Life Cycle Assessment
A Metric for the Circular Economy
Herausgeber: Borrion, Aiduan; Mwabonje, Onesmus; Black, Mairi J
Life Cycle Assessment
A Metric for the Circular Economy
Herausgeber: Borrion, Aiduan; Mwabonje, Onesmus; Black, Mairi J
- Gebundenes Buch
- Merkliste
- Auf die Merkliste
- Bewerten Bewerten
- Teilen
- Produkt teilen
- Produkterinnerung
- Produkterinnerung
This book provides a practical guide for those who wish to use life cycle assessment as a research tool or to inform policy, process, and product improvement.
Andere Kunden interessierten sich auch für
- Hsien Hui Khoo & Reginald B H TanLIFE CYCLE ASSESSMENT121,99 €
- Dan M. Frangopol (Lehigh University, Bethlehem, PA, USA)Bridge Safety, Maintenance and Management in a Life-Cycle Context225,99 €
- John Vail FarrEngineering Economics of Life Cycle Cost Analysis57,99 €
- Climate Change Mitigation65,99 €
- Orlando LopezPharmaceutical and Medical Devices Manufacturing Computer Systems Validation48,99 €
- David F. CiambroneEnvironmental Life Cycle Analysis73,99 €
- Integrated Life-Cycle and Risk Assessment for Industrial Processes and Products42,99 €
-
-
-
This book provides a practical guide for those who wish to use life cycle assessment as a research tool or to inform policy, process, and product improvement.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Produktdetails
- Produktdetails
- Verlag: Royal Society of Chemistry
- Seitenzahl: 424
- Erscheinungstermin: 22. März 2021
- Englisch
- Abmessung: 241mm x 163mm x 33mm
- Gewicht: 778g
- ISBN-13: 9781788014458
- ISBN-10: 1788014456
- Artikelnr.: 56727900
- Verlag: Royal Society of Chemistry
- Seitenzahl: 424
- Erscheinungstermin: 22. März 2021
- Englisch
- Abmessung: 241mm x 163mm x 33mm
- Gewicht: 778g
- ISBN-13: 9781788014458
- ISBN-10: 1788014456
- Artikelnr.: 56727900
Dr Borrion is an LCA expert with over ten years' experience in the field. She has performed and researched LCA for a wide range of applications in the engineering, design, food and energy sectors. She contributed her LCA expertise to the £27m BBSRC sustainable bioenergy centre (BSBEC) and is currently leading LCA research in both UK- and EU-funded projects. She led the development of UCL's LCA CPD course entitled "Conducting a Life Cycle Assessment (LCA): from Theory to Practical Application", developed in collaboration with the Ellen MacArthur Foundation. Since the launch of the course in 2016, it has attracted over 60 participants from 16 countries including USA, Canada, Singapore, Australia, Brazil and many European Countries. Alongside her academic post at UCL, Dr Borrion is the European Editor of Environmental Engineering Science, the official journal of the Association of the Environmental Engineering and Science Professors (AEESP). Dr Borrion has published in a wide range of highly impact journals, including Nature Energy. Dr. Black has combined academic and industrial experience of applications of agricultural and forestry materials for non-food uses, which over time has incorporated LCA and Sustainability of supply chains for biofuels, bioenergy and biorefineries to comply with developing UK and EU policy requirements, and cement, leather and textiles industries in developing countries. She has worked on the issues associated with these developing industries i.e. land use/land use change, food vs. fuel and carbon accounting in forestry and agro-forestry, and has put LCA and sustainability assessment of biomass supply chains into practice in Europe, North and South America and Africa. She has previously worked for Du Pont (UK) Ltd, AHDB Cereals and Oilseeds (HGCA), USBiodiesel Group, and Drax Power Ltd and as a Research Associate at Imperial College London, Centre for Environmental Policy and Research Fellow at University of Surrey, Centre for Environmental Strategy. Dr Mwabonje is a Research Fellow at Imperial College London's Centre for Environmental Policy (CEP). He is currently working on the EU Calculator project funded by the EU Horizon 2020 with an overall aim of developing pathways towards the decarbonisation and resilience of the European economy in the time-frame 2030-2050 and beyond. He also co-manages the Bio-SuccInnovate project sponsored by Climate KIC. The objective of the Bio-SuccInnovate project is to ensure that Succinic acid produced using lignocellulosic feedstock is assured through the use of robust quantitative assessment criteria based on specified supply chains including GHG emissions reductions and broader Life Cycle Assessment (LCA) indicators. He is an experienced LCA practitioner, expert in assessing feedstocks for biomass and biofuels energy technology options. He has conducted feasibility studies for renewable energy installations for various clients in the UK and has substantial international experience in managing projects for clients in the USA, Kenya and South America. He obtained his PhD in water and environmental health engineering from the University of Surrey, where his thesis focused on sustainable systems of wastewater treatment. Dr Mwabonje has a BSc in Chemistry from Jomo Kenyatta University, Kenya and an MSc in Environmental Strategy from University of Surrey.
Foreword
Introduction
The Circular Economy: Concept, Tools and Implementation
LCA as a metric for circular economy
Case study: Steel
Case study: Cement
Case study: manufacturing
Case study: plastics/sythetic fibre
Case study: textiles
Case study: emerging bio-based materials
Case study: paper/packaging
Case study: agricultural crop production
Case Study: livestock production
Case study: transport (fuel/biofuel)
Case study: renewable energy
Linking LCA methodology to the wider circular economy
Introduction
The Circular Economy: Concept, Tools and Implementation
LCA as a metric for circular economy
Case study: Steel
Case study: Cement
Case study: manufacturing
Case study: plastics/sythetic fibre
Case study: textiles
Case study: emerging bio-based materials
Case study: paper/packaging
Case study: agricultural crop production
Case Study: livestock production
Case study: transport (fuel/biofuel)
Case study: renewable energy
Linking LCA methodology to the wider circular economy
Foreword
Introduction
The Circular Economy: Concept, Tools and Implementation
LCA as a metric for circular economy
Case study: Steel
Case study: Cement
Case study: manufacturing
Case study: plastics/sythetic fibre
Case study: textiles
Case study: emerging bio-based materials
Case study: paper/packaging
Case study: agricultural crop production
Case Study: livestock production
Case study: transport (fuel/biofuel)
Case study: renewable energy
Linking LCA methodology to the wider circular economy
Introduction
The Circular Economy: Concept, Tools and Implementation
LCA as a metric for circular economy
Case study: Steel
Case study: Cement
Case study: manufacturing
Case study: plastics/sythetic fibre
Case study: textiles
Case study: emerging bio-based materials
Case study: paper/packaging
Case study: agricultural crop production
Case Study: livestock production
Case study: transport (fuel/biofuel)
Case study: renewable energy
Linking LCA methodology to the wider circular economy