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光伏发电技术
★ 5.0
基于水电解和太阳能的绿色氢气生产原型装置的设计、制造与测试
Design, manufacturing, and testing of a prototype green hydrogen production plant based on water electrolysis and solar energy
| 作者 | Ronald Mas · Luis Quispe · Diego Pichilingue · Antonios Antoniou · Arturo Berastain · Luis Chirinos · Cesar Celis · George Papageorgiou |
| 期刊 | Energy Conversion and Management |
| 出版日期 | 2025年1月 |
| 卷/期 | 第 345 卷 |
| 技术分类 | 光伏发电技术 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | A photovoltaic powered green hydrogen production plant was implemented. |
语言:
中文摘要
摘要 本文描述了一种基于太阳能驱动水电解技术的绿色氢气生产原型装置的开发过程。该原型装置的开发包括多个不同阶段:首先,确立了利用原型装置生产绿色氢气的最新研究现状;其次,对氢气生产系统进行了合理选型与规模设计,包括所需的光伏系统;随后,对所设计的绿色氢气生产装置(GHPP)原型进行了制造、组装,并在多种运行条件下进行测试,以评估高效生产清洁能源的可行性;最后,基于光伏(PV)系统与电解(EL)系统之间的两种耦合方式——直接耦合与间接耦合,所开发的GHPP原型被用于有效生成绿色氢气。所设计的GHPP用于测试质子交换膜(PEM)电解槽。实验结果表明,某些运行条件,例如光伏发电系统与电解堆之间的距离,显著影响所开发GHPP的整体效率。总体而言,本研究的结果强调了优化系统以提高绿色氢气产量并降低系统运行成本的必要性。
English Abstract
Abstract This paper describes the development of a prototype plant for green hydrogen production based on water electrolysis using solar radiation. The development of the prototype plant included several distinct stages. First, the state-of-the-art knowledge regarding the generation of green hydrogen using plant prototypes was established. Next, the hydrogen production system was properly sized, including the required photovoltaic system. Then, the designed green hydrogen production plant (GHPP) prototype was manufactured, assembled, and tested under various operating conditions to assess the feasibility of producing clean energy in an efficient manner. Finally, based on two types of coupling between photovoltaic (PV) and electrolytic (EL) systems, direct and indirect, the developed GHPP prototype was used to effectively generate green hydrogen. The GHPP designed was used to test Proton Exchange Membrane (PEM) electrolyzers. The experimental results obtained here show that some operating conditions, such as the distance between the photovoltaic generation system and the electrolyzer stack, significantly influence the overall efficiency of the developed GHPP. Overall, the findings of this work highlight the need to optimize systems for increasing green hydrogen production and reducing system operating costs.
S
SunView 深度解读
该光伏制氢原型系统对阳光电源PV-电解耦合方案具有重要参考价值。研究验证了直接/间接耦合模式对系统效率的影响,可指导SG系列逆变器优化直流耦合拓扑,降低传输损耗。PEM电解器的波动性负载特性与ST储能系统的缓冲调节功能高度契合,PowerTitan可平抑光伏波动并提升制氢稳定性。系统距离对效率的敏感性启示iSolarCloud平台可集成制氢场景的拓扑优化算法,实现光储氢一体化智能管控,降低绿氢LCOE成本。