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Nicht erst seit dem Klimaabkommen von Paris, welches im Kern eine Begrenzung der menschengemachten globalen Erwärmung auf deutlich unter 2 °C gegenüber vorindustriellen Werten vorsieht, ist offensichtlich, dass eine umfassende Transformation der meisten Wirtschaftssektoren erforderlich ist, um die gesteckten Ziele zu erreichen. Die Transformation erfolgt dabei zum einen durch Steigerung der Energieeffizienz und zum anderen durch eine Dekarbonisierung der bestehenden Prozesse, bei denen heute noch ein hoher Anteil fossiler Energien eingesetzt wird - dies kann gelingen durch eine weitreichende Sektorkopplung, Flexibilisierung und Elektrifizierung bei vollständiger Nutzung Erneuerbarer Energien.
Letzteres stellt auch die Energieversorgung in Rheinland-Pfalz vor einen Paradigmenwechsel: Die schrittweise Transformation eines von konventionellen Energieträgern geprägten Versorgungsystems zu einem durch Erneuerbare Energien dominierten System. Als eines der ersten Bundesländer hat sich Rheinland-Pfalz bereits im Jahr 2014 ein eigenes Klimaschutzgesetz gegeben sowie erstmals im Jahr 2015 ein Landesklimaschutzkonzept (LKSK) erarbeitet, welches energiepolitische Leitplanken für den angestoßenen Transformationsprozess setzt. Die vorliegende Studie im Auftrag des Ministeriums für Umwelt, Energie, Ernährung und Forsten Rheinland-Pfalz beleuchtet die Auswirkungen eines weiteren Ausbaus der Erneuerbaren Energien in Rheinland-Pfalz und der damit verbundenen Flexibilisierung und Dekarbonisierung unterschiedlicher Anwendungsfelder, insbesondere in der Industrie aber auch im ÖPNV und zentraler Wärmeversorgung.
This chapter turns to the measurement of performance in delivering corporate and ecosystem purposes. The metrics are designed to capture the pain points in the ecosystem that need to be addressed and the success of the intervention in addressing them. This requires measures of non-financial as well as financial performance. The chapter provides an overview of measurements of non-financial forms of capital: natural, human, and social. In examining natural capital, it contrasts input measures that record the amount of natural resources that are used in the production process and output measures that examine the impact of the inputs on products, emissions, waste, etc. It notes that measuring inputs is in general more straightforward than outputs and it therefore argues that natural capital metrics should be constructed around inputs rather than outputs.
Cross-country evidence on the adoption of energy-efficient retrofit measures (EERMs) in residential buildings is critical to supporting the development of national and pan-European policies aimed at fostering the energy performance upgrade of the building stock. In this light, the aim of this paper is to advance in the understanding of the probability of certain EERMs taking place in eight EU countries, according to a set of parameters, such as building typology, project types, and motivation behind the project. Using these parameters collected via a multi-country online survey, a set of discrete-choice (conditional logit) models are estimated on the probability of selecting a choice of any combination of 33 EERMs across the sampled countries. Results show that actions related to the building envelope are the most often-addressed across countries and single building elements or technology measures have a higher probability of being implemented. The modelling framework developed in this study contributes to the scientific community in three ways: (1) establishing an empirical relationship among EERMs and project (i.e., retrofit and deep retrofit), (2) identifying commonalities and differences across the selected countries, and (3) quantifying the probabilities and market shares of various EERMs.
The data centre industry (DCI) has grown from zero in the 1980s, to enabling 60% of the global population to be connected in 2021 via 7.2 million data centres. The DCI is based on a linear economy and there is an urgent need to transform to a Circular Economy to establish a secure supply chain and ensure an economically stable and uninterrupted service, which is particularly difficult in an industry that is comprised of ten insular subsectors. This paper describes the CEDaCI project which was established to address the challenge in this unique sector; this ground-breaking project employs a whole systems approach, Design Thinking and the Double Diamond methods, which rely on people/stakeholder engagement throughout. The paper reviews and assesses the impact of these methods and project to date, using quantitative and qualitative research, via an online sectoral survey and interviews with nine data centre and IT industry experts. The results show that the project is creating positive impact and initiating change across the sector and that the innovative output (designs, business models, and a digital tool) will ensure that sectoral transformation continues; the project methods and structure will also serve as an exemplar for other sectors.
