Zukünftige Energie- und Industriesysteme
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Die vorangegangenen Analysen im RESTORE2050 Projekt, die im Rahmen dieses Berichts weitergeführt werden, haben gezeigt, dass der Einsatz von Wasserstoffspeichern zur Residuallastglättung nur bedingt geeignet ist. Zwar bietet die Technologie ein hohes technisches Potenzial hinsichtlich der Speicherkapazitäten und der installierbaren elektrischen Leistungen. Jedoch führt ein systemdienlicher Einsatz, bei dem positive Residuallastspitzen u. a. durch Anheben geringer Residuallasten gesenkt werden, wie er in den Modellrechnungen des RESTORE2050 Projektes implementiert ist, zu einer Absenkung der Deckungsraten von erneuerbaren Energien (EE) im europäischen Stromsystem. Dies ist dadurch begründet, dass die Umwandlung und Speicherung von EE-Strom als Wasserstoff (H2) im Vergleich zu anderen Speichertechnologien hohe Wandlungsverluste sowohl bei der H2-Erzeugung als auch bei der Rückverstromung aufweisen. Daher wird im Rahmen dieses Aufstockungsprojektes (RESTORE2050_plus) untersucht, welchen Beitrag alternative Einsatzstrategien der H2-Speicher zur Minimierung der negativen Residuallast, also potenzielle erneuerbaren Stromüberschüssen, und gleichzeitig zur Erhöhung der EE- Versorgungsanteile leisten kann.
The maritime part of all transport via the port of Rotterdam is linked to the brunt of all CO2 emissions (87 %) the port can potentially influence. This report aims to quantitatively grasp the maritime transport of the Port of Rotterdam, in terms of ships, total tonnages, energy consumption and CO2 emissions in respect to types of cargo and regions.
In the first and broad part of the report, the emissions and energy demands of sailing ships are assessed. Emissions and energy demand for the port itself are subject of a separate part at the end.
In recent years, many energy scenario studies have proven that a power supply system based on renewable energies (RE) >90 percent is feasible. However, existing scenarios differ significantly in the composition of generation technologies. Some scenarios focus on wind energy in the northern part of Europe, others base on a large utilisation of solar technologies in the south. Apart from the generation capacities, the needed technical flexibilisation strategies such as grid extension, demand flexibilisation and energy storage are generally known and considered in many scenarios. Yet, the impact of different renewable generation strategies on the local utilisation of flexibility options needs to be further assessed. Based upon the BMBF research project RESTORE2050, analyses have been carried out that focus on these interdependencies. The results of the project show that the local utilisation of flexibilisation options depends to a great extent on the technology focus of the long-term renewable expansion strategy. This applies for the spatial flexibilisation as provided by transnational interconnection capacities, especially the ones connecting regions with a surplus of power generation (e.g. GB, Norway and Spain). Another impact of the renewable scenario is seen on the required temporal flexibilisation of electricity generation and demand. In addition, the available options will compete for high utilisation in a future energy system. The differences in the utilisation of these applications, which base on the varying shares of photovoltaic (PV) and wind energy generation, lead to the conclusion that the decision about longterm RE expansion ought to be made very soon in order to avoid inefficient flexibility pathways. Otherwise, if the future RE structure will be kept open, adequate adoption of new flexibility options will be difficult, especially in case of technologies with long lead and realisation time (e.g. new power grids and large scale energy storage devices).
In dem Forschungsprojekt "Technologien für die Energiewende" (TF_Energiewende) bewertet ein Konsortium von drei Verbundpartnern und zehn Technologiepartnern unter der Federführung des Wuppertal Instituts seit Herbst 2016 den mittelfristigen Forschungs- und Entwicklungsbedarf für die zentralen Technologien, die im Rahmen der Energiewende derzeit und zukünftig benötigt werden.
Für die Energiewende in Deutschland ist zeitnah ein nennenswerter Ausbau der Stromnetze auf Transport- und Verteilnetzebene erforderlich. Mittel- bis langfristig werden für die Umstellung der Strom- und Energieversorgung auf erneuerbaren Energien (EE) zusätzlich große Speicherkapazitäten benötigt. Dabei sind kostengünstige und mit minimalen Energieverlusten verbundene Speicher- und Erzeugungstechnologien anzustreben. Lösungsansätze dafür werden bisher überwiegend auf der Stromseite diskutiert. Chancen, die sich aus der Kopplung von Strom- und Gasnetzen ergeben, werden kaum wahrgenommen. Das erhebliche Lösungspotential der vorhandenen Gasinfrastruktur und -Anwendungstechnologien mittels Power-to-Gas sowie die damit verbundenen Auswirkungen auf eine nachhaltige Gestaltung der Energiewende finden zu wenig Beachtung.
Vor diesem Hintergrund hatte das Forschungsvorhaben "Integration fluktuierender erneuerbarer Energien durch konvergente Nutzung von Strom und Gasnetzen - Konvergenz Strom- und Gasnetze" zum Ziel, unter Berücksichtigung der Kopplung von Strom- und Gasnetzen, (1) die Potenziale zur Aufnahme, Speicherung und Verteilung von EE zu bestimmen, (2) die dynamischen Energieströme aus Angebot und Nachfrage in der gesamten Energieversorgungsstruktur zu modellieren, (3) die Kopplung volkswirtschaftlich zu analysieren und (4) Handlungsempfehlungen für den Ausbau der Netzinfrastrukturen und die Entwicklung eines zukünftigen Energiemarktes abzuleiten.
Im Projekt KomRev werden effiziente Energienutzungs- und Versorgungskonzepte am Beispiel der Stadt Rheine entwickelt. Ziel war es, mit einer sinnvollen Vernetzung der Bereiche Strom, Wärme und Verkehr eine weitgehend CO2-"freie" Energieversorgung im Jahr 2050 zu erreichen. Das Forschungskonsortium bestand aus dem Solar-Institut Jülich der FH Aachen, dem Wuppertal Institut sowie dem Deutschen Zentrum für Luft- und Raumfahrt.
