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MW-Scale PEM Electrolysis Energy Storage: A Long-Term, Flexible Storage Solution Stephen Szymanski, Everett Anderson, Raymond Schmid, John Speranza

机译:MW-SCALE PEM电解能量存储:长期,灵活的存储解决方案Stephen Szymanski,Everett Anderson,Raymond Schmid,John Speranza

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With the ever-increasing addition of wind and solar renewable energy to the traditional electric grid, the need for energy storage also grows. A recent study projects the value of energy storage for wind and solar integration worldwide to exceed $30 Billion by 2023 [1]. Hydrogen from electrolysis is a promising technology for renewable energy capture as it has the capability to store massive amounts of energy in a relatively small volume. In addition, electrolysis can also provide ancillary services to the grid such as frequency regulation and load shifting resulting in multiple value streams. The hydrogen produced can alternatively be injected into the natural gas pipeline (thus making that energy carrier more green), in the production of high value chemicals such as ammonia, in upgrading of methanization-produced biogas, or used as a transportation fuel. Europe in particular has been committed to these pathways and making heavy investment in both materials research and system design and development as well as technology demonstration. In Germany, hydrogen is looked upon as a key part of the energy storage solution under “Energiewende,” their national sustainable energy transition plan. Hydrogen provides a unique link between the electric and gas grid infrastructures (often referred to as “Power-to-Gas”). Germany is also considered the global leader in biogas energy generation, with 18,244 GWh of generation in 2012 forecasted to grow to 28,265 GWh by 2025 [2]. Proton OnSite, the commercial leader in PEM-based water electrolysis, is developing a MW-scale electrolyzer product in response to this emerging market demand. Proton is currently performing a rigorous validation of the system design on a 1 MW functional prototype at its U.S. facilities. The “M-Series” product platform will be the first commercially available PEM electrolyzer to be released in the European market. This paper discusses the development effort for this product platform and how it addresses these emerging market requirements.
机译:随着向传统电网的不断增加的风和太阳能可再生能源,需要储存的需求也增长。最近的一项研究将全球风力和太阳能集成的能量储存值超过2023年的储存价值超过300亿美元[1]。来自电解的氢是可再生能源捕获的有希望的技术,因为它具有将大量能量存储在相对较小的体积中的能力。此外,电解还可以为网格提供辅助服务,例如频率调节和负载移位,导致多个值流。所生产的氢气可选择地注入天然气管道(因此使能量载体更加绿色),在生产高价值化学品如氨,升级甲烷化的沼气,或用作运输燃料。特别是欧洲一直致力于这些途径,并对材料研究和系统设计和开发以及技术示范进行重大投资。在德国,氢气被视为“Energiewende”下的能量存储解决方案的关键部分,他们的国家可持续能源过渡计划。氢气在电网基础设施(通常称为“电源到气体”)之间提供独特的联系。德国也被认为是沼气能源发电的全球领导者,2012年的18,244亿元的一代人预测到2025年的成长为28,265 GWH [2]。 PEM基水电解中的商业领导者质子现场,正在开发MW级电解器产品,以应对新兴市场需求。质子目前正在对其美国设施的1 MW功能原型上进行系统设计的严格验证。 “M系列”产品平台将是第一个在欧洲市场释放的商用PEM电解槽。本文讨论了本产品平台的开发工作以及它如何解决这些新兴市场要求。

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