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氢能与燃料电池 储能系统 ★ 5.0

伊兹密尔绿氢生产的经济技术评估:电解槽技术、模块化策略与可再生能源集成的分析

Techno-economic assessment of green hydrogen production in Izmir: Evaluating electrolyzer technologies, modularization strategies, and renewable energy integration

作者 Engin Deniz Gulay · C.Ozgur Colpan · Mehmet Akif Ezan
期刊 Energy Conversion and Management
出版日期 2025年1月
卷/期 第 333 卷
技术分类 氢能与燃料电池
技术标签 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 Techno-economical assessment for green H2 production is conducted for Izmir.
语言:

中文摘要

随着可再生能源装机容量的扩大以及氢能作为清洁能源载体的广泛应用,向低碳能源体系的转型正在加速。利用可再生能源驱动电解水制取绿氢是一种可持续的替代方案,但相较于化石燃料制氢方法仍面临成本挑战。本研究对土耳其伊兹密尔地区基于风能的绿氢生产进行了经济技术分析。首先,在一个10 MW风电集成的质子交换膜水电解(PEMWE)系统中,评估了两种电力分配策略(串联分配和平均分配),以确定最有效的方案。随后,采用选定的策略,比较了三种电解槽技术(碱性电解、质子交换膜电解和阴离子交换膜电解)对单位氢气平准化成本(LCOH)的影响。本研究的主要创新点在于,在采用不同电力分配策略运行的模块化电解槽系统中,分别考虑电堆和辅助系统(BoP)的比能耗(SEC)值。通过对伊兹密尔四个地点的案例研究,识别出切什梅(Çeşme)为最具可行性的选址,在该地配置10 MW风电场与7.5 MW PEMWE系统可实现1.334亿美元的净利润和1450万美元的净现值(NPV)。将电解槽容量从10 MW降低至7.5 MW亦可使LCOH由7.52美元/千克降至7.11美元/千克。研究还表明,当购电协议(PPA)电价为54美元/MWh时,直接投资建设风电项目比签订PPA更具成本效益。这些发现为设计模块化电解槽系统以及提升绿氢生产的经济可行性提供了关键参考依据。

English Abstract

Abstract The transition to low-carbon energy has accelerated with the expansion of renewable power capacity and the adoption of hydrogen as a clean energy carrier. Green hydrogen production via renewable-powered electrolysis offers a sustainable alternative but faces cost challenges compared to fossil-based methods. This study conducts a techno-economic analysis of wind-powered green hydrogen production in Izmir, Türkiye. First, two power allocation strategies (Daisy Chain and Average Allocation) are evaluated in a 10 MW wind-integrated PEMWE system to determine the most effective approach. Then, using the selected strategy, three electrolyzer technologies (Alkaline, Proton Exchange Membrane, and Anion Exchange Membrane) are compared based on their impact on the LCOH. The key novelty of this study is the separate consideration of SEC values for the stack and BoP in a modular electrolyzer system operated with different power allocation strategies. A case study across four locations in Izmir identifies Çeşme as the most viable site, where a 10 MW wind farm with a 7.5 MW PEMWE system achieves a net profit of 133.4 million US$ and a NPV of 14.5 million US$. Reducing electrolyzer capacity from 10 MW to 7.5 MW also lowers LCOH from 7.52 US$/kg to 7.11 US$/kg. The study also highlights that direct investment in wind power is more cost-effective than a PPA scenario for a price of 54 US$/MWh. These findings provide key insights for designing modular electrolyzer systems and improving the economic feasibility of green hydrogen production.
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SunView 深度解读

该研究对阳光电源风光制氢系统集成具有重要参考价值。文中风电-电解槽功率分配策略可优化ST系列储能变流器在制氢场景的能量管理算法,模块化电解槽系统的BoP能耗分析为PCS拓扑设计提供依据。研究验证的7.5MW最优配置比(相对10MW风电)与阳光电源1500V光伏系统超配逻辑一致,可应用于PowerTitan储能系统的容量优化。直接投资优于PPA的结论支持阳光电源推广风光储氢一体化解决方案,iSolarCloud平台可集成LCOH实时监测与预测性维护功能,降低绿氢生产成本。