Im Rahmen des Forschungsclusters "Transformation Industrieller Infrastrukturen" des Virtuellen Instituts "Transformation - Energiewende NRW" haben sich Helena Mölter, Georg Kobiela, Daniel Vallentin und Timon Wehnert vom Wuppertal Institut mit Formaten zur Unterstützung von Transformations- und Innovationsprozessen in Unternehmen beschäftigt. Die Energiewende stellt nicht nur eine Herausforderung für Unternehmen dar, sondern bietet auch die Möglichkeit, zu Vorreitern der Dekarbonisierung zu werden. CO2-arme Produkte, Produktionsprozesse und Geschäftsmodelle können die Konkurrenzfähigkeit stärken. Doch was können Unternehmen tun, um die notwendigen Innovationen - auch in Kooperationen mit anderen - voranzutreiben? Dieser Frage nehmen sich die Autorinnen und Autoren in ihrer Studie an.
Partizipative Irritationen : Reflexionen zum nachhaltigkeitsbezogenen Partizipationsgeschehen
(2017)
Die Beteiligungslandschaft wird im Kontext nachhaltiger Entwicklung und in der Perspektive der Politischen Psychologie betrachtet. Ausgangspunkt sind Wechselwirkungen zwischen politisch vermittelter und in Verbindung mit Nachhaltigkeit besonders geforderter Partizipationsnotwendigkeit einerseits und individuell empfundenem Vertrauensverlust in die Fähigkeit der Politik zur Lösung von Umweltproblemen andererseits. Betrachtet werden Partizipationsmotive der Politik (z.B. Steigerung von Legitimität) und Partizipationsmotive von Bürgerinnen und Bürgern (z.B. die "echte" Chance auf Mitentscheidung, insbesondere bei Verfahren mit starkem Regionalbezug). Beide Motive sind eingebettet in eine weitgehend entscheidungsferne "Partizipationsarchitektur". Die Verfahren liegen überwiegend auf einer informativen und auf einer konsultativen Ebene. Auch zeigen sich Diskrepanzen auf der Ebene der politischen Aufforderungen zur Partizipation. Diese erfolgen eher, wenn es um Problemlösungen geht und eher nicht, wenn es um Investitionen und wirtschaftliche Gewinne geht. Intensiv werden partizipative Ansätze im Kontext von Klimaschutz und Energiewende verfolgt. Doch auch diese Partizipationsangebote gehen selten über die informative Ebene hinaus. Inhaltlich sind v.a. technische Lösungsansätze zur Reduktion der CO2-Emissionen fixiert worden, hingegen wurden politische wie soziale Lösungsansätze überwiegend ausgespart. Insgesamt besteht die Gefahr partizipativer Irritationen bis hin zu Erschöpfung, wenn Bürgerinnen und Bürger einerseits zur Beteiligung aufgefordert und aktiviert werden, andererseits aber erfahren, dass sie im politischen Geschehen wenig bewirken können.
Nachdenken über Familie
(2017)
In addition to the expansion of renewable energies, the efficient use of energy is crucial in order to ensure energy transition successful. The Federal Government of Germany has therefore set itself clear objectives with the National Energy Efficiency Action Plan (NAPE), which aims to reduce the primary energy consumption in Germany - compared to 2008 levels - by 20 per cent until 2020, and by 50 per cent until 2050. In addition, greenhouse gas emissions should fall by 40 per cent compared to 1990.
To reach this goal, the German Federal Ministry of Economic Affairs and Energy (BMWi) inter alia launched the "National Top Runner Initiative (NTRI)" in January 2016. It is an important component and concerns private homes, as well as industry, retail and services.
The NTRI is intended to bring energy efficient and high-quality appliances (so called Top Runners) onto the market more quickly, thus accelerate market replacement. For this purpose, motivation, knowledge and competence in product-related energy efficiency is to be strengthened and expanded along the whole value chain - from the appliance manufacturer to the retailer and the consumer. Manufacturers are pushed to develop more efficient products and consumers get valuable information about Top-Runner products and how they can benefit. In this context, retailers are especially relevant as they act as "gatekeeper" between manufacturers and consumers. They play a key role in advancing an energy efficient production and consumption. They do not only select the products but they also have a direct contact to consumers and influence the purchase decision. In this paper, special emphasis will be put on the role of retailers and the efforts of the National Top Runner Initiative will be illustrated. Barriers and incentives to motivate this target group will be elaborated.
Contemporary combined heat and power (CHP) systems are often based on fossil fuels, such as natural gas or heating oil. Thereby, small-scale cogeneration systems are intended to replace or complement traditional heating equipment in residential buildings. In addition to space heating or domestic hot water supply, electricity is generated for the own consumption of the building or to be sold to the electric power grid.
The adaptation of CHP-systems to renewable energy sources, such as solid biomass applications is challenging, because of feedstock composition and heat integration. Nevertheless, in particular smallscale CHP technologies based on biomass gasification and solid oxide fuel cells (SOFCs) offer significant potentials, also regarding important co-benefits, such as security of energy supply as well as emission reductions in terms of greenhouse gases or air pollutants. Besides emission or air quality regulations, the development of CHP technologies for clean on-site small-scale power generation is also strongly incentivised by energy efficiency policies for residential appliances, such as e.g. Ecodesign and Energy Labelling in the European Union (EU). Furthermore, solid residual biomass as renewable local energy source is best suited for decentralised operations such as micro-grids, also to reduce long-haul fuel transports. By this means such distributed energy resource technology can become an essential part of a forward-looking strategy for net zero energy or even smart plus energy buildings.
