113 research outputs found
Key strategies to achieve deep decarbonisation of the industry sector : insights from a meta-analysis of recent climate neutrality scenarios for Germany
The EU aims to become the first climate neutral continent. To achieve this goal, the industry sector needs to reduce its GHG emissions to net zero or at least close to net zero. This is a particularly challenging task due to the high energy demand especially of primary materials production and the little potential to reduce this energy intensity when switching to other production processes based on electricity or hydrogen. In order to identify robust strategies for achieving a net-zero-compatible industry sector, the paper at hand analyses the transformation of the industry sector as described by a number of recent climate neutrality scenarios for Germany. Apart from overall industry, a focus is set on the sectors of steel, chemicals and cement. The analysed scenarios show very deep GHG emission reductions in industry and they appear to be techno-economically feasible by the mid of the century, without relying on offsets or on shifts from domestic production to imports. The scenarios agree on a suite of core strategies to achieve this, such as direct and indirect electrification, energy efficiency and recycling as well as new technological routes in steel making and cement. The scenarios differ, however, regarding the future mix of electricity, hydrogen and biomass and regarding the future relevance of domestic production of basic chemicals
Kein Grund zur Panik : Preiseffekte eines beschleunigten Kernenergieausstiegs
Mit dem Kernenergieunfall im japanischen Fukushima im März 2011 ist die Diskussion über das Für und Wider der Nutzung der Kernenergie für die Stromerzeugung in Deutschland neu entbrannt. Die Frage nach den Auswirkungen eines beschleunigten Ausstiegs aus der Kernenergienutzung auf die Entwicklung der Strompreise in Deutschland bildete in den vergangenen Monaten einen Schwerpunkt der öffentlichen Diskussion. Allerdings halten nicht alle Aussagen, die hierzu veröffentlicht wurden, einer kritischen Analyse stand, was zum Teil auch an zugrunde liegenden politischen Motiven gelegen haben mag. Eine Untersuchung fundierter Studien und ausgewählter Stellungnahmen zeigt, dass sich die befürchteten kurzfristigen Preiseffekte in ü̈berschaubaren Grenzen halten werden
Quantitativer Vergleich aktueller Klimaschutzszenarien für Deutschland
Die vorliegende Darstellung vergleicht fünf ausgewählte aktuelle Klimaschutzszenarien für Deutschland in Hinblick auf zentrale Entwicklungen im Energiesystem bis Mitte des Jahrhunderts. Die fünf Szenarien sind zwischen April und Oktober 2021 erschienen und beschreiben unterschiedliche Pfade, wie Klimaneutralität in Deutschland bis zum Jahr 2045 bzw. 2050 erreicht werden könnte. Die Szenarien wurden von verschiedenen Organisationen in Auftrag gegeben und von unterschiedlichen wissenschaftlichen Instituten bzw. Beratungsunternehmen erarbeitet.
Im vorliegenden Vergleich werden verschiedene Kenngrößen des Energiesystems auf Energieangebots- sowie Energienachfrageseite betrachtet. Die Gegenüberstellung der jeweiligen Entwicklungen in den Szenarien soll aufzeigen, in welchen Bereichen die Studien auf dem Weg zur Klimaneutralität ähnliche Entwicklungen vorsehen und in welchen Bereichen es derzeit noch deutlich abweichende Vorstellungen über die genaue Ausgestaltung der Energiesystemtransformation gibt
Energy efficiency quo vadis? : The role of energy efficiency in a 100 % renewable future
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
Quantifizierung der Treibhausgasminderungspotenziale möglicher klimaschutzpolitischer Maßnahmen in Bayern für das Jahr 2030 : Studie im Auftrag der Fraktion BÜNDNIS 90/ DIE GRÜNEN im Bayerischen Landtag
Im Auftrag der Fraktion BÜNDNIS 90/DIE GRÜNEN im Bayerischen Landtag haben Forschende des Wuppertal Instituts wissenschaftlich überprüft, wie viele Treibhausgas-Emissionen im Jahr 2030 bestimmte landespolitische Klimaschutz-Maßnahmen potenziell einsparen können. Die vorliegende Studie schätzt dabei sowohl die Effekte der Maßnahmen auf die insgesamt verursachten Treibhausgas-Emissionen (Verursacherprinzip) als auch auf die in Bayern selbst statistisch erfassten Emissionen (Quellenprinzip) ab.
Die Maßnahmen adressieren die folgenden fünf Bereiche: 1) Gebäude und Verkehrsmittel im Besitz der öffentlichen Hand. 2) Ausbau der Windenergie und Photovoltaik. 3) Energieeffizienz im Gebäudesektor. 4) Energieeffizienz und Verkehrsverlagerung im Transportsektor. 5) Landwirtschaft und Landnutzung.
