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储能系统技术
★ 5.0
考虑老化问题的聚合物电解质膜电解槽制氢长期价值评估
Long-term valuation of hydrogen production using polymer electrolyte membrane electrolyzers considering aging concerns
| 作者 | Efat Mohammad · Alexander John Headle |
| 期刊 | Applied Energy |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 396 卷 |
| 技术分类 | 储能系统技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | This study links cost valuation concerns in PEMWE to experimental degradation data. |
语言:
中文摘要
摘要 氢能在未来能源格局中有望作为一种灵活的储能介质,在多种应用中发挥关键作用。在各类制氢技术中,聚合物电解质膜水电解槽(PEMWEs)因其对控制信号具有高效的动态响应能力以及实现紧凑系统设计的潜力而受到广泛关注。尽管已有部分研究探讨了PEMWEs的长期价值,但其退化效应常常被忽视,从而给经济性评估带来了显著的不确定性。本文强调了退化现象对PEMWE系统长期价值的关键影响:在一个案例研究中,根据所采用的实验研究数据不同,预测的氢气生产成本可能相差高达300%。本文通过综述现有文献,重点分析基于PEMWE的制氢技术在成本估值中存在的不确定性,特别关注实验获得的退化数据及耐久性评估方法。分析结果揭示了现有研究中存在显著的差异性和知识空白,例如报道的膜退化测试在失效前预期运行小时数上最多可相差17倍。本研究有助于量化电解槽估值研究中的不确定性,并强调有必要在特定应用场景条件下对PEMWE系统开展进一步的直接测试。解决这些挑战对于改进长期经济性评估、充分释放PEMWE技术在制氢领域的潜力至关重要。
English Abstract
Abstract Hydrogen is poised to play a pivotal role in the future energy landscape as a flexible energy storage medium across diverse applications. Among hydrogen production technologies, polymer electrolyte membrane water electrolyzers (PEMWEs) have garnered significant attention due to their efficient dynamic response to control signals and potential for compact system design. While some studies have explored the long-term value of PEMWEs, the effects of degradation are often overlooked, introducing substantial uncertainty into their economic assessments. This work underscores the critical impact of degradation phenomena on the long-term value of PEMWE systems given that the projected hydrogen production cost for one case study can differ by 300% depending on which experimental study is the source of degradation data. Here, we analyze the uncertainties inherent in cost valuation for PEMWE-based hydrogen production by providing a review of existing literature, with a focus on experimental degradation data and durability assessment methods. Our analysis reveals substantial variability and gaps in existing studies, with reported membrane degradation tests differing by up to a factor of 17 in expected operating hours before failure. This work helps to quantify the uncertainty in electrolyzer valuation studies and emphasizes the need for further direct testing of PEMWE systems under application-specific conditions. Addressing these challenges is essential to improve long-term economic assessments and unlock the full potential of PEMWE technology for hydrogen production.
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SunView 深度解读
该研究揭示PEM电解槽老化对制氢经济性的关键影响,为阳光电源储能系统与制氢耦合方案提供重要参考。ST系列PCS可通过精准功率控制优化电解槽动态响应,降低退化速率。建议在PowerTitan储能系统中集成电解槽健康管理算法,基于iSolarCloud平台实现退化预测与运维优化,延长设备寿命并提升绿氢制储一体化方案的长期经济性,支撑公司在氢能储能领域的战略布局。