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  • Artikel  (5)
  • ddc:600  (5)
  • 05.08. Risk
  • 550 - Earth sciences
  • ddc:300
  • phylogeny
  • Frankfurt am Main : DECHEMA  (2)
  • Stockholm : Europ. Council for an Energy Efficient Economy  (2)
  • Amman : Friedrich-Ebert-Stiftung  (1)
  • 1
    Publikationsdatum: 2022-02-18
    Beschreibung: The role of cities in mitigating GHG emissions and thus tackling global warming has gained importance over the last years.Many cities have developed climate action plans, primarily to achieve long-term "low-carbon" mitigation goals set by national governments or (inter)national agreements. A mere adoption of high level targets, however, raises the question whether these targets are applicable for cities with very different framework conditions. We argue that it is crucial to understand the socio-economic, geophysical, spatial, infrastructural and political framework of a city - a broad approach, which is generally missing in climate action plans. Thus, determining drivers and barriers for future development paths is neglected by local policies, which leads to a gap between ambition (target) and reality (implementation). We exemplarily examine this hypothesis for the shrinking city of Oberhausen (Germany). Oberhausen, located in the Ruhr area,is a typical old industrial region, which has seen a decline of its industrial basis over the last decades. We analysed historical data and developed scenarios until 2030. Both show a significant decrease in CO2 emissions. A closer look, however, reveals that the reduction is primarily due to the economic transformation (less manufacturing, more service industry, accompanied by a decrease in population) and general energy efficiency developments following the implementation of national and EU policies. Although the city has implemented–and will further implement - many instruments and policies to reduce CO2 emissions, local barriers such as unemployment, low rents, low income, high per capita debts, etc. dramatically reduce the city's capacity for action. The results show that Oberhausen's emission reductions do not reflect active energy policies but are mainly driven by an economic decline. To reach ambitious reduction targets, however, the city needs to be enabled to take action in achieving appropriate and reasonable targets.
    Schlagwort(e): ddc:600
    Repository-Name: Wuppertal Institut für Klima, Umwelt, Energie
    Sprache: Englisch
    Materialart: conferenceobject , doc-type:conferenceObject
    Format: application/pdf
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 2
    Publikationsdatum: 2024-01-18
    Beschreibung: A clear understanding of socio-technical interdependencies and a structured vision are prerequisites for fostering and steering a transition to a fully renewables-based energy system. To facilitate such understanding, a phase model for the renewable energy (RE) transition in the Middle East and North Africa (MENA) countries has been developed and applied to the country case of Jordan. It is designed to support the strategy development and to serve as a guide for decision-makers. The analysis shows that Jordan has taken essential steps towards a RE transition. According to the MENA energy transition phase model, Jordan can be classified as being in a transitional stage between the first phase, "Take-Off Renewables", and the second phase, "System Integration". However, fossil fuels continue to play a dominant role in the Jordanian energy sector, and the fluctuating world market prices for fossil fuels impact the economy. The expansion of domestically produced RE could significantly contribute to reducing Jordan's high imports of fossil fuels. This simultaneously increases energy security and reduces the trade deficit. To move towards a sustainable energy system, Jordan needs to embrace comprehensive flexibility measures. These include developing storage options, improving load management, upgrading the existing grid infrastructure, enhancing energy efficiency, exploring the electrification of end use sectors, and creating strong cooperation between stakeholders.
