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"Dorf ist Energie(klug)" : Abschlussbericht und Ergebnisse der wissenschaftlichen Begleitforschung
(2016)
Der Abschlussbericht mit den Ergebnissen der wissenschaftlichen Begleitforschung möchte darüber informieren, wie das Projekt entwickelt, initiiert, geplant und letztlich prozessual umgesetzt worden ist. Der erste Teil gibt insbesondere die im Prozess gewonnenen Erkenntnisse weiter und nennt erste Handlungsempfehlungen. Die darauffolgenden Kapitel bündeln die Ergebnisse der wissenschaftlichen Begleitforschung, welche zudem durch vier thematisch verschiedene Masterthesen im Untersuchungsraum ergänzt werden konnten.
Zielgruppe für die erarbeiteten Handlungsempfehlungen sind all jene, die eine strategische Planung im Bereich des Ehrenamtes und des Klimaschutzes auf lokaler Ebene in den ländlichen Räumen (Südwestfalens) anstreben. Der Abschlussbericht mit seinen Erkenntnissen richtet sich an die Personen, Gruppen und Institutionen auf regionaler Ebene, die gemeinsam mit Partnern einen ganzheitlichen Klimaschutz im Ehrenamt zur räumlichen Entwicklung und Gestaltung systematisch vorantreiben wollen und dabei ähnliche Voraussetzungen und Strukturen aufweisen. Nicht zuletzt aber auch die, die von den gelebten Projekten und den gesammelten Erfahrungen lernen möchten. Daher sind folgende Zielgruppen insbesondere angesprochen: Dorfgemeinschaften, Vereine, Ehrenamtliche Gruppierungen (Bürgerstiftungen, Genossenschaften), LEADER-Arbeitsgruppen, Landkreise, Städte und Kommunen, Regionalmanager, Energie- und Umweltbeauftragte, Klimaschutzmanager, Unternehmen der Wertschöpfungsketten Energie- und Klima und viele mehr.
A learning experience : integrating theory and practice for the implementation of INDCs ; thinkpiece
(2016)
A major cornerstone on the way to low-carbon sustainable development on a global scale will be a swift and effective implementation of all countries' INDCs submitted to the UNFCCC prior to Paris. However, doing so will require transforming development pathways away from currently pervasive carbon lock-ins. This can only be successful if countries take a systemic view on their development agendas, and link mitigation, adaptation and other developmental priorities together for a coherent overarching sustainable development strategy. The ownership for this process needs to be with the countries themselves as such strategies touch fundamentally upon national policy-making and implementation. At the same time, developing countries have access to bi- and multilateral financial and technical cooperation. To enable a systemic, country-led perspective, development cooperation needs to shift its paradigms away from currently prevalent project-level interventions.
A truly innovative and transformational shift with the objective of pursuing a low-carbon and climate resilient society needs to open up space for experimentation as new ways of doing things need to be put into practice. Experiments will not always be successful, but foster learning on a national as well as an international level on pitfalls and solutions in new approaches to low-carbon sustainable development. Not least, there needs to be a renewed focus on programmatic approaches that link various topical domains for a country-led process, and a critical look at development work that is "doomed to succeed".
Our article draws from systems theory, development studies and recent work on transitions studies and transformational change in the international domain. It links up different theoretical concepts with practical approaches in order to outline a future development agenda that will be owned by developing countries and supported non-invasively by bi- and multilateral development cooperation to foster low-carbon development pathways that are urgently needed to solve the climate crisis.
This article reviews the literature on the past cost dynamics of various renewable, fossil fuel and nuclear electricity generation technologies. It identifies 10 different factors which have played key roles in influencing past cost developments according to the literature. These 10 factors are: deployment-induced learning, research, development and demonstration (RD&D)-induced learning, knowledge spillovers from other technologies, upsizing, economies of manufacturing scale, economies of project scale, changes in material and labour costs, changes in fuel costs, regulatory changes, and limits to the availability of suitable sites. The article summarises the relevant literature findings for each of these 10 factors and provides an overview indicating which factors have impacted on which generation technologies. The article also discusses the insights gained from the review for a better understanding of possible future cost developments of electricity generation technologies. Finally, future research needs, which may support a better understanding of past and future cost developments, are identified.