In this context, this paper presents preliminary impact assessment results and most recent environmental considerations from the EU Horizon 2020 project "FlexiFuel-SOFC" (Grant Agreement no. 641229), which aims at the development of a novel CHP system, consisting of a fuel flexible smallscale fixed-bed updraft gasifier technology, a compact gas cleaning concept and an SOFC for electricity generation. Besides sole system efficiencies, in particular resource and emission aspects of solid fuel combustion and net electricity effects need to be considered. The latter means that vastly less emission intensive gasifier-fuel cell CHP technologies cause significant less fuel related emissions than traditional heating systems, an effect which is further strengthened by avoided emissions from more emission intensive traditional grid electricity generation. As promising result, operation "net" emissions of such on-site generation installations may be virtually zero or even negative. Additionally, this paper scopes central regulatory instruments for small-scale CHP systems in the EU to discuss ways to improve the framework for system deployment.
Participatory scenario processes : a tool for mutually shaping the future and social learning
(2017)
Im Verkehrssektor sind die Emissionen in den vergangenen Jahren gestiegen statt gesunken. Schnelle Entscheidungen und innovative Mobilitätskonzepte sind notwendig, damit Städte klimafreundlicher werden können. Haben sich Kommunen aber einmal festgelegt, ist der Umstieg auf einen alternativen Ansatz mitunter schwierig und teuer - es können Pfadabhängigkeiten entstehen. Dabei weiß niemand derzeit genau, welche Technologien sich in den kommenden Jahrzehnten durchsetzen werden. Dies gilt gleichermaßen auch für zahlreiche Bereiche bei der Umsetzung der Energiewende. Die vorliegende Analyse des Akademienprojektes "Energiesysteme der Zukunft" (ESYS) zeigt Strategien für den Umgang mit Pfadabhängigkeiten auf und will damit Politikerinnen und Politiker in ihrem Entscheidungsprozess unterstützen.
Die Autorinnen und Autoren erklären in der Analyse, wie die Entscheidungstheorie Kommunal- und Bundesspolitiker bei der Gestaltung eines zukunftsfähigen Mobilitätssystems und beim Umbau der Energieversorgung helfen kann. Am Beispiel des kommunalen Flottenumbaus wird verdeutlicht, wie sie Lösungen bewusst auswählen und dabei trotzdem flexibel bleiben können.
Eine besondere Herausforderung für die Wärmewende stellen leitungsgebundene Wärmeversorgungsstrukturen dar. Aufgrund ihrer hohen Kapitalbindung bei gleichzeitig hoher Lebensdauer müssen hier frühzeitig die richtigen Weichen in Richtung Energiewende gestellt werden. Eine Vielzahl von Akteuren, Stadtwerken und Energieversorgern, über Planer und Handwerker bis hin zur Immobilienwirtschaft stehen vor der Schwierigkeit, einen langfristig kompatiblen Pfad in Richtung Klimaschutz und Energiewende einzuleiten. Vor diesem Hintergrund sollen in diesem Artikel aus technologischer Sicht Optionen aus dem Themenfeld "LowEx und gekoppelte Wärmeversorgungsstrukturen" näher betrachtet werden.
Schon seit dem 19. Jahrhundert gilt Wasserstoff als Basis einer nachhaltigen Energiezukunft. Auch wenn sich noch keine kommerzielle Nutzung etabliert hat, sind Wasserstofftechnologien in den vergangenen Jahren deutlich weiterentwickelt worden. In Zusammenarbeit mit dem Wuppertal Institut hat Shell untersucht, welchen Beitrag Wasserstoff zu einer nachhaltigen Energieversorgung - vor allem im Verkehr - künftig leisten kann.
Das Projekt "Energiewende integrativ - Entwicklung eines transformativen Forschungsdesigns am Beispiel der Energiewende Ruhr" (EnerTransRuhr) behandelte vordergründig die Energiewende im Gebäudebereich. Auf dieses Thema fokussierten sämtliche Arbeiten und Untersuchungen, die im Rahmen des Projekts durchgeführt wurden. Im Kern aber ging es um die Frage, wie ein Projektdesign im Verständnis transformativer Wissenschaft inhaltlich und methodisch aussieht, das einzelne Disziplinen und Methoden ebenso integriert wie in transdisziplinären Prozessen das Wissen und die Expertise von nicht wissenschaftlichen Projektbeteiligten.
We present an approach to simulate climate and energy policy for the EU, using a flexible and modular agent-based modelling approach and a toolbox, called the Energy Modelling Laboratory (EMLab). The paper shortly reviews core challenges and approaches for modelling climate and energy policy in light of the energy transition. Afterwards, we present an agent-based model of investment in power generation that has addressed a variety of European energy policy questions. We describe the development of a flexible model core as well as modules on carbon and renewables policies, capacity mechanisms, investment behaviour and representation of intermittent renewables. We present an overview of modelling results, ongoing projects, a case study on current reforms of the EU ETS, and we show their relevance in the EU context.
Der vorliegende Bericht ist Ergebnis eines zweijährigen Forschungsprojekts im Rahmen des Virtuellen Instituts "Transformation - Energiewende NRW". Das Projekt wurde von der Stiftung Mercator finanziert. Der Bericht beschäftigt sich in mehreren Schritten mit der Transformation des Energie- und Industrielandes NRW: Er analysiert die ökonomischen Effekte der Energiewende in NRW und arbeitet Erfolgsfaktoren sowie Gestaltungsmöglichkeiten für industrielle Transformationsprozesse heraus. Nachfolgend werden zentrale Ergebnisse dieser Analyseschritte knapp zusammengefasst.
