Zukünftige Energie- und Industriesysteme
Refine
Year of Publication
- 2023 (7) (remove)
Document Type
- Report (4)
- Peer-Reviewed Article (2)
- Working Paper (1)
Division
- Energie-, Verkehrs- und Klimapolitik (7) (remove)
In the energy sector, few topics, if any, are more hyped than hydrogen. Countries develop hydrogen strategies to provide a perspective for hydrogen production and use in order to meet climate-neutrality goals. However, in this topical field the role of water is less accentuated. Hence, in this study, we seek to map the interrelations between the water and wastewater sector on the one hand and the hydrogen sector on the other hand, before reflecting upon our findings in a country case study. We chose the Hashemite Kingdom of Jordan because (i) hydrogen is politically discussed not least due to its high potentials for solar PV, and (ii) Jordan is water stressed - definitely a bad precondition for water-splitting electrolyzers. This research is based on a project called the German-Jordanian Water-Hydrogen-Dialogue (GJWHD), which started with comprehensive desk research mostly to map the intersectoral relations and to scope the situation in Jordan. Then, we carried out two expert workshops in Wuppertal, Germany, and Amman, Jordan, in order to further discuss the nexus by inviting a diverse set of stakeholders. The mapping exercise shows various options for hydrogen production and opportunities for planning hydrogen projects in water-scarce contexts such as Jordan.
There is a growing body of scientific evidence supporting sufficiency as an inevitable strategy for mitigating climate change. Despite this, sufficiency plays a minor role in existing climate and energy policies. Following previous work on the National Energy and Climate Plans of EU countries, we conduct a similar content analysis of the recommendations made by citizen assemblies on climate change mitigation in ten European countries and the EU, and compare the results of these studies. Citizen assemblies are representative mini-publics and enjoy a high level of legitimacy.
We identify a total of 860 mitigation policy recommendations in the citizen assemblies' documents, of which 332 (39 %) include sufficiency. Most of the sufficiency policies relate to the mobility sector, the least relate to the buildings sector. Regulatory instruments are the most often proposed means for achieving sufficiency, followed by fiscal and economic instruments. The average approval rate of sufficiency policies is high (93 %), with the highest rates for regulatory policies.
Compared to National Energy and Climate Plans, the citizen assembly recommendations include a significantly higher share of sufficiency policies (factor three to six) with a stronger focus on regulatory policies. Consequently, the recommendations can be interpreted as a call for a sufficiency turn and a regulatory turn in climate mitigation politics. These results suggest that the observed lack of sufficiency in climate policy making is not due to a lack of legitimacy, but rather reflects a reluctance to implement sufficiency policies, the constitution of the policy making process and competing interests.
Im September 2023 sind zwei wenig ermutigende Untersuchungen veröffentlicht worden: Das Klimasekretariat der Vereinten Nationen macht in seinem Report zur ersten Globalen Bestandsaufnahme (Global Stocktake) deutlich, dass die bisher zugesagten nationalen Klimaschutzbeiträge bei weitem nicht genügen, um die Pariser Klimaschutzziele zu erreichen. Auch das Update zur Einhaltung der planetaren Grenzen fällt ernüchternd aus: In sechs von neun Bereichen sind die Grenzen teils weit überschritten - auch in Bezug auf den Klimawandel.
Allerdings reichen die ergriffenen Klimaschutzmaßnahmen nicht aus, um die gesteckten Ziele zu erreichen. Suffizienzstrategien und -politik können den Wandel bringen - bei Konsum, Gebäuden, Verkehr, Kreislaufwirtschaft und Energie, wie der Zukunftsimpuls zeigt.
Die große Herausforderung der Industrietransformation ist von besonderer Bedeutung für Nordrhein-Westfalen als eine der wichtigsten Industrieregionen Deutschlands und Europas, in der etwa die Hälfte der Anlagen der energieintensiven Grundstoffindustrie Deutschlands verortet sind und in der die industrielle Produktion wirtschaftlich eine besonders große Rolle spielt. Gleichzeitig kann eine gelingende Transformation der Industrie in NRW als Blaupause für andere Regionen dienen. Der vorliegende Bericht stellt die Ergebnisse des Forschungsprojekts SCI4climate.NRW 2018-2022 dar, welches die Industrietransformation in NRW wissenschaftlich begleitet und untersucht hat.
Der hier vorliegende Klimaschutz-Aktionsplan 2030 für die Stadt Mannheim beschreibt Maßnahmen und Reduktionspfade für eine Minderung der Treibhausgasemissionen auf Mannheimer Stadtgebiet zur Erreichung der Klimaneutralität im Jahr 2030. Die Basis hierfür bildet die Energie- und CO2-Bilanz aus dem Jahr 2020.
In einem ersten Schritt wurden mit dem wissenschaftlichen Begleitkreis mögliche Reduktionspfade in den verschiedenen Sektoren und eine Definition für den Begriff der Klimaneutralität diskutiert. Mit dem Lenkungskreis wurden im nächsten Schritt acht Handlungsfelder festgelegt, für die in einzelnen Strategiegruppen die Maßnahmen entwickelt wurden. Weitere Vorschläge kamen aus der begleitenden öffentlichen Beteiligung. In diesem breit angelegten Beteiligungsprozess sind letztlich 81 Maßnahmen in acht thematischen Handlungsfeldern entstanden, von denen 34 als Maßnahmen von besonderer Priorität definiert wurden.
In order to limit global warming and fulfill their contributions to the Paris agreement, both Germany and Japan have set targets for climate neutrality towards the middle of the century. Reaching these goals will imply transformation of all sectors of society to avoid all fossil greenhouse gas emissions, heavy industry not the least. The focus of this study is the transformation of the petrochemical industry. This sector can become climate neutral but cannot be "decarbonized", as carbon is integral to the chemical structures of the products like polymers and solvents. Reaching climate neutrality thus means that the whole lifecycle of the petrochemical products has to be regarded. Another specific challenge is today's synergetic relation of this industry to fossil transport fuel production, which cannot be maintained in a climate neutral world.
The two countries interestingly share a similar industrial structure overall, and the chemical and petrochemical industry is one of the major industries in both countries. The countries' respective chemical industries are the third and fourth largest in the world in terms of sales, but at the same time, these industries represent just over 5% of the respective countries' greenhouse gas emissions. However, these scope 1 emissions of the chemical industry itself are far less relevant than the end-of-life emissions of their products, which belong to scope 3 and are thus not counted under the chemical industry in the country greenhouse gas balances. To mediate these emissions, there is a need to set the direction, draw out paths and investigate possible alternatives for how the petrochemical industry can be become climate neutral. In this report, the existing scenario analyses, energy strategies and roadmaps dealing with this issue in the two countries are compared, as well as the current state of their petrochemical industries. We highlight similarities, differences and identify possible areas of cooperation and exchange in order to find robust paths forward for the transformation of the petrochemical industries.