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The European Union has initiated a number of initiatives to improve resource efficiency in Europe. The Ecodesign Directive is one of the policy instruments that could aid the transition towards a more resource efficient economy. So far, the Directive has mainly been applied to set requirements related to energy efficiency, but there is potential for setting legal standards that increase product durability and promote the future re-use and recycling of components and materials. This paper examines the potential benefits and disadvantages in applying the Directive for this purpose, and analyzes the potential to apply certain types of legal standards. There is a need for continuous development of indicators and methods in order to allow for a broader range of legal standards in the future. The study provides some short and long term recommendations on the way forward.
The European Union has initiated a number of initiatives to improve resource efficiency in Europe. The Ecodesign Directive is one of the policy instruments that could aid the transition towards a more resource efficient economy. So far, the Directive has mainly been applied to set requirements related to energy efficiency, but there is potential for setting legal standards that increase product durability and promote the future re-use and recycling of components and materials. This paper examines the potential benefits and disadvantages in applying the Directive for this purpose, and analyzes the potential to apply certain types of legal standards. There is a need for continuous development of indicators and methods in order to allow for a broader range of legal standards in the future. The study provides some short and long term recommendations on the way forward. [Elib].
This book focuses on the role of higher education institutions in addressing climate change mitigation and adaptation challenges, contributing to the development of this fast-growing field. Further, it includes the results of empirical research and offers ideas regarding on-going and future research initiatives. The contributions also • showcase the research and projects on issues pertaining to climate change at universities from across the globe; • document and promote ideas and experiences acquired in the execution of research projects, especially successful initiatives and best practices; and • introduce methodological approaches and projects that offer a better understanding of climate change across society and economic sectors. The book is structured around two parts: lessons learned from climate change research, education, studies and projects. Each part focuses on mitigation and adaptation respectively, with many responses of the two modalities overlapping. This book is a valuable resource for researchers and practitioners in the fields of environment, human geography, business and economics, as well as academics and students, as it presents education, communication and awareness-raising projects on matters related to climate change at universities in both industrialised and developing countries, often in cooperation with government bodies, NGOs and other stakeholders.
The European Union has initiated a number of initiatives to improve resource efficiency in Europe. The Ecodesign Directive is one of the policy instruments that could aid the transition towards a more resource efficient economy. So far, the Directive has mainly been applied to set requirements related to energy efficiency, but there is potential for setting legal standards that increase product durability and promote the future re-use and recycling of components and materials. This paper examines the potential benefits and disadvantages in applying the Directive for this purpose, and analyzes the potential to apply certain types of legal standards. There is a need for continuous development of indicators and methods in order to allow for a broader range of legal standards in the future. The study provides some short and long term recommendations on the way forward.
How to tackle environmental damage from the throwaway society is one of the defining questions of the twenty-first century. By establishing a circular economy, we can encourage and support sustainable production and consumption. These essays by an international group of leading scholars from a range of disciplines analyse policies and legal instruments and challenge mainstream assumptions, from the choice of a policy mix to the actual effect of imposing standards on the market, and from corporate objectives and priorities to the use of precaution in assessing particularly harmful substances. Each chapter contributes to a better understanding of the current policy and regulatory framework in Europe and identifies the challenges and opportunities ahead. The book breaks new ground by examining how product policies can contribute to important objectives and visions, such as the aims of the circular economy. It is a must-read for researchers as well as for policymakers and practitioners.
A large part of the lifecycle environmental impacts of a product are determined at the design stage, why The EU Eco design Directive’s potential for application to non-energy related themes has come under the spotlight in recent years with Nordic countries at the forefront. In this report potential eco design requirements that can be drawn up for non-energy-related products are in focus. Textiles are here used as an example, and a light application of the approach has subsequently been applied to the furniture sector. Clothing and home textiles were chosen due to significant wastage in the value chain due to fast fashion, dropping quality and relatively low repair and reuse rates. The project was initiated and financed by the Nordic Council of Ministers and led by its Working Group for Sustainable Consumption and Production. A separate Policy Brief (ANP2018:739) is also published.
Over the past decade, renewables-based technology and sustainability assessment methods have grown tremendously. Renewable energy and products have a significant role in the market today, and the same time sustainability assessment methods have advanced, with a growing standardization of environmental sustainability metrics and consideration of social issues as part of the assessment. Sustainability Assessment of Renewables-Based Products: Methods and Case Studies is an extensive update and sequel to the 2006 title Renewables-Based Technology: Sustainability Assessment. It discusses the impressive evolution and role renewables have taken in our modern society, highlighting the importance of sustainability principles in the design phase of renewable-based technologies, and presenting a wide range of sustainability assessment methods suitable for renewables-based technologies, together with case studies to demonstrate their applications. This book is a valuable resource for academics, businesses and policy makers who are active in contributing to more sustainable production and consumption. For more information on the Wiley Series in Renewable Resources, visit www.wiley.com/go/rrs Topics covered include: The growing role of renewables in our society Sustainability in the design phase of products and processes Principles of sustainability assessment Land use analysis Water use analysis Material and energy flow analysis Exergy and cumulative exergy analysisCarbon and environmental footprint methods Life Cycle Assessment (LCA), social Life Cycle Assessment and Life Cycle Costing (LCC) Case studies: renewable energy, bio-based chemicals and bio-based materials.
The COVID-19 pandemic plunged the EU into its worst-ever recession and risks increasing inequalities, notably between regions. Thanks to a bold and innovative policy response, including a common instrument to finance national recovery plans (Next Generation EU), growth is rebounding, but ambitious reforms will be essential to heal the scars of the pandemic and succeed in the green and digital transitions.
This book provides a synthesis of recent developments in Axiomatic Design theory and its application in large complex systems. Introductory chapters provide concise tutorial materials for graduate students and new practitioners, presenting the fundamentals of Axiomatic Design and relating its key concepts to those of model-based systems engineering. A mathematical exposition of design axioms is also provided. The main body of the book, which represents a concentrated treatment of several applications, is divided into three parts covering work on: complex products; buildings; and manufacturing systems. The book shows how design work in these areas can benefit from the scientific and systematic underpinning provided by Axiomatic Design, and in so doing effectively combines the state of the art in design research with practice. All contributions were written by an international group of leading proponents of Axiomatic Design. The book concludes with a call to action motivating further research into the engineering design of large complex systems.