Zwei Beispiele der untersuchten Maßnahmen sind Verbesserungen der Rahmenbedingungen für den Bau neuer Windenergieanlagen und eine stärkere Nutzung des industriellen Abwärmepotenzials
Deep decarbonisation pathways for the industrial cluster of the Port of Rotterdam
The Port of Rotterdam is an important industrial cluster mainly comprising of oil refining, chemical manufacturing and power and steam generation. In 2015, the area accounted for 18 % of the Netherlands' total CO2 emissions. The Port of Rotterdam Authority is aware that the port's economy is heavily exposed to future global and EU decarbonization policies, as the bulk of its activities focuses on trading, handling, converting and using fossil fuels. Based on a study for the Port Authority, our paper explores possible pathways of how the industrial cluster can keep its strong market position in Europe and still reduce its CO2 emissions by 98 % by 2050. The "Biomass and CCS" scenario assumes that large amounts of biomass can be supplied sustainably and will be used in the port for power generation as well as for feedstock for refineries and the chemical industry. Fischer-Tropsch fuel generation plays an important role in this scenario, allowing the port to become a key cluster for the production of synthetic fuels and feedstocks in Western Europe. The "Closed Carbon Cycle" scenario assumes that renewables-based electricity will be used at the port to supply heat and hydrogen for the synthetic generation of feedstock for the chemical industry. The carbon required for the chemicals will stem from recycled waste. Technologies particularly needed in this scenario are water electrolysis and gasification or pyrolysis to capture carbon from waste, as well as technologies for the production of base chemicals from syngas. The paper compares both scenarios with regard to their respective technological choices and infrastructural changes. The scenarios’ particular opportunities and challenges are also discussed. Using possible future pathways of a major European petrochemical cluster as an example, the paper illustrates options for deep decarbonisation of energy intensive industries in the EU and beyond
Conceptualisation of the potential renewables pull effect : a result of topic area 3 "scenarios and transformation pathways" of the research project SCI4climate.NRW
This report was prepared by the Wuppertal Institute in cooperation with the German Economic Institute as part of the SCI4climate.NRW project. The report aims to shed light on the possible phenomenon that the availability and costs of "green" energy sources may become a relevant location factor for basic materials produced in a climate-neutral manner in the future.
For this purpose, we introduce the term "Renewables Pull". We define Renewables Pull as the initially hypothetical phenomenon of a shift of industrial production from one region to another as a result of different marginal costs of renewable energies (or of secondary energy sources or feedstocks based on renewable energies).
Shifts in industrial production in the sense of Renewables Pull can in principle be caused by differences in the stringency of climate policies in different countries, as in the case of Carbon Leakage. Unlike Carbon Leakage, however, Renewables Pull can also occur if similarly ambitious climate policies are implemented in different countries. This is because Renewables Pull is primarily determined by differences in the costs and availability of renewable energies. In addition, Renewables Pull can also be triggered by cost reductions of renewable energies and by changing preferences on the demand side towards climate-friendly products. Another important difference to Carbon Leakage is that the Renewables Pull effect does not necessarily counteract climate policy.
Similar to Carbon Leakage, it is to be expected that Renewables Pull could become relevant primarily for very energy-intensive products in basic materials industries. In these sectors (e.g. in the steel or chemical industry), there is also the possibility that relocations of specific energy-intensive parts of the production process could trigger domino effects. As a result, large parts of the value chains previously existing in a country or region could also be subjected to an (indirect) Renewables Pull effect.
For the federal state of NRW, in which the basic materials industry plays an important role, the possible emergence of Renewables Pull is associated with significant challenges as climate policy in Germany, the EU and also worldwide is expected to become more ambitious in the future.
This report aims to enable and initiate a deeper analysis of the potential future developments and challenges associated with the Renewables Pull effect. Thus, in the final chapter of the report, several research questions are formulated that can be answered in the further course of the SCI4climate.NRW project as well as in other research projects
Klimaneutralität bis 2045 : Vergleich der Entwicklungen im Energiesystem in aktuellen Szenarien für Deutschland
Der Diskurs um die Transformation des Energiesystems ist in den vergangenen Jahren vermehrt über wissenschaftlich fundierte Szenarien geführt worden, die aus verschiedenen gesellschaftlichen Perspektiven in Auftrag gegeben wurden. Der Vergleich von vier im Jahr 2021 erschienenen Studien zeigt auf, wo weitgehende Einigkeit über die erforderlichen Strategien zur Erreichung der Klimaneutralität bis 2045 besteht, und wo die größten Differenzen liegen
Wege zu einer klimaneutralen Industrie
Das Ziel der Klimaneutralität bis zum Jahr 2045 stellt nicht zuletzt den Industriesektor vor erhebliche Herausforderungen. Für diesen Sektor werden teilweise sehr unterschiedliche Entwicklungspfade in Richtung Klimaneutralität beschrieben, wie ein Blick in verschiedene aktuelle Szenariostudien zeigt. Dennoch gibt es auch im Industriesektor bestimmte Emissionsminderungsstrategien, die in allen vorliegenden Szenarien als unverzichtbar angesehen werden
Uncertainty management and the dynamic adjustment of deep decarbonization pathways
Contrary to "static" pathways that are defined once for all, this article deals with the need for policy makers to adopt a dynamic adaptive policy pathway for managing decarbonization over the period of implementation. When choosing a pathway as the most desirable option, it is important to keep in mind that each decarbonization option relies on the implementation of specific policies and instruments. Given structural, effectiveness, and timing uncertainties specific to each policy option, they may fail in delivering the expected outcomes in time. The possibility of diverging from an initial decarbonization trajectory to another one without incurring excessive costs should therefore be a strategic element in the design of an appropriate decarbonization strategy. The article relies on initial experiences in France and Germany on decarbonization planning and implementation to define elements for managing dynamic adjustment issues. Such an adaptive pathway strategy should combine long-lived incentives, like a pre-announced escalating carbon price, to form consistent expectations, as well as adaptive policies to improve overall robustness and resilience. We sketch key elements of a monitoring process based on an ex ante definition of leading indicators that should be assessed regularly and combined with signposts and trigger values at the subsector level
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