Citizen science is a transdisciplinary approach that responds to the current science policy agenda: in terms of supporting open science, and by using a range of science communication instruments. In particular, it opens up scientific research processes by involving citizens at different phases; this also creates a range of opportunities for science communication to happen This article explores methodological and practical characteristics of citizen science as a form of science communication by examining three case studies that took different approaches to citizens' participation in science. Through these, it becomes clear that communication in citizen science is "always" science communication and an essential part of "doing science".
Cities and urban consumers play a central role in the transition to a decarbonized society. Building on existing studies that identify the significant contributions of lifestyle changes, this study proposes a practical methodology for modeling and exploring city-specific carbon footprint reduction pathways through lifestyle changes to decarbonization. It uses an input-output approach with mixed-unit consumption data and the concept of adoption rates, which is applicable to multiple cities with widely available subnational household consumption data. This paper illustrates the use of this methodology by exploring the consumption-based mitigation pathways of 52 Japanese cities with 65 lifestyle change options covering mobility, housing, food, consumer goods, and leisure domains. The results revealed that city-specific impacts of a variety of lifestyle change options can differ by as much as a factor of five among cities, even in the urban context within the same country. Due to this city-level heterogeneity, the priority options of decarbonized lifestyles, such as among shared mobility, low-carbon diets, and longevity of consumer goods, have shifted between cities. The analysis suggests that ambitious urban lifestyle changes can potentially reduce their carbon footprints to meet the 1.5 ℃ target. However, due to the overlaps of mitigation potentials between multiple lifestyle change options, the necessary levels of adoption and coverage are extensive (i.e., adoption rates of 0.6-0.9). Importantly, adopting lifestyle changes with an efficiency strategy (e.g., the introduction of end-use technologies) or sufficiency strategy (e.g., behavioral changes in consumption amounts and modes) alone is not enough; the only way to succeed is through the combination of both strategies. This paper calls for a target-based exploration and identification of city-specific priorities of lifestyle change options to facilitate consumption-oriented mitigation policies and stakeholder actions to address the climate impacts of urban consumption.
Durch vielfältige Innovationen und technologische Errungenschaften wird die Kreislaufwirtschaft stetig weiterentwickelt. Gleichzeitig existieren viele Unsicherheiten und Risiken im Hinblick auf die langfristigen Wirkungen dieser neuen Technologien. Zudem tragen viele Innovationen aufgrund von Rebound-Effekten zweifellos immer noch zur Beschleunigung des Ressourcenverbrauchs und der Verschwendung bei.
Divers ist besser
(2021)
The article introduces and exemplifies the approach of evidence-based narratives (EBN). The methodology is a product of co-design between policy-making and science, generating robust intelligence for evidence-based policy-making in the Directorate General for Research and Innovation of the European Commission (DG RTD) under the condition of high uncertainty and fragmented evidence. The EBN transdisciplinary approach tackles practical problems of future-oriented policy-making, in this case in the area of programming for research and innovation addressing the Grand Societal Challenge related to climate change and natural resources. Between 2013 and 2018, the EU-funded RECREATE project developed 20 EBNs in a co-development process between scientists and policy-makers. All EBNs are supported with evidence about the underlying innovation system applying the technological innovation systems (TIS) framework. Each TIS analysis features the innovation, its current state of market diffusion and a description of the innovation investment case. Indicators include potential future market sizes, effects on employment and environmental and social benefits. Based on the innovation and TIS function analyses, the EBNs offer policy recommendations. The article ends with a critical discussion of the EBN approach.