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Strengthening global climate governance and international cooperation for energy‐efficient buildings
(2023)
Buildings constitute one of the main GHG emitting sectors, and energy efficiency is a key lever to reduce emissions in the sector. Global climate policy has so far mostly focused on economy-wide emissions. However, emission reduction actions are ultimately sectoral, and opportunities and barriers to achieving emission reductions vary strongly among sectors. This article therefore seeks to analyse to what extent more targeted global governance may help to leverage mitigation enablers and overcome barriers to energy efficiency in buildings. To this end, the article first synthesises existing literature on mitigation enablers and barriers as well as existing literature on how global governance may help address these barriers ("governance potential"). On this basis, the article analyses to what extent this governance potential has already been activated by existing activities of international institutions. Finally, the article discusses how identified governance gaps could be closed. The analysis finds that despite the local characteristics of the sector, global governance has a number of levers at its disposal that could be used to promote emission reductions via energy efficiency. In practice, however, lacking attention to energy efficiency in buildings at national level is mirrored at the international level. Recently, though, a number of coalitions demanding stronger action have emerged. Such frontrunners could work through like-minded coalitions and at the same time try to improve conditions for cooperation in the climate regime and other existing institutions.
Established in 2016, the German-Japanese Energy Transition Council (GJETC) strives to promote bilateral cooperation between Germany and Japan on energy transition. Among other studies and topical papers, an output paper in 2020 (Rauschen et al., 2020) already compared the energy efficiency in buildings in both countries with a particular focus on heating and cooling. One important finding of this output paper was that further efforts in the building sector are needed to improve the energy efficiency of buildings in Germany and Japan. Following the more ambitious climate protection targets in both countries, this study seeks to analyze the German and Japanese policies put in place to accelerate the decarbonization of the building sector. The decarbonization of the vast number of buildings that both Japan and Germany are facing will be a major contribution to achieving the GHG reduction targets of both countries and should continue to be discussed among experts and developed into a discussion among policy makers.
This report examines and compares the characteristics of the building stock in both countries, as well as existing policies and new strategies and policies that are planned or discussed to achieve energy conservation and decarbonization of buildings. The current shape of buildings, especially houses, is greatly influenced by the land area of the country corresponding to the available space for buildings, the natural environment surrounding the country, the natural resources available, and the lifestyle and cultural ideas that have been passed down and taken root over time. Therefore, it might be difficult to compare them and the corresponding strategies and policies with the same yardstick, so we also discuss common or deviant situations. Through this joint research, we aim to find each other's advantages and challenges and to develop useful and concrete policy recommendations that will contribute to decarbonization policies in both countries.
Strategic policy packages to deliver energy efficiency in buildings : their international evidence
(2013)
The project "bigEE - Bridging the Information Gap on Energy Efficiency in Buildings" presents comprehensive information for energy efficiency in buildings and the related policy on the international internet-based knowledge platform bigee.net.
To develop the evidence-based information required for bigee.net, we addressed in a different and more systematic way than usual the question of how policy can support improved building energy efficiency most effectively: We combined (1) a theoretical, actor-centred analysis of market-inherent barriers and incentives for all actors in the supply and use chain of (energy-efficient) buildings to derive a recommended package combining the types of policies and measures the actors need to overcome all these barriers, with (2) empirical evidence on model examples of good practice policy packages to check if advanced countries have indeed used the combination of policies we derived from the actor-centred analysis.
In this way, we found that the recommendable policy package for new buildings is similar to the well-known one for appliances, but with the objective to mainstream nearly zero energy buildings. By contrast, the task for existing buildings is two-dimensional - increasing the depth of renovation first, to savings of 50 to 80%, and then the rate of energy-efficient renovation to 2% or more p.a. - and so the policy package needs more emphasis on individual advice, incentives, and financing. The paper presents the recommended packages as well as a comparison of existing national policy packages from California (USA), China, Denmark, Germany, and Tunisia and what we learned from it for effective packages and implementation.
Reliably reducing the emissions in the building sector plays a crucial role if the 1.5°C climate target from the Paris Agreement is to be met. The observed trends show a significant increase in building energy use, especially in emerging economies. Counteracting these trends is absolutely essential, especially in the light of urbanisation, population growth and changing lifestyles. In terms of mitigating the climate impact of buildings, ensuring high levels of efficiency (i.e. very low energy needs, especially for heating and cooling) has the greatest potential for saving energy and emissions, and is at the same time the prerequisite for effective use of energy from renewable sources. Clearly defined targets and suitable metrics are essential to enable appropriate design decisions. Implemented projects clearly indicate that quality assured design and construction lead to reliable in-use energy performance. Effective policy packages to address opportunities and challenges are important drivers to support the uptake of state-of-the-art efficiency measures in the urban building sector.