Im Rahmen des Forschungsprojekts "Energiesuffizienz - Strategien und Instrumente für eine technische, systemische und kulturelle Transformation zur nachhaltigen Begrenzung des Energiebedarfs im Konsumfeld Bauen/Wohnen" wurden vielfältige denkbare Suffizienzentscheidungen und -handlungen beobachtet, analysiert, beschrieben und systematisiert. Doch welche dieser Entscheidungen und Handlungen werden bereits heute breit praktiziert, welche werden möglicherweise zukünftig akzeptiert und welche Rahmenbedingungen müssen sich dazu ändern? Eine zentrale Forschungsfrage des Projektes war es zu untersuchen, welche Akzeptanz und Akzeptabilität für bestimmte Suffizienzentscheidungen und –handlungen in der deutschen Bevölkerung besteht. Wie offen sind Menschen für das Teilen von Waschmaschinen oder für einen Umzug in eine kleinere Wohnung, wenn die eigene Wohnung durch Veränderungen der Personenzahl des Haushalts zu groß geworden ist? Wie schätzen Menschen, die eine sehr große Wohnfläche haben, diese selbst ein?
Suffizienzentscheidungen und -handlungen müssen in der Regel von der haushaltsführenden Person initiiert und getragen werden und können direkt oder indirekt zu einem höheren Arbeitsaufwand führen. Deshalb sind insbesondere die Akzeptabilität der Optionen für die Haushaltsvorstände sowie deren Akzeptanz und die Einstellung dieser Personengruppe zu Suffizienzentscheidungen und -handlungen von besonderer Relevanz. Um die Beantwortung der o. g. Forschungsfrage quantitativ zu untermauern, wurde deshalb eine Breitenbefragung konzipiert und durchgeführt, in der 601 haushaltsführende Personen als zentrale Akteure suffizienzrelevanter Entscheidungen im Haushalt interviewt wurden.
The Greens / European Free Alliance Group of the European Parliament contracted Wuppertal Institute in collaboration with Energiaklub to develop scientifically sound, comprehensive, alternative, and sustainable long term energy scenarios for Hungary, which cover potential development paths till 2030 and 2050. The scenarios developed deliver information about the costs and long-term effects of different energy choices for Hungary as well as credible information on potential benefits of greening the energy mix. As a result, the study aims to provide policy makers with better evidence for making informed, prudent and forward-thinking decisions in this field.
Human nutrition is responsible for about 30% of the global natural resource use. In order to decrease resource use to a level in line with planetary boundaries, a resource use reduction in the nutrition sector by a factor 2 is suggested. A large untapped potential to increase resource efficiency and improve consumers' health status is assumed, but valid indicators and general guidelines to assess these impacts and limits can barely be found. Therefore we will have a try to define sustainable limits towards the individuals' daily diet and therefore stimulate current available scientific debate.
Within the paper an examination of existing indicators and assessment methods is carried out. We set the focus on health indicators, such as energy intake, and environmental indicators, such as the carbon or material footprint. The paper aims to provide first, an assessment of core indicators to explore the sustainability impact of foodstuff, and second, a deeper understanding and a discussion of sustainable limits for those dimensions of food and nutrition. Therefore we will discuss several ecological and health indicators which may be suitable to assess the sustainabilty impact and indicate differences or similarities. As a result it becomes obvious that several ecological indicators "point in the same direction" and therefore a discussion about the variability and the variety of these indicators has to be faced in the future. Further the definition of sustainable levels per indicator is an essential aspect to get an idea about the needed barriers for a sustainable nutrition, by now first steps had been made, but no binding guidelines are available yet. Therefore the paper suggests a few indications to set up sustainable levels for health and environmental indicators, based on the idea to reduce the resource use level up to 30-50% in 2030.
Aus für Benzin- und Dieselfahrzeuge ab 2030 : der richtige Innovationsimpuls für die Verkehrswende?