In der vorliegenden Szenariostudie zeigen Forscher des Wuppertal Instituts, wie sich die Treibhausgasemissionen des Verkehrs in Deutschland von 166 Millionen Tonnen im Jahr 2016 bis zum Jahr 2035 auf null senken lassen - eine Zielmarke, die unter der Prämisse notwendig ist, dass die Erderwärmung auf möglichst 1,5 Grad Celsius begrenzt werden soll. Die Umsetzung dieser von der Staatengemeinschaft auf dem Klimaschutzgipfel in Paris 2015 vorgegebene Zielmarke erfordert eine rasche und konsequente Reduktion der Treibhausgasemissionen in allen Sektoren und auf nationaler wie globaler Ebene.
How is it possible to increase homeowners' insulation activity? Answering this question is key to successful policies regarding energy-efficient buildings worldwide. In Germany, doubling today's insulation rate of about 1% is an important element for reaching the government's target of an 80% reduction in energy demand in the building sector by 2050.
This thesis uses an agent-based model analysis to improve the understanding of homeowners' insulation activity and to explore new approaches aiming at its increase in Germany. Two agent-based models were developed and utilized. The first model was developed mainly based on insights derived from a structured literature review. The second emerged from the previous one, incorporating the results of an online survey conducted among 275 homeowners.
The results indicate that homeowners' economic means have little influence on their decision to install insulation. Instead, their insulation decision-making is mostly affected by situational factors and their attitudes towards insulation. Situational factors, such as the condition of the building, are important because they initiate homeowners' individual decision-making processes on insulation. The simulation results show that improving homeowners’ attitudes about insulation by providing information has a comparatively low potential for increasing their insulation activity. Out of the policy options this thesis explored, the introduction of an obligation to insulate the walls within one year after change of house ownership was found to have the greatest impact on homeowners' insulation activity.
Die MENA-Region steht nicht nur vor erheblichen gesellschaftlichen Herausforderungen, sondern weist ebenfalls deutlichen Entwicklungsbedarf im Stromsystem auf und erfordert dessen nachhaltige Transformation. Durch einen möglichst hohen regionalen Verbleib der damit anfallenden Wertschöpfung könnten sich Chancen für Technologieausrüster ergeben. Allerdings herrscht im derzeitigen Marktstadium noch immer hohe Unsicherheit inwieweit zukünftig tatsächlich eine Marktentwicklung stattfindet. Vor diesem Hintergrund erfolgt die Entwicklung eines multikriteriellen Bewertungsrahmens für Investitionen in die lokale Produktion, wobei Aspekte der Transition-Forschung Anwendung finden.
Decarbonisation of energy systems requires deep structural change. The purpose of this research was to analyse the rates of change taking place in the energy systems of the European Union (EU), in the light of the EU's climate change mitigation objectives. Trends on indicators such as energy intensity and carbon intensity of energy were compared with decadal benchmarks derived from deep decarbonisation scenarios for the electricity, residential, transport, and industry sectors. The methodology applied provides a useful and informative approach to tracking decarbonisation of energy systems. The results show that the EU has made significant progress in decarbonising its energy systems. On a number of indicators assessed the results show that a significant acceleration from historical levels is required in order to reach the rates of change seen on the future benchmarks for deep decarbonisation. The methodology applied provides an example of how the research community and international organisations could complement the transparency mechanism developed by the Paris Agreement on climate change, to improve understanding of progress toward low-carbon energy systems.
Gut 40 Jahre währt bereits die Auseinandersetzung um den Stopp des menschgemachten Klimawandels. Angesichts dessen fragen sich manche Aktivisten, ob dieser "Kampf" um die klimapolitischen Reduktionsziele, insbesondere beim Verbrauch fossiler Energieträger, noch zu gewinnen sei. Die Klimaengagierten aller Länder haben sich zwar vereinigt, aber es handelt sich doch, des ausbleibenden Erfolgs wegen, um eine in Teilen depressionsgeneigte Gemeinschaft. Jeremy Leggett, Mitstreiter der ersten Stunde, will mit seinem aktuellen Buch "The Winning of the Carbon War" dagegen Hoffnung und Zuversicht verbreiten. Ein Erfolg sei möglich und bereits in Ansätzen absehbar. Seine Erfahrungsbasis: Zugänge, die sich aus dem facettenreichen, beruflichen Weg des Autors ergeben. Wer ist dieser Jeremy Leggett und worauf fußt seine Expertise?
Energy of the future? : Sustainable mobility through fuel cells and H2 ; Shell hydrogen study
(2017)
Over the years Shell has produced a number of scenario studies on key energy issues. These have included studies on important energy consumption sectors such as passenger cars and commercial vehicles (lorries and buses) and the supply of energy and heat to private households, as well as studies on the state of and prospects for individual energy sources and fuels, including biofuels, natural gas and liquefied petroleum gas.
Shell has been involved in hydrogen production as well as in research, development and application for decades, with a dedicated business unit, Shell Hydrogen. Now, in cooperation with the Wuppertal Institute in Germany, Shell has conducted a study on hydrogen as a future energy source. The study looks at the current state of hydrogen supply path- ways and hydrogen application technologies and explores the potential and prospects for hydrogen as an energy source in the global energy system of tomorrow. The study focuses on the use of hydrogen in road transport and specifically in fuel cell electric vehicles (FCEVs), but it also examines non-automotive resp. stationary applications.
One of the main objectives of impact assessments is to identify potentially significant impacts. However, determining this significance has received very limited attention as a procedural step in social impact assessments. Consequently, only limited research and documentation exists on approaches, survey tools and evaluation methods, especially with regard to participatory approaches and combined participatory-technical approaches. This study aims to address this research gap by developing and applying a joined participatory and technical impact significance evaluation. The approach is applied in a case study which analysed the livelihood impacts of the large-scale concentrated solar power plant NOORO I in Ouarzazate, Morocco.
