Fr. 135.00

Life Cycle Assessment (LCA) of Light-Weight Eco-composites

English · Hardback

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Description

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Miao Guo's PhD thesis provides scientific insights into the environmental issues related to biocomposites based on starch-polyvinyl alcohol (PVOH) blends. The author contributes significantly to the methodological issues underlying the Life Cycle Assessment (LCA) modelling approach. As well as presenting complete LCA inventories using primary data from a variety of sources, Guo develops a new modelling approach incorporating the process-oriented biogeochemistry model Denitrification-Decomposition (DNDC) into site-specific LCA studies to simulate carbon and nitrogen dynamics in the wheat agro-ecosystem. This thesis addresses important LCA data quality issues by using comprehensive sensitivity and uncertainty analyses and has resulted in a large number of publications in internationally renowned journals.

List of contents

Materials and Methods.- LCA of Wheat Agro-Eco-Systems.- LCA Case Studies of Starch-Based Foam.- End of Life Scenarios.- LCA of WBF Products Over Whole Life Cycles.- Sensitivity and Uncertainty Analysis.

Summary

Miao Guo's PhD thesis provides scientific insights into the environmental issues related to biocomposites based on starch-polyvinyl alcohol (PVOH) blends. The author contributes significantly to the methodological issues underlying the Life Cycle Assessment (LCA) modelling approach. As well as presenting complete LCA inventories using primary data from a variety of sources, Guo develops a new modelling approach incorporating the process-oriented biogeochemistry model Denitrification-Decomposition (DNDC) into site-specific LCA studies to simulate carbon and nitrogen dynamics in the wheat agro-ecosystem. This thesis addresses important LCA data quality issues by using comprehensive sensitivity and uncertainty analyses and has resulted in a large number of publications in internationally renowned journals.

Product details

Authors Miao Guo
Publisher Springer, Berlin
 
Languages English
Product format Hardback
Released 17.10.2012
 
EAN 9783642350368
ISBN 978-3-642-35036-8
No. of pages 404
Dimensions 173 mm x 28 mm x 244 mm
Weight 802 g
Illustrations XVIII, 404 p.
Series Springer Theses
Springer Theses
Subjects Natural sciences, medicine, IT, technology > Technology > Mechanical engineering, production engineering

Umweltchemie, B, Technische Anwendung von Biomaterialien, biotechnology, Pollution & threats to the environment, Chemistry and Materials Science, polymers, Polymer Sciences, Materials science, Environmental Chemistry, Biomaterials

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