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  • Journals
  • Articles  (7)
  • ddc:600  (5)
  • ddc:300  (2)
  • 05.09. Miscellaneous
  • 550 - Earth sciences
  • ASFA_2015::O::Oceanographic data
  • ASFA_2015::S::Salt lakes
  • Evolution
  • Stockholm : European Council for an Energy Efficient Economy  (4)
  • Hamburg : Shell Deutschland Oil  (2)
  • Algiers : Friedrich-Ebert-Stiftung
  • 1
    Publication Date: 2022-02-18
    Description: This paper analyses and compares industry sector transformation strategies as envisioned in recent German, European and global deep decarbonisation scenarios. The first part of the paper identifies and categorises ten key strategies for deep emission reductions in the industry sector. These ten key strategies are energy efficiency, direct electrification, use of climateneutral hydrogen and/or synthetic fuels, use of biomass, use of CCS, use of CCU, increases in material efficiency, circular economy, material substitution and end-use demand reductions. The second part of the paper presents a meta-analysis of selected scenarios, focusing on the question of which scenario relies to what extent on the respective mitigation strategies. The key findings of the meta-analysis are discussed, with an emphasis on identifying those strategies that are commonly pursued in all or the vast majority of the scenarios and those strategies that are only pursued in a limited number of the scenarios. Possible reasons for differences in the choice of strategies are investigated. The paper concludes by deriving key insights from the analysis, including identifying the main uncertainties that are still apparent with regard to the future steps necessary to achieve deep emission reductions in the industry sector and how future research can address these uncertainties.
    Keywords: ddc:600
    Repository Name: Wuppertal Institut für Klima, Umwelt, Energie
    Language: English
    Type: conferenceobject , doc-type:conferenceObject
    Format: application/pdf
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  • 2
    Publication Date: 2022-02-18
    Description: 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.
    Keywords: ddc:600
    Repository Name: Wuppertal Institut für Klima, Umwelt, Energie
    Language: English
    Type: report , doc-type:report
    Format: application/pdf
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  • 3
    Publication Date: 2022-02-18
    Description: The concept of sufficiency - reducing energy uses beyond technical efficiency - is far-reaching and requires a reflection on human needs, energy services, urban structures, social norms, and the role of policies to support the shift towards lower-energy societies. In recent years, a growing body of literature has been published on energy sufficiency in various disciplines. However, there has been limited exchanges and cooperation among researchers so far, hindering the visibility and impact of this research. This paper presents an assessment of where sufficiency research stands, especially in the perspective of policy-making. It is the first overview paper issued in the context of the newly-founded ENOUGH network - International network for sufficiency research & policy, established in 2017. In the first part, we provide a condensed literature review on energy sufficiency, based on dozens of recent references collected through the network. Through four main themes (the nature of sufficiency, the challenges of modelling it, the barriers to its diffusion, and the approaches to foster it), we summarise the key issues and approaches. We then present what the scholars themselves see as the priorities for future research, promising sufficiency policy options, and key barriers that research should help overcome. We collected their views through a questionnaire completed by more than 40 knowledgeable authors and experts from various disciplines. We finally build on the previous parts to draw some recommendations on how sufficiency research could increase its impact, notably in relation to policy-making.
    Keywords: ddc:300
    Repository Name: Wuppertal Institut für Klima, Umwelt, Energie
    Language: English
    Type: conferenceobject , doc-type:conferenceObject
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  • 4
    Publication Date: 2022-02-18
    Description: Technological innovations in energy-intensive industries (EIIs) have traditionally emerged within the boundaries of a specific sector. Now that these industries are facing the challenges of deep decarbonisation and a significant reduction in greenhouse gas (GHG) emissions is expected to be achieved across sectors, cross-industry collaboration is becoming increasingly relevant for low-carbon innovation. Accessing knowledge and other resources from other industrial sectors as well as co-developing innovative concepts around industrial symbiosis can be mutually beneficial in the search for fossil-free feedstocks and emissions reductions. In order to harness the potential of this type of innovation, it is important to understand not only the technical innovations themselves, but in particular the non-technical influencing factors that can drive the successful implementation of cross-industry collaborative innovation projects. The scientific state of the art does not provide much insight into this particular area of research. Therefore, this paper builds on three separate strands of innovation theory (cross-industry innovation, low-carbon innovation and innovation in EIIs) and takes an explorative case-study approach to identify key influencing factors for cross-industry collaboration for low-carbon innovation in EIIs. For this purpose, a broad empirical database built within the European joint research project REINVENT is analysed. The results from this project provide deep insights into the dynamics of low-carbon innovation projects of selected EIIs. Furthermore, the paper draws on insights from the research project SCI4Climate.NRW. This project serves as the scientific competence centre for IN4Climate.NRW, a unique initiative formed by politicians, industry and science to promote, among other activities, cross-industry collaboration for the implementation of a climate-neutral industry in the German federal state of North Rhine-Westphalia (NRW). Based on the results of the case study analysis, five key influencing factors are identified that drive the implementation of cross-industry collaboration for low-carbon innovation in EIIs: Cross-industry innovation projects benefit from institutionalised cross-industry exchange and professional project management and coordination. Identifying opportunities for regional integration as well as the mitigation of financial risk can also foster collaboration. Lastly, clear political framework conditions across industrial sectors are a key driver.
