-经济-金融-环境分析,目标是满足意大利全境具有持续氢气需求的难减排行业。利用真实小时级数据,采用自主开发的基于规则的多能系统模拟器(MESS),并结合遗传算法进行电站最优规模设计。研究旨在最小化氢气平准化成本(LCOH),同时满足绿色氢气激励政策的监管框架要求。关键结果表明,在供给侧灵活性方面,氢气储存比电池储能更具优势;最优光伏与电解槽容量比在意大利南部为1.8,在北部为2.1,氢气储罐按日存储容量设计。考虑光伏组件、电解槽和电池老化模型后,电站运行首年与最差年份相比,电网依赖度上升60%,导致LCOH增加7%。当从最严格的(逐时)时间相关性要求过渡到最宽松的(年度)要求时,认证的绿色氢气产量提高了22%,而LCOH仅下降3%,这表明严格时间关联要求带来的环境效益超过了其适度的经济代价。这些发现凸显了需要出台更多国家级激励措施,以推动该技术的部署,并实现与灰氢的成本持平。
English Abstract
Abstract Green hydrogen holds potential for decarbonizing the energy sector, but high production costs are a major barrier. This study provides a comprehensive techno-economic-financial-environmental analysis of PV-based grid-connected hydrogen production plants, targeting hard-to-abate industries having constant hydrogen demand across all Italy. Using real hourly data, the Multi Energy System Simulator (MESS), an in-house developed rule-based tool, was employed and integrated with Genetic Algorithm for optimal plant sizing. The aim is to minimize the Levelized Cost of Hydrogen (LCOH) while complying with regulatory frameworks for green hydrogen incentives access. Key findings show that hydrogen storage is more advantageous than battery storage for supply-side flexibility, and the optimal PV-to-electrolyzer size ratio ranges from 1.8 in Southern Italy to 2.1 in Northern Italy, with hydrogen tank designed for daily storage. Considering photovoltaic, electrolyzer and battery aging models grid dependence increases by 60 % when comparing the first and worst year of operation and leads to a 7 % increase in LCOH. Transitioning from the strictest (hourly) to the least stringent (annual) temporal correlation increases certified green hydrogen by 22 %, while LCOH decreases by only 3 %, suggesting that the environmental benefits of stringent temporal requirements outweigh their moderate economic drawbacks. These findings underscore the need for additional national-level incentives to allow the deployment of this technology and achieving cost parity with grey hydrogen.
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SunView 深度解读
该研究对阳光电源光储制氢系统集成具有重要参考价值。研究表明光伏-电解槽最优配比为1.8-2.1,氢储能优于电池储能,这为SG系列逆变器与电解槽协同优化提供依据。研究中的多能源系统仿真器(MESS)与遗传算法优化思路,可融入iSolarCloud平台,实现光储氢一体化智能调度。时序关联性分析显示严格时序匹配虽增加3%成本但提升22%绿氢认证率,验证了PowerTitan储能系统在并网制氢场景的灵活性价值。意大利全域LCOH分析方法可复制至国内西北光伏大基地制氢项目,指导ST系列PCS在工业绿氢领域的系统方案设计与经济性评估。