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Dynamic hydrogen production from PV & wind direct electricity supply - Modeling and techno-economic assessment

机译:PV&LIND直接电力供应 - 建模与技术经济评估动态氢气

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Renewable hydrogen from water electrolysis could contribute to the defossilization of various energy intensive sectors but continues to suffer from unfavorable economics. Attention is being paid to the direct supply of renewable electricity to electrolyzers; in particular from photovoltaic (PV) and wind units, whose fixed remuneration period has expired. However, detailed analysis of such operating strategies via modeling and simulation of the dynamic behavior of alkaline electrolysis (AEL) and polymer electrolyte membrane electrolysis (PEMEL) is lacking. In this work, an electrolyzer model is developed for both AEL and PEMEL and analyzed for PV and wind power input data sets from the region of northwest Germany. It is shown that key performance indicators (KPI) such as hydrogen production efficiency, electricity utilization rate, product output and net production costs are highly reliant on the shape of transient power input signals as well as the electrolyzers ability to cope with them. PEMEL technology generally has higher electricity utilization rates than AEL, while AEL still achieves relatively large hydrogen production quantities due to its higher efficiency. Thus, the better operational flexibility of PEMEL cannot generally be considered advantageous in terms of hydrogen production quantities - the same applies for economics. The most competitive hydrogen production costs were 4.33 (sic) per kg for the AEL technology with direct electricity supply from old wind farms, which no longer receive fixed remuneration. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:来自水电解的可再生氢气可能有助于各种能源密集型行业的光法,但继续遭受不利经济学的损害。对电解器的可再生电力直接供应注意力;特别是从光伏(PV)和风单元,其固定薪酬期已过期。然而,缺乏通过建模和模拟碱性电解(AEL)和聚合物电解质膜电解(PEMEL)的动态行为的这种操作策略的详细分析。在这项工作中,为AEL和PEMEL开发了电解柜模型,并为来自德国西北地区的PV和风电输入数据集分析。结果表明,诸如氢生产效率,电力利用率,产品输出和净生产成本的关键性能指标(KPI)高度依赖于瞬态电源输入信号的形状以及电解器应对它们的能力。 PEMEL技术通常具有比AEL更高的电力利用率,而AEL仍然仍然达到相对较大的氢气产量由于其较高效率。因此,在氢生产量方面,Pemel的更好的操作灵活性通常不能被认为是有利的 - 同样适用于经济学。对于旧风电场直接电力供应的AEL技术,最具竞争力的氢气生产成本为4.33(SIC)每公斤,从而从旧风电场直接电力供应,这不再收到固定报酬。 (c)2020氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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