Die große Herausforderung der Industrietransformation ist von besonderer Bedeutung für Nordrhein-Westfalen als eine der wichtigsten Industrieregionen Deutschlands und Europas, in der etwa die Hälfte der Anlagen der energieintensiven Grundstoffindustrie Deutschlands verortet sind und in der die industrielle Produktion wirtschaftlich eine besonders große Rolle spielt. Gleichzeitig kann eine gelingende Transformation der Industrie in NRW als Blaupause für andere Regionen dienen. Der vorliegende Bericht stellt die Ergebnisse des Forschungsprojekts SCI4climate.NRW 2018-2022 dar, welches die Industrietransformation in NRW wissenschaftlich begleitet und untersucht hat.
Saubere Geschäftsidee
(2001)
In order to limit global warming and fulfill their contributions to the Paris agreement, both Germany and Japan have set targets for climate neutrality towards the middle of the century. Reaching these goals will imply transformation of all sectors of society to avoid all fossil greenhouse gas emissions, heavy industry not the least. The focus of this study is the transformation of the petrochemical industry. This sector can become climate neutral but cannot be "decarbonized", as carbon is integral to the chemical structures of the products like polymers and solvents. Reaching climate neutrality thus means that the whole lifecycle of the petrochemical products has to be regarded. Another specific challenge is today's synergetic relation of this industry to fossil transport fuel production, which cannot be maintained in a climate neutral world.
The two countries interestingly share a similar industrial structure overall, and the chemical and petrochemical industry is one of the major industries in both countries. The countries' respective chemical industries are the third and fourth largest in the world in terms of sales, but at the same time, these industries represent just over 5% of the respective countries' greenhouse gas emissions. However, these scope 1 emissions of the chemical industry itself are far less relevant than the end-of-life emissions of their products, which belong to scope 3 and are thus not counted under the chemical industry in the country greenhouse gas balances. To mediate these emissions, there is a need to set the direction, draw out paths and investigate possible alternatives for how the petrochemical industry can be become climate neutral. In this report, the existing scenario analyses, energy strategies and roadmaps dealing with this issue in the two countries are compared, as well as the current state of their petrochemical industries. We highlight similarities, differences and identify possible areas of cooperation and exchange in order to find robust paths forward for the transformation of the petrochemical industries.
Resource-efficient construction : the role of eco-innovation for the construction sector in Europe
(2011)
The Wuppertal Institute for Climate, Environment and Energy and the UNEP/Wuppertal Institute Collaborating Centre on Sustainable Consumption and Production (CSCP) set out to analyse Japanese dematerialisation and resource efficiency strategies within the 3R scope and searched for options of enhancing resource effi ciency strategies, commissioned by the German Federal Environment Agency. A further task of the project was to initiate a policy dialogue including stakeholders, academia, politics and Japanese and European environmental experts. The following paper summarises findings from the analyses, the results of the policy dialogues (Experts Workshop, 6 June 2007 and International Conference, 6 November 2007) and draws conclusions for a potential Japanese-European cooperation on the resource efficiency issue.
In this project, an overview and prioritization of relevant technologies of the German energy transition are presented in a consolidated form. Many of the relevant technologies have already been developed and deployed to the market. However, in various sectors like system integration or sector coupling, innovation needs remain, as well as in-depth research on further possibilities and potentials for cost degression and technology optimization for all technologies.
