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内生学习在欧洲部门耦合能源模型中的绿色氢能。

Endogenous learning for green hydrogen in a sector-coupled energy model for Europe.

机构信息

Department of Digital Transformation in Energy Systems, Faculty of Process Engineering, TU Berlin, Einsteinufer 25 (TA 8), Berlin, 10587, Berlin, Germany.

Institute for Automation and Applied Informatics (IAI), Karlsruhe Institute of Technology (KIT), Forschungszentrum 449, Eggenstein-Leopoldshafen, 76344, Baden-Württemberg, Germany.

出版信息

Nat Commun. 2023 Jun 23;14(1):3743. doi: 10.1038/s41467-023-39397-2.

Abstract

Many studies have shown that hydrogen could play a large role in the energy transition for hard-to-electrify sectors, but previous modelling has not included the necessary features to assess its role. They have either left out important sectors of hydrogen demand, ignored the temporal variability in the system or neglected the dynamics of learning effects. We address these limitations and consider learning-by-doing for the full green hydrogen production chain with different climate targets in a detailed European sector-coupled model. Here, we show that in the next 10 years a faster scale-up of electrolysis and renewable capacities than envisaged by the EU in the REPowerEU Plan can be cost-optimal to reach the strictest +1.5C target. This reduces the costs for hydrogen production to 1.26 €/kg by 2050. Hydrogen production switches from grey to green hydrogen, omitting the option of blue hydrogen. If electrolysis costs are modelled without dynamic learning-by-doing, then the electrolysis scale-up is significantly delayed, while total system costs are overestimated by up to 13% and the levelised cost of hydrogen is overestimated by 67%.

摘要

许多研究表明,在难以实现电气化的领域,氢可以在能源转型中发挥重要作用,但之前的模型并未包含评估其作用所需的功能。它们要么忽略了氢需求的重要部分,要么忽略了系统的时间可变性,要么忽略了学习效应的动态。我们在一个详细的欧洲部门耦合模型中解决了这些限制,并考虑了具有不同气候目标的整个绿色制氢链的学习效应。在这里,我们表明,在未来 10 年内,比欧盟在《REPowerEU 计划》中设想的更快地扩大电解槽和可再生能源的规模,可以在成本最优的情况下达到最严格的+1.5°C 目标。这将使到 2050 年的氢气生产成本降低到 1.26 欧元/公斤。制氢从灰氢转向绿氢,不再考虑蓝氢选项。如果不考虑动态学习效应来建模电解槽成本,那么电解槽的规模扩大将显著延迟,而总系统成本将高估多达 13%,氢气的平准化成本将高估 67%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d32f/10290158/5299f796d40c/41467_2023_39397_Fig1_HTML.jpg

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