Zukünftige Energie- und Industriesysteme
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Das übergeordnete Ziel des Forschungs-Projektes RESTORE 2050 (Regenerative Stromversorgung & Speicherbedarf in 2050; Förderkennzeichen 03SF0439) war es, wissenschaftlich belastbare Handlungsempfehlungen für die Transformation des deutschen Stromsystems im europäischen Kontext zu geben. Dafür wurden auf Basis der zukünftig prognostizierten Entwicklung von Stromangebot und -nachfrage innerhalb des ENTSO-E Netzverbundes für den Zeithorizont des Jahres 2050 sowie mittels örtlich und zeitlich hoch aufgelöster meteorologischer Zeitreihen die Themenkomplexe (1) Nationale Ausbaustrategien für erneuerbare Energien, (2) Übertragungsnetzausbau und (3) Alternativmaßnahmen wie Lastmanagement, (4) Bedeutung des EE-Stromaustauschs mit Drittstaaten und (5) die Rolle von Stromspeichern auf Übertragungsnetzebene analysiert. Die aus den Untersuchungsergebnissen abgeleitenden Handlungsempfehlungen stellen wichtige Beiträge für die weitere Integration von erneuerbaren Energien dar und geben Hinweise für den Aufbau einer leistungsfähigen europäischen Infrastruktur.
Auch der Verkehr muss zukünftig seine Beiträge zur klimapolitisch gebotenen Dekarbonisierung von Wirtschaft und Gesellschaft leisten. Dabei rücken insbesondere Segmente in den Fokus der Aufmerksamkeit, die sich durch ein besonders stark ausgeprägtes Wachstum auszeichnen. Dies trifft insbesondere für den Versandhandel und den Paketversand zu. Eine klimapolitisch bedeutsame Frage ist hierbei, wie sich das Wachstum des Versandhandels in einer Einkaufsverkehr und Güterverkehr integrierenden Gesamtbilanz auf die verkehrlich bedingten Emissionen von Klimagasen auswirkt. Welche Faktoren begünstigen eher höhere und welche geringere Emissionen? Wie wirken aktuelle Trends? Wie lassen sich diese Faktoren in einer Weise steuern, dass hieraus Beiträge zur Dekarbonisierung erwachsen können? Welche Akteure sind dabei jeweils besonders relevant?
Die vorliegende explorative Studie versucht auf einige dieser Fragen Antworten zu geben. Für die Beantwortung der genannten Fragen geht es zunächst darum, die Treiber des Wachstums im Versandhandel hinsichtlich ihrer Bedeutung zutreffend einzuschätzen. Untersucht wird dazu deskriptiv die Entwicklungsdynamik von Versandhandel und Paketversand. Zudem werden die hauptsächlichen Determinanten der Klimawirkungen von Versandhandel und Einkauf im stationären Einzelhandel identifiziert.
Durch den zu erwartenden Rückgang der Braunkohleverstromung in Deutschland wird der Strukturwandel in der Lausitz weiter beschleunigt werden. Die Energiewende erfordert also eine konsistente strukturpolitische Flankierung, für diejenigen Regionen, die bisher ökonomisch stark vom Braunkohlebergbau (inklusive Vorketten und Folgeindustrien) abhänging sind. Vor diesem Hintergrund hat die Brandenburger Landtagsfraktion von Bündnis 90 / Die Grünen das Wuppertal Institut beauftragt, erste Empfehlungen für strategische Ansätze einer präventiven Strukturpolitik in der Lausitz zu entwickeln. Die Kurzstudie nimmt besonders in den Blick, welche Erkenntnisse sich aus den Erfahrungen mit dem Strukturwandel in Nordrhein-Westfalen und insbesondere dem Rheinischen Revier für die Gestaltung des Strukturwandels in der Lausitz ableiten lassen.
Renewable energy plays a key role in the sustainable pathway towards a low carbon future and, despite new supply capacities, the transformation of the energy system also requires the adoption of a method which allows for the integration of increasing amounts of renewable energy. This requires a transition to more flexible processes at an industrial level and demand side management (DSM) is one possible way of achieving this transition. Currently, increased shares of variable renewable energy can cause the electricity supply to become more volatile and result in changes to the electricity market. In order to develop a new dynamic equilibrium to balance supply and demand, sufficient flexibility in demand is required. As adequate storage systems are not available in the short to medium term, the potential for large electricity consumers to operate flexibly is an attractive, pragmatic and feasible option. Recent studies in Germany suggest that there is significant potential for DSM in so-called "energy-intensive industries". However, the figures (which fall in the approximate range of 1,250-2,750 MW positive and 400-1,300 MW negative shiftable load) should be interpreted with caution. The range of industrial processes considered are diverse and vary from plant to plant, with the result that it is difficult to provide accurate calculations of the accumulated potential for Germany or the EU as a whole. Based on extensive surveys and panel discussions with representatives from energy-intensive industries (aluminum, cement, chemicals, iron & steel, pulp & paper), which together account for approximately one third of the industrial electricity demand in Germany, our paper provides an overview of both the opportunities and the barriers faced by DSM. One of the key findings is the possible loss in energy efficiency due to DSM: in order to decrease or increase production depending on the stability needs of the electricity system, plants and processes may no longer operate at their optimum levels. The effects on downstream production must also be taken into account in order to gain a more complete understanding of the overall effects of industrial DSM.