(2016)
Seit der Bundesrat gefordert hat, dass ab 2030 nur noch emissionsfreie Fahrzeuge zugelassen werden sollen, hat die Debatte um den richtigen Weg in die Zukunft der Mobilität an Fahrt aufgenommen. Prof. Dr. Uwe Schneidewind und Prof. Dr. Manfred Fischedick begründen, warum die Bundesrats-Initiative, die de facto einem Zulassungsverbot für neue Benzin- und Dieselfahrzeuge gleichkommt, genau den richtigen Innovationsimpuls setzt - und es falsch wäre, ihn mit einseitigen Festlegungen zu verbinden.
Stockholm, Hamburg, Vitoria-Gasteiz, Nantes, Kopenhagen, Bristol, Ljubljana, Essen - das sind die Europäischen Umwelthauptstädte der Jahre 2010 bis 2017. Sie wurden in einem jährlichen europaweiten Wettbewerb von der Europäischen Kommission als Vorbildstädte ausgewählt. Sie zeigen aus Sicht der Europäischen Kommission, wie eine zukunftsfähige, umweltorientierte Stadtentwicklung im 21. Jahrhundert aussehen kann. Welchen EU-Benchmark markieren diese acht Städte für die Gestaltung eines klimaschonenden Personenverkehrs in der Stadt?
The paper presents the results of an ex-ante evaluation of the economy-wide benefits that may be achieved through the implementation of the 20-year Energy Efficiency Action Plan (EEAP) in Thailand. The objective of the EEAP is to reduce energy intensity by 25 % in 2030 compared to 2010. This is to be reached by reducing the projected energy consumption by 20 % or 38 Mtoe until 2030. We have specified an analytical framework, which allows for a calculation of the overall energy cost savings, energy import cost reductions and reduced CO2 emissions. Moreover, we calculated the induced energy efficiency investments, employment effects and impacts on governmental budget. The evaluation shows that an effective implementation of the plan may lead to a reduction in energy expenditure of 37.7 billion EUR by 2030. Moreover, the EEAP-induced energy savings will significantly reduce the greenhouse gas emissions as well as Thailand’s energy import costs and generate private investment in energy efficiency of about 5 billion EUR annually in 2030, which in turn may lead to about 300,000 new jobs. The size of the net impact of the plan on Thailand’s governmental budget is uncertain due to positive and negative effects on corporate and income tax revenues, expenses for unemployment benefits, governmental energy consumption, expenses for energy subsidies and energy tax income.
The current utilisation of natural resources in Germany and Europe is not sustainable, as inter alia stated by the German government as well as by the European Commission. At the same time, increased resource efficiency could lead to various environmental but also economic benefits. This brief study commissioned by Changing Markets presents developments in the field of resource efficiency policies, analyses the status quo of resource consumption with a special focus on fast moving consumer goods and describes potential effects of resource conservations.
Als Beitrag zu einer fundierten Diskussion über adäquate Politikinstrumente in der Wärmewende hat der FVEE mit seinen Mitgliedsinstituten im September 2015 ein Positionspapier erstellt: "Erneuerbare Energien im Wärmesektor - Aufgaben, Empfehlungen und Perspektiven". Dieses gibt einen umfassenden Überblick über die Herausforderungen und Handlungsoptionen im Wärmesektor und bietet damit eine wichtige Orientierung bei der Gestaltung der Energiewende.
Um die Energiewende erfolgreich umzusetzen, plädiert der FVEE für eine deutliche Stärkung des Wärmesektors in der Energiepolitik und eine entschiedene und langfristig angelegte Politik der Wärmewende, die den besonderen Anforderungen des Wärmesektors gerecht wird. Im vorliegenden Beitrag werden ausgewählte Analyseergebnisse und Empfehlungen des Positionspapiers vorgestellt.
