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<article_title>Strategic policy targets and the contribution | ||
of hydrogen in a 100% renewable european power system</article_title> | ||
of hydrogen in a 100% renewable European power system</article_title> | ||
<author>Sasanpour</author> | ||
<journal_title>Energy Reports</journal_title> | ||
<volume>7</volume> | ||
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<cYear>2021</cYear> | ||
<unstructured_citation>Sasanpour, S., Cao, K.-K., Gils, H. | ||
C., & Jochem, P. (2021). Strategic policy targets and the | ||
contribution of hydrogen in a 100% renewable european power system. | ||
contribution of hydrogen in a 100% renewable European power system. | ||
Energy Reports, 7, 4595–4608. | ||
https://doi.org/10.1016/j.egyr.2021.07.005</unstructured_citation> | ||
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<article_title>To prevent or promote grid expansion? | ||
Analyzing the future role of power transmission in the european energy | ||
Analyzing the future role of power transmission in the European energy | ||
system</article_title> | ||
<author>Cao</author> | ||
<journal_title>Frontiers in Energy Research</journal_title> | ||
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<unstructured_citation>Cao, K.-K., Pregger, T., Haas, J., | ||
& Lens, H. (2021). To prevent or promote grid expansion? Analyzing | ||
the future role of power transmission in the european energy system. | ||
the future role of power transmission in the European energy system. | ||
Frontiers in Energy Research, 8, 371. | ||
https://doi.org/10.3389/fenrg.2020.541495</unstructured_citation> | ||
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<article_title>Bridging granularity gaps to decarbonize | ||
large-scale energy systems—the case of power system | ||
large-scale energy systems—The case of power system | ||
planning</article_title> | ||
<author>Cao</author> | ||
<journal_title>Energy Science & | ||
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<unstructured_citation>Cao, K.-K., Haas, J., Sperber, E., | ||
Sasanpour, S., Sarfarazi, S., Pregger, T., Alaya, O., Lens, H., Drauz, | ||
S. R., & Kneiske, T. M. (2021). Bridging granularity gaps to | ||
decarbonize large-scale energy systems—the case of power system | ||
decarbonize large-scale energy systems—The case of power system | ||
planning. Energy Science & Engineering, 9(8), 1052–1060. | ||
https://doi.org/10.1002/ese3.891</unstructured_citation> | ||
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<article_title>The future role of carnot batteries in | ||
central europe: Combining energy system and market | ||
<article_title>The future role of Carnot batteries in | ||
Central Europe: Combining energy system and market | ||
perspective</article_title> | ||
<author>Nitsch</author> | ||
<journal_title>Journal of Energy Storage</journal_title> | ||
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<issn>2352-152X</issn> | ||
<cYear>2024</cYear> | ||
<unstructured_citation>Nitsch, F., Wetzel, M., Gils, H. C., | ||
& Nienhaus, K. (2024). The future role of carnot batteries in | ||
central europe: Combining energy system and market perspective. Journal | ||
& Nienhaus, K. (2024). The future role of Carnot batteries in | ||
Central Europe: Combining energy system and market perspective. Journal | ||
of Energy Storage, 85, 110959. | ||
https://doi.org/10.1016/j.est.2024.110959</unstructured_citation> | ||
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