This article presents the findings of a European study on energy efficiency in the public sector, entitled "Public procurement of Energy Saving Technologies in Europe" (PROST), completed in 2003. Energy efficiency in the public sector goes far beyond energy savings and climate protection. Energy efficiency must be seen as a strategy, which deals both with scarce public funds and with profound energy and climate challenges. The gains to be made are substantial. The study assessed the potential for energy and cost savings and the greenhouse gas reductions that are linked to energy efficiency in the European public sector. To the knowledge of the authors, this is the first time such an analysis has been carried out. The study concluded that there are no fundamental legal obstacles that would a priori disable the public sector from procuring energy efficient technologies or applying energy efficiency considerations in its daily building management routines. However, at the level of implementation obstacles can occur. It is therefore of paramount importance that there is sufficient political will and adequate incentive systems at all relevant levels. It appeared to be particularly effective when public procurement is energy-efficiency minded in all its operations and life cycle costing is applied for investments instead of conventional public budgeting procedures. The study demonstrates that consistent and EU-wide application of these principles and instruments can result in rather substantial savings both in terms of energy and in terms of money. With additional annual investments in energy efficiency of 80 million Euro, energy savings in the (EU15) Member States' public sector worth up to 12 billion Euro per year can be achieved. A supplementary analysis was performed for a selection of the new Member States, which indicated that the potential for energy and fiscal savings is substantial in those countries as well.
Die voranschreitende Umstellung des Energiesystems von einer "additiven Rolle" regenerativer Energien hin zu deren Dominanz wirft zahlreiche Fragestelllungen auf, für deren Beantwortung in zunehmendem Maße Modellierungsansätze gewählt werden. Vor diesem Hintergrund ist in den letzten Jahren eine große Anzahl von modellbasierten Szenarioanalysen des deutschen Energiesystems entstanden. Da sie zum Teil sehr unterschiedliche Ergebnisse erzielen, die nur schwer miteinander vergleichbar sind, erschwert dies die Weiterentwicklung des Zukunftswissens zur Energiewende und auch die gegenseitige Qualitätssicherung der Ergebnisse.
Vor diesem Hintergrund hat das Wuppertal Institut zusammen mit den Partnern Fraunhofer ISE und DLR das RegMex-Projekt durchgeführt. Ziel des Projektes war zum einen die inhaltliche Weiterentwicklung der Diskussion zur Ausgestaltung der Energiewende. Zum anderen sollte durch den Modellvergleich eine höhere Transparenz der teilnehmenden Modelle erreicht werden, um die Implikationen und Auswirkungen verschiedener Modellansätze besser differenzierten zu können.
Im Modellexperiment 1 wurden für zwei Szenarien (Zielszenario und Ambitioniertes Szenario) das Gesamtsystem mit Hilfe von drei Energiesystemmodellen und im Modellexperiment 2 das Stromsystem und flexible Sektorenkopplung mit Hilfe von vier Stromsystemmodellen modelliert. In einem weiteren Arbeitspaket wurden "Disruptive Elemente" identifiziert und analysiert, die gravierende Auswirkungen auf das Energiesystem haben können. Die Modellexperimente zeigen klar, dass die Einordnung und Interpretation von Modellergebnissen nicht losgelöst von den Modellen und deren methodischen Unterschieden erfolgen darf.
In this paper we report on the approach and findings of the research partnership "Prospects for decentralised infrastructures amid the competing demands of competition, climate protection and quality (INFRAFUTUR)." INFRAFUTUR stands for the future of decentralised infrastructures. We asked which strategies would be appropriate to safeguard supply and disposal services in the energy, water/sewage and waste sectors to private households and business on an enduring basis. In doing so, we focused our analysis on municipal and mixed municipal-private enterprises as players.
Proposals for contributions of emerging economies to the climate regime under the UNFCCC post 2012
(2008)
Under the principle of "common but differentiated responsibilities” (Article 3.1 of the UNFCCC) non-Annex I parties have so far been exempted from emission limitation or reduction commitments. However, the pressure is mounting on those countries, especially major emitting developing countries, to contribute actively to the mitigation of climate change. Participation by these developing countries in a future international climate regime is often called for, but it is usually unclear how and how much these countries should participate, what kind of support they need and in which sectors. This project aims to provide a more detailed view on six countries to understand how they could best make a contribution to the regime and how they could best be supported in limiting their greenhouse gas emissions.
Die Grundstoffindustrie steht derzeit vor großen Herausforderungen. Die Unternehmen müssen die akuten dramatischen Folgen der Coronakrise bewältigen, aber auch bereits in den nächsten Jahren in neue klimafreundliche Technologien investieren, um das Ziel einer klimaneutralen Wirtschaft im Jahr 2050 zu erreichen. Im Fachforum Energieintensive Grundstoffindustrie beim Grünen Wirtschaftsdialog diskutierten Akteure aus Wirtschaft, Politik und Wissenschaft, welche politischen Instrumente die Transformation der Industrie unterstützen und die notwendigen Investitionen ermöglichen können. Vom Wuppertal Institut wurde für das Fachforum ein Scoping Paper erstellt, welches den Stand der aktuellen Fachdiskussion zu zentralen Politikinstrumenten zusammenfasst und die wichtigsten offenen Ausgestaltungsfragen diskutiert. Das Papier wurde im Austausch mit den Akteuren im Fachforum entwickelt und in mehreren Sitzungen des Forums vorgestellt und diskutiert. Inhaltlicher Schwerpunkt sind Instrumente für faire internationale Wettbewerbsbedingungen, Carbon Contracts for Difference, und Ansätze für Energiepreisreformen.