Heat integration and industrial symbiosis have been identified as key strategies to foster energy efficient and low carbon manufacturing industries (see e.g. contribution of Working Group III in IPCC's 5th assessment report). As energy efficiency potentials through horizontal and vertical integration are highly specific by site and technology they are often not explicitly reflected in national energy strategies and GHG emission scenarios. One of the reasons is that the energy models used to formulate such macro-level scenarios lack either the necessary high technical or the spatial micro-level resolution or both. Due to this lack of adequate tools the assumed huge existing potentials for energy efficiency in the energy intensive industry cannot be appropriately appreciated by national or EU level policies. Due to this background our paper describes a recent approach for a combined micro-macro energy model for selected manufacturing industries. It combines national level technical scenario modelling with a micro-modelling approach analogous to total site analysis (TSA), a methodology used by companies to analyse energy integration potentials on the level of production sites. Current spatial structures are reproduced with capacity, technical and energy efficiency data on the level of single facilities (e.g. blast furnaces) using ETS data and other sources. Based on this, both, the investments in specific technologies and in production sites are modelled and the evolvement of future structures of (interconnected) industry sites are explored in scenarios under different conditions and with different objectives (microeconomic vs. energy efficiency optimization). We further present a preliminary scenario that explores the relevance of these potentials and developments for the German steel industry.
Energy intensive industries are one of the fields in which strong increases of energy efficiency and deep decarbonisation strategies are particularly challenging. Although European energy intensive industries have already achieved significant energy and greenhouse gas reductions in the past, much remains to be done to make a significant contribution to achieving European as well as national climate mitigation targets of greenhouse gas emission reductions by -80% or more (compared to the baseline of 1990). North Rhine-Westphalia (NRW) is a European hotspot for coping with this challenge, accommodating more than 10% of the energy intensive industries of the EU28. It is also the first German state to have adopted its own Climate Law, enacting state-wide CO2 emission reductions by 80% until 2050 compared to 1990. The state government initiated the project "Platform Climate Protection and Industry North-Rhine Westphalia" to identify and develop the necessary far-reaching low carbon innovation strategies for energy intensive industries. Heart of the project was a dialogue process, which involved a broad spectrum of stakeholders from steel, chemical, aluminium, cement, glass and paper producing industries. Besides enhancing and broadening the knowledge on high efficiency and low-carbon technologies within industries, the aim was to explore possible pathways and preconditions for the application of these technologies in energy intensive industries as well as to strengthen the motivation of companies for initiatives and investments in technologies with lower CO2 emissions. The results of the dialogue shall provide a basis for a possible low-carbon industry roadmap NRW and may also serve as an example for other industrialized regions in the EU and globally. The paper sketches the structured dialogue process with the stakeholders from companies as well as industrial associations and presents the learnings regarding the engagement of energy intensive industries into ambitious climate policies on a regional level. These include existing limitations as well as chances in the respective sectors on the state level, regarding their economic and technical structures as well as their innovation systems. The findings are based on more than a dozen stakeholder workshops with industry companies and more than 150 individual representatives of NRW's energy intensive industries as well as on background research in the initial phase of the project.
Understanding the diversifying role of civil society in Europe's sustainability pathway is a valid proposition both scientifically and socially. Civil society organisations already play a significant role in the reality of cities, what remains to be explored is the question: what is the role of civil society in the future sustainability of European cities? We first examine the novelty of new forms of civil society organization based on a thorough review of recent case studies of civil society initiatives for sustainable transitions across a diversity of European projects and an extensive literature review. We conceptualize a series of roles that civil society plays and the tensions they entail. We argue that, civil society initiatives can pioneer new social relations and practices therefore be an integral part of urban transformations and can fill the void left by a retreating welfare state, thereby safeguarding and servicing social needs but also backing up such a rolling back of the welfare state. It can act as a hidden innovator - contributing to sustainability but remaining disconnected from the wider society. Assuming each of these roles can have unintended effects, such as being proliferated by political agendas, which endanger its role and social mission, and can be peeled off to serve political agendas resulting in its disempowerment and over-exposure. We conclude with a series of implications for future research on the roles of civil society in urban sustainability transitions.
Im März 2016 endete der Beteiligungsprozess zum Klimaschutzplan 2050 der Bundesregierung mit der Übergabe der Ergebnisse an Umweltministerin Hendricks. Die Vorschläge wurden bei Bürgerkonferenzen in fünf Städten sowie in einem Online-Dialog, an dem sich rund 500 Bürgerinnen und Bürger beteiligt hatten, entwickelt und diskutiert. Parallel dazu hatten Bundesländer, Kommunen und Verbände in Fachforen getagt und dabei rund 400 Vorschläge eingebracht. Daraus entstand ein Maßnahmenkatalog mit Vorschlägen, die wissenschaftlich auf ihre Klimawirkung und Kosten und Nutzen untersucht wurden. Das Wuppertal Institut war gemeinsam mit der Ifeu GmbH mit der wissenschaftlichen Begleitung des Beteiligungsprozesses der Bundesländer, Kommunen und Verbänden beauftragt.