The analysis shows that although different approaches and significance criteria must be applied when involving both local stakeholders and experts, the linked analysis offers more robust results and an improved basis for decision-making. Furthermore, it was observed in the case study that impacts affecting the social, cultural and political spheres were more often considered significant than impacts affecting the physical and material livelihood dimensions. Regarding sustainability assessments of large-scale renewable energy plants, these findings underline the importance (as for other large-scale infrastructure developments) of placing greater emphasis on the inclusion of social aspects in impact assessments.
The future belongs to the youth, but do they really have a say in it? Learning processes with regard to a successful socio-ecological change must start in childhood and adolescence in order to succeed in social transformation. The youth cannot be a passive part in a changing society - they have to be actively included in its design. When allowed to participate, young people can make important and effective contributions - which should not be reduced to sub-projects and opportunity structures. In a socio-political context, participation means involvement, collaboration, and commitment. In the context of intra- and inter-generational equity, as the core part of sustainable development, participation strategies should be developed that allow for a permanent and purposeful involvement of children and adolescents. Participation of young people is an important and appropriate step in strengthening those who are so strongly affected by the planning processes but are otherwise powerless. A successful involvement and participation of non-professional actors requires a target group-oriented method, a supportive culture of participation, as well as clarity and decision latitude. Abiding by these rules leads to central results.
Die Energiewende regional gestalten : auf dem Weg zu einer Energiewende-Roadmap im Ruhrgebiet
(2017)
Diese Broschüre ist ein Produkt des Rahmenprogramms zur Umsetzung der Energiewende in den Kommunen des Ruhrgebiets: Die Aufgabe des Projektes bestand darin auszuloten, in welcher Weise Kommunen ihre Handlungskapazitäten zur Umsetzung der Energiewende in der Region bewahren beziehungsweise perspektivisch erweitern können.
Das Rahmenprogramm steuerte in seiner dreijährigen Projektlaufzeit (2013-2016) einen Beitrag zur Analyse der Handlungsfähigkeit von Kommunen im Ruhrgebiet zur Umsetzung der Energiewende bei und systematisierte bisherige Handlungsansätze in der Region. Es setzte an bestehenden Rahmenbedingungen an und versuchte, in Zusammenarbeit mit regionalen Akteurinnen und Akteuren künftige Handlungsansätze für eine langfristig angelegte Umsetzung der Energiewende in der Region zu identifizieren. Das vorliegende Dokument führt Ergebnisse des Projektes zusammen und formuliert strategische Hinweise für die weitere Umsetzung der Energiewende im Ruhrgebiet.
Following the decisions of the Paris climate conference at the end of 2015 as well as similar announcements e.g. from the G7 in Elmau (Germany) in the summer of 2015, long-term strategies aiming at (almost) full decarbonisation of the energy systems increasingly move into the focus of climate and energy policy. Deep decarbonisation obviously requires a complete switch of energy supply towards zero GHG emission sources, such as renewable energy. A large number of both global as well as national climate change mitigation scenarios emphasize that energy efficiency will likewise play a key role in achieving deep decarbonization. However, the interdependencies between a transformation of energy supply on the one hand and the role of and prospects for energy efficiency on the other hand are rarely explored in detail.
This article explores these interdependencies based on a scenario for Germany that describes a future energy system relying entirely on renewable energy sources. Our analysis emphasizes that generally, considerable energy efficiency improvements on the demand side are required in order to have a realistic chance of transforming the German energy system towards 100 % renewables. Efficiency improvements are especially important if energy demand sectors will continue to require large amounts of liquid and gaseous fuels, as the production of these fuels are associated with considerable energy losses in a 100 % renewables future. Energy efficiency on the supply side will therefore differ considerably depending on how strongly the use of liquid and gaseous fuels in the various demand sectors can be substituted through the direct use of electricity. Apart from a general discussion of the role of energy efficiency in a 100 % renewable future, we also look at the role of and prospects for energy efficiency in each individual demand sector.
Energy-intensive processing industries (EPIs) produce iron and steel, aluminum, chemicals, cement, glass, and paper and pulp and are responsible for a large share of global greenhouse gas emissions. To meet 2050 emission targets, an accelerated transition towards deep decarbonization is required in these industries. Insights from sociotechnical and innovation systems perspectives are needed to better understand how to steer and facilitate this transition process. The transitions literature has so far, however, not featured EPIs. This paper positions EPIs within the transitions literature by characterizing their sociotechnical and innovation systems in terms of industry structure, innovation strategies, networks, markets and governmental interventions. We subsequently explore how these characteristics may influence the transition to deep decarbonization and identify gaps in the literature from which we formulate an agenda for further transitions research on EPIs and consider policy implications. Furthering this research field would not only enrich discussions on policy for achieving deep decarbonization, but would also develop transitions theory since the distinctive EPI characteristics are likely to yield new patterns in transition dynamics.
Szenarien spielten und spielen eine zentrale Rolle für die Gestaltung der Energiewende. Sie beschreiben dabei auf konsistente Weise die mögliche zukünftige Entwicklung des Systems unter bestmöglicher Berücksichtigung des aktuellen Wissens bezüglich des Systems, d.h. der internen Abhängigkeiten und Wechselwirkungen der Systemkomponenten, aber auch die Abhängigkeit der Systementwicklung von äußeren Faktoren. Damit liefern Szenarien Leitplanken für zentrale technisch-strukturelle, energiepolitische, ökonomische und gesellschaftliche Weichenstellungen, die einen zielgerichteten Transformationsprozess flankieren müssen.
