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利用协同效应实现能源灵活运行的电解制氢:基于电池储能系统的可再生能源购电协议采购在可再生氢生产中的技术经济分析
Leveraging synergies for energy-flexible operated electrolysis: A techno-economic analysis of power purchase agreement procurement with battery energy storage systems for renewable hydrogen production
| 作者 | Robert Förster · Niklas Eiser · Matthias Kaiser · Hans Ulrich Buhl |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 393 卷 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | Energy flexible hydrogen electrolysis incorporating Battery Energy Storage (BESS). |
语言:
中文摘要
摘要 为缓解气候变化日益严重的不利影响,政策制定者积极推动以可再生氢替代化石能源。然而,考虑到市场供应、采购成本以及为生产可再生氢而获取可再生电力所面临的严格监管要求,欧盟(EU)的电解制氢运营商正面临重大挑战。通过购电协议(PPA)接入可再生能源并结合电池储能系统(BESS),对并网型能源灵活运行的可再生氢电解系统进行智能化设计与运行,可能是克服这些挑战的关键。为拓展现有研究文献,本文评估了在符合欧盟监管框架的前提下,PPA采购策略与BESS配置对可再生氢平准化成本(LCOH)的相互影响。基于德国某一代表性案例的研究结果表明,BESS有助于利用成本较低且波动性较高的PPA电力组合,从而最小化可再生氢电解的LCOH。若运营商的电力采购策略主要聚焦于太阳能和风能的“按产量计费型PPA”(as-produced-PPAs),则集成BESS将带来显著收益。针对不同BESS配置的敏感性分析揭示了合理配置储能系统容量对优化经济性的重要意义。此外,基于对电池储能系统投资成本的第二次敏感性分析,我们得出结论:使用梯次利用电池(second-life batteries)作为可再生氢电解系统的补充,可能构成一项可行的商业模式。
English Abstract
Abstract To mitigate the increasingly adverse impact of climate change, policymakers foster the substitution of fossil energy sources with renewable hydrogen. However, considering market supply, procurement costs, and strict regulatory guidelines for renewable electricity sourcing to produce renewable hydrogen, electrolysis operators in the European Union (EU) encounter significant challenges. Intelligent design and operation of grid-connected energy-flexible operated renewable hydrogen electrolysis powered with renewable energy sources through Power Purchase Agreements (PPAs) with integrated Battery Energy Storage Systems (BESS) may be pivotal to overcome these challenges. To extend existing research literature, we evaluate the reciprocal effects of PPA procurement strategies and BESS configurations on the Levelized Cost Of Renewable Hydrogen (LCOH) in compliance with the EU regulatory framework. Our results from a single representative instance located in Germany show that BESS is beneficial in leveraging PPA electricity portfolios characterized by low costs and high volatility to minimize LCOH of renewable hydrogen electrolysis. Operators may profit from BESS integration if their electricity procurement strategy predominantly focuses on as-produced-PPAs for solar and wind. A sensitivity analysis of different BESS configurations reveals the relevance of adequately dimensioning the BESS to optimize economic results. Furthermore, we conclude that, based on a second sensitivity analysis of the investment costs of battery energy storage systems, complementing renewable hydrogen electrolysis systems may pose a viable business case for second-life batteries.
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SunView 深度解读
该研究验证了储能系统在可再生能源制氢中的经济价值,与阳光电源ST系列PCS及PowerTitan储能方案高度契合。通过BESS平抑风光PPA电价波动、降低绿氢LCOH的结论,为我司储能系统在电解制氢场景提供应用依据。研究提出的BESS容量优化方法可指导ST系列产品配置策略,梯次电池应用分析为储能系统全生命周期管理提供创新方向。建议结合iSolarCloud平台开发氢储耦合智能调度算法,整合SG光伏逆变器、ST储能PCS与电解槽形成一体化解决方案,抢占绿氢制备市场。