Die Energiewende stellt eine gesellschaftliche Herausforderung dar und bedarf neuer Arbeitskonzepte. Diese These vertreten Uta von Winterfeld und Adelheid Biesecker in ihrem Beitrag "Bitte zweimal wenden! - Die Transformation der Energie- und Arbeitswelt". Ausgehend davon, dass die Energiewende einer sozial-ökonomischen Revolution gleichkomme und die Geschichte der Energie eine Geschichte steigender Arbeitsproduktivität sei, weswegen regenerative Energiequellen wie Sonne und Wind die Entwicklung bedrohen und zu einer Rückkehr zu einer früheren zivilisatorischen Phase führen würden, zeigen die Autorinnen, dass man zu letzterer Einsicht nur dann gelangt, wenn man die Energiewende ohne die notwendige Arbeitswende betrachtet. Damit die Energiewende nicht nur gelingt, sondern auch wirtschaftlich und gesellschaftlich positiv verläuft, braucht es laut Autorinnen eine Neuorganisation von Energie und Arbeit.
The Paris Agreement adopted in December 2015 provides the basis for future international cooperation on the field of climate change mitigation. While truly global in reach, the agreement will however result in an increasingly complex new climate regime: Instead of using a uniform formula, Parties are allowed to autonomously define their NDCs (nationally determined contributions), resulting in a large diversity of contributions. This poses significant challenges for emissions accounting and the transfer of emission units.
This Policy Paper explores how these challenges can be addressed by analysing different types of NDCs and assessing their compatibility with the export and use of emission units. On that basis, the authors develop opt-in provisions for Parties willing to participate in unit transfers under the new climate regime and illustrate how potential risks to environmental integrity can be addressed.
Carbon markets in a <2 °C world : will there be room for international carbon trading in 2050?
(2016)
This JIKO Policy Paper analyses a series of very ambitious mitigation scenarios and complements this analysis with a review of several sectoral technology roadmaps. The results are quite clear: there is no reason to believe that international carbon trading will become obsolete any time soon. Whether or not international carbon trading is to play a role in international climate protection efforts is in the end not a physical or economic question, but a political one.
Cleaner vehicles
(2016)
This review of sources has assessed existing evidence for economic benefits arising from innovations or interventions that aim to improve the environmental performance of vehicles - such as enhancements to engine and vehicle technologies or improved fuels. It is designed to support cities in their decision making and measure selection process. The article is one of 22 reviews published in this volume.
The Paris Agreement marks a milestone in international climate policy. Though, the positive appraisal was not unanimous. This article will argue that the Paris Agreement embraces a new paradigm. Climate change is no longer seen as a clear-cut environmental problem, nor as a developmental issue, but as a challenge to fundamentally transform global societies. While criticism through the lens of the former paradigms is worthwhile, the Paris Agreement should be acknowledged as a pacemaker for the transformation processes that lay ahead of us.
Six German scenario studies on urban passenger transport for Munich 2058, Wuppertal 2050, Eastern Ruhr Region 2030, Tuebingen 2030, Cologne 2020 and Hanover Region 2020 investigate the key question: With which strategies and on what kind of scale, is it possible to reduce the carbon dioxide emissions of urban passenger transport to accomplish the 2 °C climate protection goal with a consequently huge reduction of greenhouse gas emissions by 80% to 95% by 2050 in relation to the base year 1990? The scenarios show that the major challenge of a "climate-friendly city transport" can be achieved by appropriate measures (regarding direction and scale): in small and medium-sized cities, large cities, cities of over a million people, and metropolitan regions. The scenarios demonstrate the extent to which the considered measures contribute to the CO2 reduction, and which gap to the achievement of the goal remains if that which is currently regarded as realistic in practice is really implemented in future. Thus, they illustrate the conflict between that which is necessary for climate protection and that which is currently considered feasible in politics. The scenarios show that it is essential to act quickly and appropriately, and not hesitantly or without conviction.
The adverse environmental impacts from inefficient building construction increase if measures to reduce energy and resource use, through stringent building policies and efficient technology, are not implemented in developed and developing countries. To illustrate a holistic approach to reducing buildings' energy and resources, the comparison of energy efficient and green buildings in terms of their technological aspects and their policy context in developed and developing countries, mainly in Europe, the USA and India, is presented together with a policy package recommendation for Nepal. A quality review of multiple literature sources, supported by various expert opinions, were the methods used for this in-depth analysis.