Bei der Energiewende handelt es sich um einen komplexen Transformationsprozess, der nicht allein aus der nationalen Perspektive betrachtet werden kann. Er ist nicht vollständig unabhängig, sondern in einen Mehr-Ebenen-Prozess eingebunden. Es gilt entsprechend sowohl lokale als auch regionale, nationale, europäische und auch die internationalen Energiewendeprozesse und zugehörigen Rahmenbedingungen zu diskutieren und zu beachten. Es gilt aber auch, über den eigentlichen Energiebereich hinausgehende Trends in ihren Wechselwirkungen mit dem Energiesystem zu identifizieren und zu analysieren. Mit der Energiewende wird zudem eine Zielvielfalt angesprochen. Es geht über das Erreichen von Klimaschutzzielen hinaus um eine größere Vielfalt von gesellschaftlich-politischen Zielen.
Der Transformationsprozess hat keine eindimensionale Zielorientierung, sondern muss in einer mehrdimensionalen Betrachtung analysiert werden.
Dieser Artikel ist der Frage gewidmet, welchen Beitrag eine verstärkte Sektorenkopplung zum Gelingen der Energiewende leisten kann. Ausgehend von einer Einführung der Prinzipien und Technologien bietet er Einblicke in die zur Erforschung der Sektorenkopplung angewendeten Methoden, sowie ausgewählte Ergebnisse.
Hinsichtlich der Energieversorgung versteht man unter Sektorenkopplung im Allgemeinen eine engere Verzahnung und Verknüpfung verschiedener Energieanwendungsbereiche, sowie die Zunahme von Verzweigungs- und Verknüpfungsstellen im Energiesystem. Die wesentlichen Anwendungsbereiche der Energie sind dabei die Bereitstellung von Strom, Wärme und Mobilität.
The contribution of the EU bioeconomy to sustainable development depends on how it is implemented. A high innovation potential is accompanied by considerable risks, in particular regarding the exacerbation of global land use conflicts. This article argues that a systemic monitoring system capable of connecting human-environment interactions and multiple scales of analysis in a dynamic way is needed to ensure that the EU bioeconomy transition meets overarching goals, like the Sustainable Development Goals. The monitoring should be centered around a dashboard of key indicators and targets covering environmental, economic, and social aspects of the bioeconomy. With a focus on the land dimension, this article examines the strengths and weakness of different economic, environmental and integrated models and methods for monitoring and forecasting the development of the EU bioeconomy. The state of research on key indicators and targets, as well as research needs to integrate these aspects into existing modeling approaches, are assessed. The article concludes with key criteria for a systemic bioeconomy monitoring system.
Die deutschen Braun- und Steinkohlekraftwerke produzieren 40 % des deutschen Stroms - sind aber für 80 % der Treibhausgasemissionen in diesem Sektor verantwortlich. Ein sukzessiver Ausstieg aus der Kohleverstromung kann daher einen entscheidenden Beitrag leisten, die deutschen Klimaziele zu erreichen und den Pfad zur Einhaltung der Klimaziele von Paris offen zu halten. Vor diesem Hintergrund hat sich in den letzten Jahren in Deutschland eine Debatte um einen möglichen nationalen Kohleausstieg entsponnen.
Der Naturschutzbund Deutschland (NABU) hat das Wuppertal Institut daher beauftragt, zentrale wissenschaftliche Studien und politische Positionspapiere zum Thema Kohleausstieg zu analysieren. In der nun vorliegenden Metastudie fassen die Autoren den aktuellen Diskussionsstand zu wichtigen Eckpfeilern eines beschleunigten Kohleausstiegs in Deutschland zusammen. Analysiert wurden insbesondere Aussagen zur klimapolitischen Notwendigkeit und zur energiewirtschaftlichen Machbarkeit unterschiedlicher Zeithorizonte eines Kohleausstiegs sowie Optionen für eine sozialverträgliche Gestaltung des damit einhergehenden Strukturwandels.
Feedback devices can be used to inform households about their energy-consumption behavior. This may persuade them to practice energy conservation. The use of feedback devices can also - via word of mouth - spread among households and thereby support the spread of the incentivized behavior, e.g. energy-efficient heating behavior. This study investigates how to manage the impact of these environmental innovations via marketing. Marketing activities can support the diffusion of devices. This study aims to identify the most effective strategies of marketing feedback devices. We did this by adapting an agent-based model to simulate the roll-out of a novel feedback technology and heating behavior within households in a virtual city. The most promising marketing strategies were simulated and their impacts were analyzed. We found it particularly effective to lend out feedback devices to consumers, followed by leveraging the social influence of well-connected individuals, and giving away the first few feedback devices for free. Making households aware of the possibility of purchasing feedback devices was found to be least effective. However, making households aware proved to be most cost-efficient. This study shows that actively managing the roll-out of feedback devices can increase their impacts on energy-conservation both effectively and cost-efficiently.
Simulation modeling is useful to understand the mechanisms of the diffusion of innovations, which can be used for forecasting the future of innovations. This study aims to make the identification of such mechanisms less costly in time and labor. We present an approach that automates the generation of diffusion models by: (1) preprocessing of empirical data on the diffusion of a specific innovation, taken out by the user; (2) testing variations of agent-based models for their capability of explaining the data; (3) assessing interventions for their potential to influence the spreading of the innovation. We present a working software implementation of this procedure and apply it to the diffusion of water-saving showerheads. The presented procedure successfully generated simulation models that explained diffusion data. This progresses agent-based modeling methodologically by enabling detailed modeling at relative simplicity for users. This widens the circle of persons that can use simulation to shape innovation.
In order to analyse the mid- and long-term impacts of energy related policies, different modelling approaches can be derived. However, the results of even the best energy system model will highly depend on the underlying input data. First, in this contribution the importance and availability issues of grid data in the context of energy system modelling are highlighted. Second, this paper focuses on power grid modelling based on open and publicly available data from OpenStreetMap using open source software tools. Two recent approaches developed to build electrical transmission network models using openly available data sources are presented and discussed. The proposed methods provide transparent assumptions, simplifications and documentation of grid modelling. This results in the ability of scientists and other stakeholders to validate, discuss or reproduce the results of energy system models. Thus the new open approaches offer a unique opportunity to increase transparency, comparability and reproducibility of results in energy system modelling.