Dieser Spartenband beinhaltet die wichtigsten Ergebnisse, die im Rahmen der Forschungspartnerschaft INFRAFUTUR in der Sparte Energie erarbeitet worden sind. In insgesamt 14 Kapiteln, die dem logischen Aufbau der Untersuchungen in der dreijährigen Partnerschaft folgen, werden für die Sparte Energie die Perspektiven dezentraler Infrastrukturen im Spannungsfeld von Wettbewerb, Klimaschutz und Qualität aufgezeigt. Schwerpunkt des Projektes war eine SWOT-Analyse, d.h. eine umfangreiche Analyse der Vor- und Nachteile einer dezentralen Organisation der Infrastrukturdienstleistungen sowie der Chancen und Gefahren für verschiedene kommunale Unternehmenstypen. Die Ergebnisse bildeten die Basis für die Strategieentwicklung, die in den Kapiteln 13 und 14 dargestellt wird. Um relevante Strategien für die beteiligten Praxispartner entwickeln zu können - trotz (zum Teil erheblicher) Unterschiede in den örtlichen und regionalen Gegebenheiten kommunaler Unternehmen der Energiewirtschaft - wurden drei idealtypische kommunale Unternehmenstypen als Referenzpunkt definiert.
In der dreijährigen Forschungspartnerschaft "Infrafutur" kooperierten das Wuppertal Institut, dreizehn Unternehmen der kommunalen Wirtschaft und der Verband kommunaler Unternehmen. Sie untersuchten, welche Strategien geeignet sind, um die Ver- und Entsorgung von privaten Haushalten und der Wirtschaft in den Sparten Energie, Wasser/Abwasser und Abfall zu sichern und zu stärken. Zu diesem Zweck wurden in Form von Szenarien die Zukunftsaussichten kommunalwirtschaftlicher Infrastrukturunternehmen im Spannungsfeld von Wettbewerb, Klimaschutz und Qualität intensiv analysiert. Die Methoden der Forschungspartnerschaft "Infrafutur" können auch von anderen kommunalwirtschaftlichen Unternehmen gewinnbringend eingesetzt werden. Dieser Endbericht in Buchform stellt die erarbeiteten strategischen Konzepte einem breiten Kreis für die Umsetzung zu Verfügung. Als ein wesentliches Ergebnis wurde herausgearbeitet, dass Dezentralität als Leitprinzip und der Ausbau dezentraler Infrastrukturen eine entscheidende Grundlage für eine nachhaltige und umfassende Qualitätssicherung in den Sparten Energie, Wasser/Abwasser und Abfall bilden. Die von kommunalwirtschaftlichen Unternehmen erbrachte Daseinsvorsorge überwindet die einseitige Orientierung am Shareholder Value zugunsten eines Beitrags zur Sicherung der natürlichen Lebensgrundlagen durch Klima- und Ressourcenschutz. Sie fördert die Vielfalt von Akteuren und kann die Ausweitung oligopolistischer Strukturen begrenzen. Zudem verstärkt sie die Kundenbeziehung, mobilisiert Potenziale vor Ort bei den erneuerbaren Energien, bei Energie- und Materialeffizienz und reduziert den Import von Energie und Rohstoffen. Die Szenarienanalysen zeigen jedoch auch, dass diese positiven Beiträge und Perspektiven dezentraler Infrastrukturen sich nicht im Selbstlauf ergeben, sondern dass im EU- und nationalen Maßstab förderliche Rahmenbedingungen in der Klima-, Energie-, Abfall- und Wasserpolitik geschaffen werden müssen.