It discusses that mandatory building standards, voluntary labels, information instruments and financial incentives are the most effective combination for the shift towards market transformation, that results in a higher share of energy efficient and green buildings. The lesson such as higher compliance with, and enforcement of, building energy standards can be seen in developed countries (e.g. Germany). Looking at a building's life cycle perspective, it is not sufficient to focus solely on operational energy reduction in higher energy efficient buildings as this is achieved by the increased use of energy intensive materials. Green requirements must be considered in updating building energy standards and labels, particularly for developed countries. Green building certification will also become more effective when the stringency of energy standards is higher and when the whole building life cycle assessment is considered. Due to the increasing scarcity of energy and resources, many developing countries are forced to face up to the need for holistic green buildings. Although baseline standards are not as high as in most developed countries and national financial support is low, the gradual move towards making the standards more stringent and incorporating the wider scope of resource saving are positive developments in developing countries (e.g. India). However, to achieve significant success, strategies must include the establishment of a suitable funding environment, a political commitment and a strong government vision for long term and sustainable building construction. The challenges faced by Nepal are even greater due to the fast pace of urban growth and the absence of energy and resource efficient buildings policies, highlighting the need for an effective policy package. Overall, this dissertation demonstrates how energy efficient and green buildings are interlinked. Green buildings reinforced with higher levels of energy efficiency and energy efficient buildings incorporating green requirements are stepping-stones for achieving greater building energy and resource efficiencies. And a suitable policy package fosters its development.
In the future, the capacities of renewable SNG (synthetic natural gas) will expand significantly. Pilot plants are underway to use surplus renewable power, mainly from wind, for electrolysis and the production of hydrogen, which is methanated and fed into the existing gas pipeline grid. Pilot projects aim at the energetic use of SNG for households and transport in particular for gas fueled cars. Another option could be the use of SNG as feedstock in chemical industry.
The early stage of development raises the question of whether SNG should be better used for mobility or the production of chemicals. This study compares the global warming potential (GWP) of the production of fossil natural gas (NG) and carbon-dioxide (CO2)-based SNG and its use for car transport versus chemical use in the form of synthesis gas. Since the potential of wind energy for SNG production is mainly located in northern Germany, the consequences by a growing distance between production in the North and transport to the South of Germany are also examined.
The results indicate that CO2-based SNG produced with wind power would lead to lower GWP when substituting NG for both uses in either transport or chemical production. Differences of the savings potential occur in short-distance pipeline transport. The critical factor is the energy required for compression along the process chain.
Will climate change stay below the 2 degree target in the 21st century on the basis of the COP 21 results? Looking into challenges and opportunities, this paper answers: To stay below the global 2dt is neither a real choice for the world society nor for businesses and civil societies in specific countries. It is a global guideline, scientifically developed for global negotiations, which should be broken down to national interests and actors. Key questions concerning the energy sector from the perspective of national interests are how to create and sustain a momentum for the inevitable energy transition, how to encourage disruptive innovations, avoid lock in effects, enable rapid deployment of energy efficiency and renewable energies etc. Or in other words: how to get to a competitive, economically benign, inclusive, low carbon and risk minimising energy system. With this background the paper argues that "burden sharing" is a misleading perception of strong climate mitigation strategies. It is more realistic to talk about "benefit sharing", using the monetary benefits and co-benefits of climate mitigation (e.g. energy cost savings, revenues from CO2-tax or emission trading systems) to help vulnerable national and international actors to adapt to the unavoidable climate risks. It has to be demonstrated on country level that the technologies and policy mix of strong climate mitigation and risk-minimising actions are indeed "benefit sharing" strategies which should be chosen anyhow, even if there was no climate change. For China and Germany this paper includes basic findings supporting this view.
