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Die Digitalisierung und der demografische Wandel sind Megatrends, die die Energiewende überlagern. Mehr denn je sind daher integrierte Problemlösungskonzepte für die Umsetzung der Energiewende gefragt. Neben den technischen Aspekten sollen diese Lösungen auf die sozio-ökonomischen Charakteristika der einzelnen Regionen und Kommunen eingehen und mögliche Veränderungen durch die Megatrends berücksichtigen.
Zielsetzung des Teilprojekts war die Entwicklung eines wirtschaftlich-, ökologisch- und sozial optimalen Wärmeversorgungskonzepts für die Konversionsfläche der ehemaligen Zeche Westerholt in Gelsenkirchen-Herten. Im Fokus stand das Gesamtsystem der Wärmeversorgung, bestehend aus Netz, Speicher und Erzeugung. Angestrebt wurde eine zukunftsfähige Niedertemperaturversorgung (LowEx), welche Technologien der Sektorkopplung und diverse erneuerbare Energiequellen wie Solarthermie, Erdwärme und Abwärmequellen einbinden kann. Dabei wurde eine integrierte Analyse technisch-infrastruktureller sowie sozio-ökonomischer und -kultureller Umsetzungsvoraussetzungen durchgeführt. Neben der interkommunalen Einbindung zeichnete sich das Vorhaben durch ein transdisziplinäres Projektkonsortium aus Kommune, Stadtwerk, Wissenschaft, Technologieentwicklern und Planungsbüros aus.
Gas auf dem Weg zur Klimaneutralität : Abschied von der erdgasfixierten europäischen Gaswirtschaft
(2020)
Die Forcierung des Wandels der Prozessqualität von Gas hin zu klimaneutralem Gas steht an, das wird auch gegenwärtig an mehreren Stellen vorbereitet. Diese Initiativen haben komplementär zueinander zu sein, die Komposition der Maßnahmen aber ist noch nicht stimmig. Die Abstimmung in einem umfassenden Masterplan fehlt.
Große Erzählungen im Engelsjahr 2020 handeln von der Textilindustrie gestern und heute. Die vorliegenden kleinen Erzählungen spielen in anderen textilen Welten und jenseits der großen Fabriken. Von ihnen erzählt Friedrich Engels nicht. Dem Erzählten und Nicht-Erzählten auf der Spur finden wir schließlich heraus, dass auch zu Friedrich Engels selbst in einer bestimmten Weise erzählt - und nicht erzählt wird.
Nigeria is Africa's largest economy and home to approximately 10% of the un-electrified population of Sub-Saharan Africa. In 2017, 77 million Nigerians or 40% of the population had no access to affordable, reliable and sustainable electricity. In practice, diesel- and petrol-fuelled back-up generators supply the vast majority of electricity in the country. In Nigeria's nationally-determined contribution (NDC) under the Paris Agreement, over 60% of the greenhouse gas emissions (GHG) reductions are foreseen in the power sector. The goal of this study is to identify and critically examine the pathways available to Nigeria to meet its 2030 electricity access, renewables and decarbonization goals in the power sector. Using published data and stakeholder interviews, we build three potential scenarios for electrification and growth in demand, generation and transmission capacity. The demand assumptions incorporate existing knowledge on pathways for electrification via grid extension, mini-grids and solar home systems (SHS). The supply assumptions are built upon an evaluation of the investment pipeline for generation and transmission capacity, and possible scale-up rates up to 2030. The results reveal that, in the most ambitious Green Transition scenario, Nigeria meets its electricity access goals, whereby those connected to the grid achieve a Tier 3 level of access, and those served by sustainable off-grid solutions (mini-grids and SHS) achieve Tier 2. Decarbonization pledges would be surpassed in all three scenarios but renewable energy goals would only be partly met. Fossil fuel-based back-up generation continues to play a substantial role in all scenarios. The implications and critical uncertainties of these findings are extensively discussed.
The Port of Rotterdam is an important industrial cluster, comprising mainly oil refining, chemical production and power generation. In 2016, the port's industry accounted for 19% of the Netherlands' total CO2 emissions. The Port of Rotterdam Authority is aware that the cluster is heavily exposed to future decarbonisation policies, as most of its activities focus on trading, handling, converting and using fossil fuels. Based on a study for the Port Authority using a mixture of qualitative and quantitative methods, our article explores three pathways whereby the port's industry can maintain its strong position while significantly reducing its CO2 emissions and related risks by 2050. The pathways differ in terms of the EU's assumed climate change mitigation ambitions and the key technological choices made by the cluster's companies. The focus of the paper is on identifying key risks associated with each scenario and ways in which these could be mitigated.
New options are needed to reduce the impact of motor vehicles on climate change and declining fossil fuel resources. Cars which are fueled by hydrogen could be a sustainable method of transportation if suitable technologies can be devised to produce hydrogen in an environmentally benign manner along with the provision of the necessary fueling infrastructure. This paper assesses size, space, and cost requirements of bioreactors as a decentralized option to supply hydrogen powered cars with biohydrogen produced from algae or cyanobacteria on a theoretical basis. Decentralized supply of biohydrogen could help to reduce the problems that hydrogen cars face regarding market penetration. A feasibility study for decentralized biohydrogen production is conducted, taking the quantity of hydrogen which is needed to fuel current hydrogen cars into account. While this technology is, in theory, feasible, sizes, and costs of such reactors are currently too high for widespread adoption. Thus, more R&D is needed to close the gap and to approach marketability.
In this paper three approaches on transitions pathways are combined to study the role of agricultural nature conservation in the Dutch land use domain for achieving internationally agreed climate and biodiversity targets. The three perspectives used are the Multilevel Perspective (MLP), Initiative Based Learning (IBL) and Integrated Assessment Modelling (IAM). The analysis provides insights in how the combination of different research approaches can lead to more comprehensive policy advice on how agricultural nature conservation could help to achieve internationally agreed sustainability goals related to climate change and biodiversity. IAM shows under which conditions agricultural nature conservation could be consistent with European and global long-term goals regarding food security, biodiversity and climate. MLP provides insight into the extent in which agricultural nature conservation has affected or changed the existing nature and agricultural regimes. IBL, finally, reveals the challenges of encouraging agricultural nature conservation with policy measures. Our analysis shows that a combined perspective provides a deeper understanding of the underlying processes, reasons and motives of agricultural nature conservation, leading to more comprehensive policy recommendations.