In diesem Papier wird über den Ansatz und die Ergebnisse der Forschungspartnerschaft "Perspektiven dezentraler Infrastrukturen im Spannungsfeld von Wettbewerb, Klimaschutz und Qualität (INFRAFUTUR)" berichtet. INFRAFUTUR - das steht für die Zukunft der dezentralen Infrastrukturen. Es wurde danach gefragt, welche Strategien geeignet sind, um die Ver- bzw. Entsorgung von privaten Haushalten und der Wirtschaft mit Dienstleistungen in den Sparten Energie, Wasser/Abwasser und Abfall zukunftsfähig zu sichern. Dabei konzentrierte sich die Analyse auf kommunalwirtschaftliche Unternehmen als Akteure.
The core objective of Energy Efficiency Watch 3 (EEW3) is to establish a constant feedback loop on the implementation of European and national energy efficiency policies and thus enable both compliance monitoring and mutual learning on effective policy making across the EU. The project team applied a mixed-method approach to assess energy efficiency policy developments in EU Member States. It analysed progress of national policies by screening official documents, sought experts' knowledge via an EU-wide survey and has been creating new consultation platforms with a wide spectrum of stakeholders including parliamentarians, regions, cities and business stakeholders. Analysis of the National Energy Efficiency Action Plans (NEEAPs), the expert survey with input from over 1,100 experts on policy ambition and progress in each Member State, as well as 28 Country Reports have been central elements in EEW3. This paper will present the main conclusions and policy recommendations of EEW3. In doing so, it will first summarise the findings of the document analysis based on the 28 Country Reports, showing developments of energy efficiency policies since the second NEEAP in 2011 in a cross-country overview for six sectors. These findings are then contrasted with the experts' perspective on progress in energy efficiency policies in their countries as collected in the EEW survey. Moreover, ten case studies of good practice energy efficiency policies are shown, three of them will be presented in more detail. The paper ends with key policy conclusions for improving the effectiveness of European energy efficiency policies. A key finding is that policy implementation has improved a lot since 2011 but more is needed to achieve the EED Art. 7 and other targets.
Options and potentials for energy end-use efficiency and energy services : summary ; final report
(2006)
An important instrument to enhance the market uptake of energy-efficient new buildings and the energy-efficient renovation of existing buildings in the European Union (EU) are the Energy Performance Certificates (EPC). However, their implementation and use has varied between EU Member States. The European Commission has therefore provided funding to a number of Horizon2020 projects to develop next-generation EPC schemes.
One of these is the QualDeEPC project, aiming to both improve quality and cross-EU convergence of EPC schemes, and particularly the link between EPCs and deep renovation. The objective of the project is to improve the practical implementation of the assessment, issuance, design, and use of EPCs as well as their renovation recommendations, in the participating countries and beyond.
This paper presents the policy proposals and concepts for tools that the QualDeEPC project has developed as priorities for enhanced EPC schemes:
- Improving the recommendations for renovation, which are provided on the EPCs, towards deep energy renovation
- An online tool for comparing EPC recommendations to deep energy renovation recommendations
- Creating Deep Renovation Network Platforms (One-stop Shops plus networking and joint communication of supply-side actors)
- Regular mandatory EPC assessor training (on assessment and renovation recommendations) required for certification/accreditation and registry
- Achieving a high user-friendliness of the EPC
- Voluntary/mandatory advertising guidelines for EPCs
- Improving compliance with the mandatory use of EPCs in real estate advertisements
The paper will focus on the aspects related to improving the impact of EPCs for stimulating deep renovation. It will also present lessons learnt from the discussion with stakeholders at national and European workshops and from the testing of the proposals and tools in around 100 buildings, as well as from the first steps of their country-specific adaptation.
The COMBI project aimed at quantifying the multiple non-energy benefits of energy efficiency in the EU-28 area and incorporate those multiple impacts into decision-support frameworks for policy-making. Therefore, all multiple impacts of energy efficiency are analysed from an overall societal view in the project. The COMBI policy recommendations resulting from the evaluation outcomes are presented in this report.
COMBI draws on a reference scenario until the year 2030 including existing policies. By modelling 21 sets of "energy efficiency improvement" (EEI) actions, a second efficiency scenario was modelled amounting to additional energy savings of around 8% p.a. in 2030, and that is comparable to the EUCO+33 to EUCO+35 scenario. All figures quantified by COMBI relate to additional values, i.e. additional impacts resulting from additional EEI actions beyond the reference scenario as a consequence of additional policies. The project quantified in total 31 individual impact indicators with appropriate state-of-the-art models.
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.