The transformation processes towards a sustainable development are complex. How can science contribute towards new solutions and ideas leading to change in practice? The authors of this book discuss these questions along the energy transition in the building sector.
A transformative research that leaves the neutral observer position needs appropriate concepts and methods: how can knowledge from different disciplines and from practice be integrated in order to be able to explain and understand complex circumstances and interrelations? What role do complex (agent-based) models and experiments play in this respect? Which mix of methods is required in transformative science in order to actively support the actors in transformation processes?
Theses questions are illustrated by the example of the BMBF funded project "EnerTransRuhr".
Energie der Zukunft? : Nachhaltige Mobilität durch Brennstoffzelle und H2 ; Shell Wasserstoff-Studie
(2017)
Wasserstoff ist ein Element, das viel Beachtung erhält: Es gilt als Basis einer nachhaltigen Energiezukunft. Allerdings ist Wasserstoff nicht allein, er konkurriert mit anderen Energien und ihren Nutzungstechnologien. Es stellt sich die Frage, ob Wasserstoff im globalen Energiesystem der Zukunft eine tragende Rolle spielen kann bzw. wird. Shell ist schon seit Jahrzehnten in der Wasserstoff-Forschung und -Entwicklung aktiv. In Zusammenarbeit mit dem Wuppertal Institut hat Shell jetzt eine Energieträger-Studie erstellt, die sich mit dem aktuellen Stand und den langfristigen Perspektiven der Wasserstoffnutzung, insbesondere für Energie- und Verkehrszwecke, befasst.
Die Shell Wasserstoff-Studie diskutiert zunächst natürliche Vorkommen, Eigenschaften sowie historische Sichtweisen des Elements Wasserstoff. Anschließend werden aktuelle sowie künftige Verfahren und Ausgangsstoffe zur Erzeugung von Wasserstoff untersucht; dabei werden die Herstellungspfade in puncto Energieaufwand, Treibhausgasemissionen sowie Bereitstellungskosten miteinander verglichen. Weiterhin werden Fragen der Wasserstofflogistik untersucht. Dazu gehören zum einen heutige und künftige Speichermethoden, zum anderen die verschiedenen Transportoptionen und ihre jeweiligen Vorzüge einschließlich Fragen der Transportökonomie.
Es folgt eine Darstellung der unterschiedlichen Nutzungsmöglichkeiten von Wasserstoff. Unterschieden wird zwischen stofflichen und energetischen Nutzungen. Die Analyse der energetischen Wasserstoffnutzung fokussiert auf die Brennstoffzelle - und nicht auf Wärmekraftprozesse. Auf der Anwenderseite werden energetische stationäre Anwendungen für die Back-up-Stromerzeugung sowie die Hausenergieversorgung - und diese einschließlich Wirtschaftlichkeit - untersucht.
Den Schwerpunkt der Studie bilden (auto)mobile Wasserstoffanwendungen. Hierfür werden zunächst technologischer Stand und Perspektiven mobiler Anwendungen - von der Raumfahrt über Material Handling bis hin zum Pkw - erörtert. Anschließend wird die Wirtschaftlichkeit von wasserstoff-betriebenen Brennstoffzellen-Pkw (FCEV) mit Hilfe eines vereinfachten Autokosten-Vergleichs analysiert. Es schließt sich eine Diskussion des Aufbaus einer Wasserstoff-Tankstelleninfrastruktur für den Straßenverkehr an. Abschließend werden in Anlehnung an das ambitionierte 2DS-Wasserstoffszenario der Internationalen Energieagentur mögliche Auswirkungen von Brennstoffzellen-Pkw auf Kraftstoffverbrauch und Treibhausgasemissionen in ausgewählten Regionen bis 2050 diskutiert.
Various electricity generation technologies using different primary energy sources are available. Many published studies compare the costs of these technologies. However, most of those studies only consider plant-level costs and do not fully take into account additional costs that societies may face in using these technologies. This article reviews the literature on the costs of electricity generation technologies, aiming to determine which types of costs are relevant from a societal point of view when comparing generation technologies. The paper categorises the relevant types of costs, differentiating between plant-level, system and external costs as the main categories. It discusses the relevance of each type of cost for each generation technology. The findings suggest that several low-carbon electricity generation technologies exhibit lower social costs per kWh than the currently dominant technologies using fossil fuels. More generally, the findings emphasise the importance of taking not only plant-level costs, but also system and external costs, into account when comparing electricity generation technologies from a societal point of view. The article intends to inform both policymakers and energy system modellers, the latter who may strive to include all relevant types of costs in their models.
In spite of current multiple political crises, global warming will remain a prime issue on the global agenda. The adoption of the Paris Agreement in 2015 and its quick ratification in 2016 have created a strong momentum for worldwide action against climate change. As global greenhouse gas emissions must decline towards levels close to zero by the middle of the century, the rapid decarbonisation of energy systems is high on the agenda of most countries around the globe.
This publication delivers insights into cutting edge research on the necessary transitions towards low carbon societies and by this aims to contribute to international as well as national policymaking.
The topics covered in more than 20 concise original articles are among the most important issues for progressing solutions for climate change and sustainable development. The papers discuss recent findings and case studies in the following subject areas:
Governance of the necessary long-term transitions in the context of potential known and unknown adverse developments;
Policy instruments and strategies that allow for financing the transition to low carbon economies and, at the same time, respond to today's economic and social challenges;
Integrated strategies for three of the most important arenas of global decarbonisation: Cities, as much of the change and necessary investment for low carbon societies must take place, be planned, be financed and be built in cities; industry, particularly the energy-intensive processing industries, which are at the core of society's metabolism and are responsible for a large and growing share of global emissions and science as a whole, which must become more solutions-oriented because the transitions needed will rely heavily on research providing solutions for technological as well as societal problems.