    Schlagwort(e): ddc:600
    Repository-Name: Wuppertal Institut für Klima, Umwelt, Energie
    Sprache: Englisch
    Materialart: report , doc-type:report
    Format: application/pdf
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 3
    Publikationsdatum: 2022-02-18
    Beschreibung: Energy efficiency improvements have numerous benefits/impacts additional to energy and greenhouse gas savings, as has been shown and analysed e.g. in the 2014 IEA Report on "Multiple Benefits of Energy Efficiency". This paper presents the Horizon 2020-project COMBI ("Calculating and Operationalising the Multiple Benefits of Energy Efficiency in Europe"), aiming at calculating the energy and non-energy impacts that a realisation of the EU energy efficiency potential would have in 2030. The project covers the most relevant technical energy efficiency improvement actions and estimates impacts of reduced air pollution (and its effects on human health, eco-systems/crops, buildings), improved social welfare (incl. disposable income, comfort, health, productivity), saved biotic and abiotic resources, and energy system, energy security, and the macroeconomy (employment, economic growth and public budget). This paper explains how the COMBI energy savings potential in the EU 2030 is being modelled and how multiple impacts are assessed. We outline main challenges with the quantification (choice of baseline scenario, additionality of savings and impacts, context dependency and distributional issues) as well as with the aggregation of impacts (e.g. interactions and overlaps) and how the project deals with them. As research is still ongoing, this paper only gives a first impression of the order of magnitude for additional multiple impacts of energy efficiency improvements may have in Europe, where this is available to date. The paper is intended to stimulate discussion and receive feedback from the academic community on quantification approaches followed by the project.
    Schlagwort(e): ddc:600
    Repository-Name: Wuppertal Institut für Klima, Umwelt, Energie
    Sprache: Englisch
    Materialart: conferenceobject , doc-type:conferenceObject
    Format: application/pdf
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 4
    Publikationsdatum: 2022-02-18
    Beschreibung: Die Prozesse der Grundstoffindustrie sind verantwortlich für einen Großteil des industriellen Energie- und Stromverbrauchs in Deutschland. Welche technischen Möglichkeiten bieten sich in diesen Prozessen auf Flexibilitätsanforderungen des Stromsystems zu reagieren? Das vom BMBF geförderte Kopernikus-Projekt SynErgie untersucht die Flexibilität von Industrieprozessen. Ein Arbeitspaket, das aus dem Projektantrag des INFLUX Konsortiums hervorgegangen ist, hat nun umfassende Studie zu den Flexibilitätsoptionen in den Prozessen der Grundstoffindustrie veröffentlicht.
    Schlagwort(e): ddc:600
    Repository-Name: Wuppertal Institut für Klima, Umwelt, Energie
    Sprache: Deutsch
    Materialart: report , doc-type:report
    Format: application/pdf
    Standort Signatur Einschränkungen Verfügbarkeit
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  • 5
    Publikationsdatum: 2022-02-18
    Beschreibung: Innerhalb des Kopernikus-Projekts "Synchronisierte und energieadaptive Produktionstechnik zur flexiblen Ausrichtung von Industrieprozessen auf eine fluktuierende Energieversorgung" - kurz SynErgie - erheben Wissenschaftlerinnen und Wissenschaftler das Flexibilisierungspotenzial von Industrieprozessen und versuchen die Machbarkeit an Schlüsselprozessen zu demonstrieren. Die technischen Herausforderungen und Lösungsoptionen, die sich in den Prozessen der Grundstoffindustrie - wie etwa Stahl, Chemie, Zement, Glas und Feuerfest - ergeben, haben sie bereits in einem ersten Band "Flexibilitätsoptionen in der Grundstoffindustrie: Methodik, Potenziale, Hemmnisse" ausführlich beschrieben und auf Basis einer eigens entwickelten Methodik analysiert. Der Fokus des vorliegenden zweiten Bandes liegt auf den Flexibilitätsperspektiven, die sich durch hybride Wärmebereitstellung, den Einsatz thermischer Energiespeicher und der Nutzung synthetischer Gase in den entsprechenden Branchen ergeben können. Hierzu erweiterten die Forschenden die bereits im ersten Band entwickelte Methodik um die relevanten Aspekte der Gasversorgung und thermischen Speicherung. Anhand von konkreten technischen Beispielen aus den Branchen stellen sie darin die Anwendungsmöglichkeiten und ein gegebenenfalls daraus folgendes Flexibilitätspotenzial dar und diskutieren dies.
    Schlagwort(e): ddc:600
    Repository-Name: Wuppertal Institut für Klima, Umwelt, Energie
    Sprache: Deutsch
    Materialart: report , doc-type:report
    Format: application/pdf
    Standort Signatur Einschränkungen Verfügbarkeit
    BibTip Andere fanden auch interessant ...
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