    Keywords: ddc:600
    Repository Name: Wuppertal Institut für Klima, Umwelt, Energie
    Language: English
    Type: conferenceobject , doc-type:conferenceObject
    Format: application/pdf
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  • 5
    Publication Date: 2022-02-18
    Description: A clear understanding of socio-technical interdependencies and a structured vision are prerequisites for fostering and steering a transition to a fully renewables-based energy system. To facilitate such understanding, a phase model for the renewable energy transition in MENA countries has been developed and applied to the country case of Algeria. It is designed to support the strategy development and governance of the energy transition and to serve as a guide for decision makers. The analysis shows that Algeria has already taken first steps towards a renewable energy transition. According to the MENA phase model, Algeria can be classified as entering the "Take-Off Renewables" phase. Nevertheless, fossil fuels still play a dominant role in the Algerian energy sector and in the economy as a whole. To support the renewables take-off, strong support is therefore needed at all levels. Only then can the necessary framework conditions be created to encourage participation and to attract investment from the private sector. To this end, a long-term energy strategy should to be developed that takes into account the renewable energy potential to support an efficient transformation of the Algerian energy supply and enables a smooth transition.
    Keywords: ddc:600
    Repository Name: Wuppertal Institut für Klima, Umwelt, Energie
    Language: English
    Type: report , doc-type:report
    Format: application/pdf
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  • 6
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    Stockholm : European Council for an Energy Efficient Economy
    Publication Date: 2022-08-23
    Description: The Fit for 55 package stipulates a fair, competitive and green transition by 2030 and beyond. As part of this, increasing attention is given to the decarbonisation of the building stock: only 1 % of buildings in Europe are retrofitted each year, a number which must double if the EU is to meet its 2050 targets. Significant energy efficiency investments are needed, whilst the planned expansion of the EU-ETS to the building sector in 2026 will likely pass the carbon cost onto the consumer. This will increase the cost burden placed on low-income households, exacerbating energy poverty, if these two strategies are not counterbalanced by adequate policies and support mechanisms. The European Private Rented Sector (PRS) is often side-lined by policymakers when implementing energy efficiency policies to tackle energy poverty. As many as 1 in 10 Europeans spend 40 % or more of their income on housing costs, with those in the PRS struggling with energy-related problems, such as poor energy efficiency and maintenance, to a much greater degree than the general population. Understanding these challenges and creating targeted policies is of critical scientific and policy importance. To date, a pan-European policy on how to address energy poverty and energy efficiency improvements in the PRS is lacking; current European Union instruments to address such issues (including the Fit for 55, and the Clean Energy Package that preceded it) lack a dedicated approach towards the complex structural issues embedded in the European PRS. What is more, there is a limited understanding of the character of energy poverty in such residential dwellings, as well as policies to address energy injustices. We therefore examine current and historical disparities in energy poverty between the EU's PRS tenants and the general population by analysing a variety of quantitative indicators which reflect different dimensions of energy poverty. We then take stock of the policy landscape, identifying energy efficiency policies tailored to alleviate energy poverty in the PRS and common challenges. We subsequently interrogate possible solutions, drawing on existing good practice policies. In so doing, we aim to reduce the sector's political invisibility by addressing the lack of disaggregated, targeted data and dismantling barriers that currently lead to the PRS being disproportionately affected by energy poverty.
    Keywords: ddc:300
    Repository Name: Wuppertal Institut für Klima, Umwelt, Energie
    Language: English
    Type: conferenceobject , doc-type:conferenceObject
    Format: application/pdf
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  • 7
    Publication Date: 2022-02-18
    Description: 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.
    Keywords: ddc:600
    Repository Name: Wuppertal Institut für Klima, Umwelt, Energie
    Language: German
    Type: report , doc-type:report
    Format: application/pdf
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