As a contribution to these great challenges and at the request of the G7 Environment Ministers, the Low Carbon Society Research Network (LCS-RNet) acts as a forum aimed at fostering research and policymaking to jointly achieve decarbonised energy systems in countries around the world. It convenes leading scientists, practitioners and policymakers and aims at supporting governments in proceeding jointly towards the design and implementation of climate-friendly low carbon societies.
Replacing traditional technologies by renewables can lead to an increase of emissions during early diffusion stages if the emissions avoided during the use phase are exceeded by those associated with the deployment of new units. Based on historical developments and on counterfactual scenarios in which we assume that selected renewable technologies did not diffuse, we conclude that onshore and offshore wind energy have had a positive contribution to climate change mitigation since the beginning of their diffusion in EU27. In contrast, photovoltaic panels did not pay off from an environmental standpoint until very recently, since the benefits expected at the individual plant level were offset until 2013 by the CO2 emissions related to the construction and deployment of the next generation of panels. Considering the varied energy mixes and penetration rates of renewable energies in different areas, several countries can experience similar time gaps between the installation of the first renewable power plants and the moment in which the emissions from their infrastructure are offset.
The analysis demonstrates that the time-profile of renewable energy emissions can be relevant for target-setting and detailed policy design, particularly when renewable energy strategies are pursued in concert with carbon pricing through cap-and-trade systems.
"Energiewende", which roughly translates as the transformation of the German energy sector in accordance with the imperatives of climate change, may soon become a byword for the corresponding processes most other developed countries are at various stages of undergoing. Germany's notable progress in this area offers valuable insights that other states can draw on in implementing their own transitions. The German state of North Rhine-Westphalia (NRW) is making its own contribution to achieving the Energiewende's ambitious objectives: in addition to funding an array of "clean and green" projects, the Virtual Institute Power to Gas and Heat was established as a consortium of seven scientific and technical organizations whose aim is to inscribe a future, renewable-based German energy system with adequate flexibility. Thus, it is tasked with conceiving of and evaluating suitable energy path options. This paper outlines one of the most promising of these pathways, which is predicated on the use of electrolytically-produced hydrogen as an energy storage medium, as well as the replacement of hydrocarbon-based fuel for most road vehicles. We describe and evaluate this path and place it in a systemic context, outlining a case study from which other countries and federated jurisdictions therein may draw inspiration.
Accelerating the diffusion of domestic biogas is considered to be a promising option for reaching the goal of universal access to energy by 2030, particularly for the provision of cooking energy for rural populations in developing countries. The aim of this study is to develop a systematic account of the factors that influence the diffusion of domestic biogas technologies. To achieve this objective, a three step analysis approach is applied. In the first step, a conceptual model is built based on insights from scholars that have been studying the diffusion of energy innovations in rural contexts. In the next step, a qualitative content analysis of scientific literature is undertaken to test and refine the categories proposed by the conceptual model and to systematically organise the empirical evidence of the factors that influence the diffusion of domestic biogas in developing and emerging countries. The systemised evidence is used to identify the components and interactions between the household configurations and socio-economic context that determine both the adoption process at household level and the overall technology diffusion. Finally, in the last step, we reflect on the implications of the resultant systematic conceptualisation regarding the purpose and design of programmes promoting the dissemination of domestic biogas technologies.
In recent years, a number of energy scenario studies which aim to advise policy makers on appropriate energy policy measures have been developed. These studies highlight changes required to achieve a future energy system that is in line with public policy goals such as reduced greenhouse gas emissions and an affordable energy supply. We argue that behavioural changes towards energy-sufficient lifestyles have considerable potential to contribute to public policy goals and may even be indispensable for achieving some of these goals. This potential should, therefore, be reflected in scenario studies aiming to provide comprehensive advice to policy makers. We analyse the role that energy-sufficient lifestyles play in prominent recent global energy scenario studies and find that these studies largely ignore the potential of possible behavioural changes towards energy-sufficient lifestyles. We also describe how such changes have been considered in several other scenario studies, in order to derive recommendations for the future development of global energy scenarios. We conclude that the inclusion of lifestyle changes in energy scenarios is both possible and useful. Based on our findings, we present some general advice for energy scenario developers on how to better integrate sufficiency into future energy scenario studies in a quantitative manner.
In October 2014, the European Council agreed on a target of improving overall energy efficiency by at least 27 per cent by 2030. According to the European Council's conclusions, this target should not be translated into nationally binding targets. Nevertheless individual Member States are free to set higher national objectives if desired. However, it is difficult to assess the degree of ambition of a national target because so far not much light has been shed upon the exact size of the untapped efficiency potentials.
This paper provides an in-depth analysis and comparison of existing studies on energy efficiency potentials in the European Union's (EU) Member States by 2030. It includes a structured overview of the results, information on the quality of the available data and suggestions for improvement.
The review shows that comprehensive studies on national energy efficiency potentials are rare and hardly comparable. The existing studies agree on the existence of significant potentials for energy efficiency. Their outcomes, however, vary significantly in terms of national levels. Assuming low policy intensity, energy savings between 10 and 28 per cent could be realised by 2030 compared to a baseline development, in the case of high policy intensity 7-44 per cent. Technical energy efficiency potentials in the different EU Member States are estimated at 14-52 per cent. On average, energy savings of 27 per cent by 2030 appear to be feasible with significant policy effort. We conclude that the deviation in Member States' energy efficiency potentials resulting from different studies represents an indication of the so far poor quality of underlying data. In order to allow for a concretisation of efficiency potential estimates, the comparability and detail of information sources should be improved.