Aspekte der Energiewende. Teil 3: Energieszenarien für eine vollständig defossilisierte deutsche Energieversorgung Aspects of the Energy Transition. Part 3: Energy Scenarios for a Fully Defossilized German Energy Supply

IF 1.5 4区 工程技术 Q3 ENGINEERING, CHEMICAL
Dr. Otto Machhammer, Carsten Siebels
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引用次数: 0

Abstract

Based on the scenario framework 2023‒2037/2045 [1] approved by the German Bundesnetzagentur für Elektrizität, Gas, Telekommunikation, Post und Eisenbahnen, a possible picture of the energy landscape for the case of a completely defossilized energy supply was drawn up with the help of hourly resolved producer and consumer profiles. On this basis, the question was addressed as to whether the hydrogen required for this should be produced domestically and how much decentralized, household-based seasonal storage would relieve the low-voltage grids. An estimate provides reference values for the financial expenditure and the area required to achieve this goal.

Abstract Image

能源转型的各个方面。第 3 部分:完全化石能源供应的德国能源方案
摘要 在联邦电力、天然气、电信、邮政和铁路网络局批准的 2023-2037/2045 年情景框架[1]的基础上,借助每小时解析的生产者和消费者概况,绘制了在完全化石能源供应的情况下可能出现的能源状况图。在此基础上,解决了是否应在国内生产所需的氢气,以及分散的、与家庭相关的季节性储存在多大程度上可以缓解低压电网的问题。估算结果为实现这一目标所需的资金支出和面积提供了参考值。
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来源期刊
Chemie Ingenieur Technik
Chemie Ingenieur Technik 工程技术-工程:化工
CiteScore
3.40
自引率
15.80%
发文量
601
审稿时长
3-6 weeks
期刊介绍: Die Chemie Ingenieur Technik ist die wohl angesehenste deutschsprachige Zeitschrift für Verfahrensingenieure, technische Chemiker, Apparatebauer und Biotechnologen. Als Fachorgan von DECHEMA, GDCh und VDI-GVC gilt sie als das unverzichtbare Forum für den Erfahrungsaustausch zwischen Forschern und Anwendern aus Industrie, Forschung und Entwicklung. Wissenschaftlicher Fortschritt und Praxisnähe: Eine Kombination, die es nur in der CIT gibt!
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