The need for deep decarbonisation in the energy intensive basic materials industry is increasingly recognised. In light of the vast future potential for renewable electricity the implications of electrifying the production of basic materials in the European Union is explored in a what-if thought-experiment. Production of steel, cement, glass, lime, petrochemicals, chlorine and ammonia required 125 TW-hours of electricity and 851 TW-hours of fossil fuels for energetic purposes and 671 TW-hours of fossil fuels as feedstock in 2010. The resulting carbon dioxide emissions were equivalent to 9% of total greenhouse gas emissions in EU28. A complete shift of the energy demand as well as the resource base of feedstocks to electricity would result in an electricity demand of 1713 TW-hours about 1200 TW-hours of which would be for producing hydrogen and hydrocarbons for feedstock and energy purposes. With increased material efficiency and some share of bio-based materials and biofuels the electricity demand can be much lower. Our analysis suggest that electrification of basic materials production is technically possible but could have major implications on how the industry and the electric systems interact. It also entails substantial changes in relative prices for electricity and hydrocarbon fuels.
On behalf of the Port of Rotterdam Authority, the Wuppertal Institute developed three possible pathways for a decarbonised port of Rotterdam until 2050. The port area is home to about 80 per cent of the Netherlands' petrochemical industry and significant power plant capacities. Consequently, the port of Rotterdam has the potential of being an international leader for the global energy transition, playing an important role when it comes to reducing CO2 emissions in order to deliver on the EU's long-term climate goals.
The three decarbonisation scenarios all built on the increasing use of renewables (wind and solar power) and the adoption of the best available technologies (efficiency). The analysis focuses on power plants, refineries and the chemical industry, which together are responsible for more than 90 per cent of the port area's current CO2 emissions.
The decarbonisation scenarios describe how CO2 emissions could be reduced by 75 to 98 per cent in 2050 (compared to 2015). Depending on the scenario, different mitigation strategies are relied upon, including electrification, closure of carbon cycles or carbon capture and storage (CCS). The study includes recommendations for local companies, the Port Authority as well as policy makers. In addition, the study includes a reference scenario, which makes it clear that a "business as usual" mentality will fall well short of contributing adequately to the EU's long-term climate goals.
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.
Die EnEV ist eine Vorgabe, welche die alternativen Optionen zur Bestimmung des Energiebedarfs und seiner unterschiedlichen Deckungsoptionen mittels einer Metrik, dem ausgelösten Primärenergiebedarf - die Intention gemäß EPBD - bzw. dem ausgelösten nicht-erneuerbaren Energiebedarf - so die EnEV-Adaptation -, vergleichbar macht. Sie normiert somit ein Wettbewerbsverhältnis zwischen Optionen. Die beiden herausgestellten Entscheidungen, die EnEV-Adaptation und die Entscheidung, den Primärenergiefaktor PEFne gegen Null konvergieren zu lassen, verändern somit Wettbewerbsverhältnisse. Der Diskussionsbeitrag geht den damit im Zusammenhang stehenden Fragen nach.
Die vorliegende Bachelorarbeit beschäftigt sich mit der nachhaltigen Quartiersentwicklung, einem jungen Forschungsfeld der Stadtgeographie, und dem Clean Development Mechanism (CDM). Letztgenannter ist ein Klimaschutzinstrument aus dem Kyoto Protokoll, der die nachhaltige Entwicklung in Entwicklungsländern befördern soll. Es wird der Frage nachgegangen, ob der CDM nachhaltige Entwicklung, unter den besonderen Gegebenheiten eines Quartiers (mit besonderem Entwicklungsbedarf), realisiert. Ziel ist es zu diskutieren, was ein Quartier und dessen nachhaltige Entwicklung definiert sowie den Einfluss des CDM in diesem Bereich. Die Fragestellungen werden auf Grundlage der Auswertung aktueller Fachliteratur und ergänzend durch ein Experteninterview diskutiert. Hierfür wird ein Fallbeispiel, das CDM-Projekt Kuyasa low-cost urban housing energy upgrade anhand eines Indikatorenkatalogs untersucht.
Die Analyse führt zu dem Ergebnis, dass das Kuyasa-Projekt einen starken positiven Einfluss auf die Ortsbindung, Partizipation und ökomische Stärkung der Bewohner hat sowie auch teilweise zum Erlernen sozialer Normen anregt. Diese Indikatoren sind Ausdruck sozialer Kohäsion, d.h. des sozialen Zusammenhalts, die auf die Bildung von Sozialkapital schließen lassen - die wichtigste Voraussetzung für nachhaltige Quartiersentwicklung. Damit trägt der CDM, im Rahmen des Fallbeispiels, potentiell zur nachhaltigen Quartiersentwicklung bei. Es zeigt sich aber auch, dass es weiterer Forschung, unter anderem der Auswertung und dem Vergleich mehrerer CDM-Projekt(typen) bedarf, um eine belastbare Aussage über den CDM im Allgemeinen tätigen zu können.
