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- Energie-, Verkehrs- und Klimapolitik (95) (remove)
Reaching the climate goals for the building sector requires to improve insulation and to increase air tightness of buildings in order to minimize heat loss. To achieve these goals and to prevent risks to the health of occupants and damages to the building fabric due to insufficient removal of pollutants and humidity, broad implementation of Mechanical Ventilation and Heat Recovery (MVHR) systems is crucial.
Comparable and up to date figures on the market penetration of MVHR systems across the EU are hardly available. However, figures point to only a small share of residential buildings being currently equipped with such systems (cf. Riviere et al. 2009). For the German building stock the figure is estimated to be below 5% (Händel 2011). The paper presents insights into the reasons for the slow diffusion of HRV technologies in the German building stock. It builds on the results of a recently completed research project whose central aim was to identify actor-specific and structural barriers for the diffusion of efficient ventilation systems in apartment buildings and to examine how these barriers can be addressed.
The analysis is based on 40 semi-structured expert interviews with energy consultants, HVAC craftsmen, and housing companies, as well as guided in-depth interviews with private owners of apartment buildings or apartments that were evaluated by means of qualitative content analysis. Based on the collected data, seven barrier categories were identified, each containing a range of single barriers for the diffusion of efficient ventilation systems within the residential building stock.
Results of the analysis were quantitatively validated by means of online surveys and a household survey among 1,008 households. The paper points out interdependencies within the chain of effects leading up to the investment decision of building owners. Furthermore, based on good practice examples identified within the data collection process, it proposes different measures to address these barriers.
In der öffentlichen Diskussion rücken die Konsequenzen der notwenigen Klimaschutzmaßnahmen sowie damit verbundene Kosten in den Fokus und entfalten ihre Sprengkraft. Ökologische, ökonomische und soziale Nachhaltigkeit werden zunehmend gegeneinander in Stellung gebracht. Häufig wird Klimaschutz gegen Wohlstand, wirtschaftliche Entwicklung und Arbeitsplätze ausgespielt.
Mit der von der Friedrich-Ebert-Stiftung beim Wuppertal Institut in Auftrag gegebenen Studie entlarven die Autorinnen und Autoren "unheilige Allianzen", verbreitete Mythen und interessensgesteuerte Desinformation. Anhand von zehn konkreten Fragestellungen liefern sie eine faktenbasierte Analyse und zeigen, dass eine zukunftsorientierte Energie- und Klimapolitik im Einklang mit Wohlstand und sozialem Fortschritt sehr wohl möglich ist.
Urban energy systems have been commonly considered to be socio-technical systems within the boundaries of an urban area. However, recent literature challenges this notion in that it urges researchers to look at the wider interactions and influences of urban energy systems wherein the socio-technical sphere is expanded to political, environmental and economic realms as well. In addition to the inter-sectoral linkages, the diverse agents and multilevel governance trends of energy sustainability in the dynamic environment of cities make the urban energy landscape a complex one. There is a strong case then for establishing a new conceptualisation of urban energy systems that builds upon these contemporary understandings of such systems. We argue that the complex systems approach can be suitable for this. In this paper, we propose a pilot framework for understanding urban energy systems using complex systems theory as an integrating plane. We review the multiple streams of urban energy literature to identify the contemporary discussions and construct this framework that can serve as a common ontological understanding for the different scholarships studying urban energy systems. We conclude the paper by highlighting the ways in which the framework can serve some of the relevant communities.
Zwischen 2005 und 2016 gab es in Deutschland über 150 Stadtwerke-Neugründungen im Energiebereich. Die insgesamt rund 900 Stadtwerke, die heute im Energiesektor tätig sind, spielen für die Energiewende eine zentrale Rolle. Denn sie stellen weit über die Hälfte der Versorgung an Strom, Gas und Wärme sicher. Zudem haben Stadtwerke aufgrund ihrer kommunalen Verankerung eine besondere Position im Spannungsgefüge von Politik, Wirtschaft und Zivilgesellschaft. Dieser Beitrag zeigt auf, welche Gründe und Motive zu dieser Gründungswelle führten und welche Erfolgsfaktoren für Stadtwerke-Neugründungen ausschlaggebend waren.
Der Eon/RWE-Deal : Marktbeherrschung und Shareholder Value-Politik mit behördlicher Zustimmung
(2019)
Am 17. September 2019 hat die EU-Wettbewerbs-Kommissarin Margrethe Vestager dem Stromkonzern Eon die Übernahme und Zerschlagung der RWE-Tochter Innogy unter leichten Auflagen erlaubt. Damit geht eine vollständige Geschäftsfeldaufteilung zwischen den beiden mächtigsten nationalen Energiekonzernen Eon und RWE einher. Während sich Eon auf die Bereiche Vertrieb und Verteilnetzbetrieb konzentrieren wird, übernimmt RWE die konventionellen Kraftwerke des bisherigen Konkurrenten sowie alle Anlagen der erneuerbaren Stromerzeugung. Auch alle vor rund zwei Jahren zunächst an Innogy abgegebenen Anlagen zur Stromerzeugung werden von RWE wieder zurückgeholt. Zudem erhält RWE eine 16,7-prozentige Beteiligung an Eon. Dazu gab das Bundeskartellamt (BKartA) bereits am 26.02.2019 bekannt, dass es diese Beteiligung für unbedenklich hält.
Die Freigabe der EU-Kommission vom September 2019 ist eine "Entscheidung von enormer Tragweite" die den "gesamten Sektor grundlegend verändern" wird. Denn durch diesen Mega-Deal entstehen im deutschen Energiesektor zwei monolithische Giganten mit bisher nie dagewesener Marktmacht.
Estimating the sufficiency potential in buildings : the space between underdimensioned and oversized
(2019)
The emission reduction potential of energy efficiency and energy supply in buildings is estimated in various energy and climate action plans, scenarios, and potential analyses. But the third pillar of sustainability - sufficiency - is neglected in most studies.The increasing demand of space per person in the residential sector is a trend in most European countries. Its implication on energy use, demand for resources like land, building material, equipment, and waste production is enormous. Next to the ecological impact, the distribution of space has social and societal effects. Thus, sufficiency policies in the building sector complementing efficiency and energy policy are needed for a sustainable development of the European building stock.
But how can a sufficiency potential in the building sector be estimated? How much space and equipment is needed for a decent living and how much is too much? The paper proposes four areas of sufficiency in buildings: space, design and construction, equipment, and use. It presents a set of indicators, a quantitative estimate of energy savings from reduced per capita floor area, and visualises the sufficiency potential in European countries in an experimental approach. The final discussion focuses on the question: What does this mean for policy making?
Before linking emissions trading systems, there should be a good understanding of the expected economic implications: How could linking affect the development of the common allowance price, the development of emissions or industrial production, capital flows or liquidity? Answering these questions requires a multitude of data and assumptions and therefore usually the use of economic models.
This report gives an overview of various economic models that are suitable for assessing the economic effects of linking. It analyses the economic indicators relevant for the assessment of the effects of linking, formulates requirements for economic models to answer this question, discusses the advantages and disadvantages of different modelling approaches and gives an assessment of which models are suitable in principle for the assessment of linking. Five models were selected for a more detailed description: E3ME, GEM-E3, PACE, POLES, and TIMES-MARKAL.