Die industrielle Tierhaltung belastet nicht nur Böden, Wasser und Atemlu! mit Schadstoffen. Sie sorgt auch dafür, dass sich multiresistente Keime immer mehr ausbreiten. Nach Angaben des Bundesgesundheitsministeriums sterben in Deutschland jedes Jahr rund 10.000 Menschen, weil Antibiotika nicht mehr wirken. Wollte man die Ursache des Problems angehen, müsste man sich von der Massentierhaltung verabschieden und einen achtsameren Umgang mit Nutztieren und Lebensmitteln etablieren. Notwendig sind Strategien, die das Problem an der Wurzel packen.
Die "Third Mission" wird aktuell als ergänzende Hochschulaufgabe neu entdeckt. In ihrer Bedeutung und Reputation steht sie aber klar hinter der "First Mission" Forschung und der "Second Mission" Lehre. Sie soll das Aufgabenspektrum von Hochschulen eher abrunden. Was würde es bedeuten, wenn man die "Third Mission" als "First Mission" denkt, d.h. auch die Aufgaben von Forschung und Lehre konsequent aus der Perspektive der gesellschaftlichen Funktion von Hochschulen entwickelt? Die These dieses Beitrages lautet: Damit wäre ein erhebliches Belebungsprogramm für die Hochschullandschaft verbunden. Es lohnt daher, eine stärkere Third Mission-Orientierung des Hochschulsystems voranzutreiben.
Die Energiewende ist einer der größten Transformationsprozesse, die unsere Gesellschaft in Zukunft bewältigen muss. Sie ist als Gemeinschaftsprojekt zu sehen, in das unterschiedlichste Akteure in verschiedener Art und Weise eingebunden sein sollten. Die Bundesregierung setzt die Ziele und kann Rahmenbedingungen schaffen, die Umsetzung der Energiewende findet aber in den Städten und Gemeinden vor Ort statt. Dazu ist insbesondere bürgerschaftliches Engagement gefordert, welches durch Politik und Planung gefördert und unterstützt werden sollte.
In ländlichen Räumen unterscheiden sich die Herausforderungen dabei noch einmal deutlich von denen in urbanen Gebieten. Auch die Möglichkeiten und Potenziale für den Ausbau erneuerbarer Energien sowie von Energieeffizienzmaßnahmen sind teilweise aufgrund anderer Gegebenheiten und Ressourcen sehr unterschiedlich.
Die vorliegende Arbeit beschäftigt sich vor dem Hintergrund der Transitions-Forschung insbesondere mit der Frage, wie bürgerschaftliches Engagement für neue Energieprojekte in ländlichen Räumen angestoßen werden kann und welches Potenzial das Instrument der visuellen Kartographie in diesem Zusammenhang besitzt.
Die Analysen erfolgten im Untersuchungsraum Südwestfalen, in dem zum einen die Praxisstudie "Dorf ist Energie(klug)" dazu diente, Potenziale bürgerschaftlichen Engagements in ländlichen Räumen herausfiltern und bewerten zu können. Zum anderen konnte die mögliche Rolle digitaler Visualisierungen zur Förderung bürgerschaftlichen Engagements anhand bestehender Visualisierungsinstrumente im Untersuchungsraum analysiert werden.
Basierend auf den Analyseergebnissen wurde ein "Bürgerenergiekompass" für den Hochsauerlandkreis erarbeitet. Dieser stellt als Ergebnis der Arbeit ein Beispiel für ein Visualisierungsinstrument dar, das möglichst viele Anforderungen erfüllt, um bürgerschaftliches Engagement insbesondere in den ländlichen Räumen Südwestfalens zur Umsetzung der Energiewende zu fördern.