as part of the Community’s integrated approach to reduce CO 2 emissions from light-duty
vehicles, 2009.
3. Johansson G, Greif A, Fleischer G, Managing the design/environment interface: studies of
integration mechanisms, International Journal of Production Research, Vol. 45, No. 18–19,
2007, pp. 4041–4055.
4. Oltra V, Saint Jean M, Sectoral systems of environmental innovation: An application to the
French automotive industry, Technological Forecasting and Social Change, Vol. 76, No. 4,
2009, pp. 567–583.
5. Beaume R, Maniak R, Midler C, Crossing innovation and product projects management: A
comparative analysis in the automotive industry, International Journal of Project
Management, Vol. 27, No. 2, 2009, pp. 166–174.
6. Schmidt W-P, Life Cycle Tools within Ford of Europe’s Product Sustainability Index. Case
Study Ford S-MAX & Ford Galaxy (8 pp), The International Journal of Life Cycle
Assessment, Vol. 11, No. 5, 2006, pp. 315–322.
7. Karlsson R, Steen B, Wendel A, EPS as a Life Cycle oriented System Assessment Tool to
Facilitate Industrial Learning about Relations to the Environment, The 15th International
Conference of the System Dynamics Society, Istanbul, Turkey, 1997, pp. 61–68.
8. Tingström J, Karlsson R, The relationship between environmental analyses and the dialogue
process in product development, Journal of Cleaner Production, Vol. 14, No. 15–16, 2006,
pp. 1409–1419.
9. Nakano K, Hirao M, Collaborative activity with business partners for improvement of product
environmental performance using LCA, Journal of Cleaner Production, Vol. 19, No. 11, 2011,
pp. 1189–1197.
10. Keoleian G.A, Kar K, Elucidating complex design and management trade-offs through life
cycle design: air intake manifold demonstration project, Journal of Cleaner Production, Vol.
11, No. 1, 2003, pp. 61–77.
11. Bocken N.M.P, Allwood J.M, Willey A.R, King J.M.H, Development of an eco-ideation tool
to identify stepwise greenhouse gas emissions reduction options for consumer goods, Journal
of Cleaner Production, Vol. 19, No. 12, 2011, pp. 1279–1287.
12. Gasafi E, Weil M, Approach and application of life cycle screening in early phases of process
design: case study of supercritical water gasification, Journal of Cleaner Production, Vol. 19,
No. 14, 2011, pp. 1590–1600.
13. Poudelet V, Chayer J-A, Margni M, Pellerin R, Samson R, A process-based approach to
operationalize life cycle assessment through the development of an eco-design
decision-support system, Journal of Cleaner Production, Vol. 33, 2012, pp. 192–201.
14. Hatcher G.D, Ijomah W.L, Windmill J.F.C, Integrating design for remanufacture into the
design process: the operational factors, Journal of Cleaner Production, Vol. 39, 2013,
pp. 200–208.
15. Garcia J, Millet D, Tonnelier P, A tool to evaluate the impacts of an innovation on a product’s
recyclability rate by adopting a modular approach: automotive sector application,
International Journal of Vehicle Design, Vol. 67, No. 2, 2015, pp. 178–204.
16. Garcia J, Millet D, Tonnelier P, Construction of evolving models for the environmental
evaluation of innovative sub-systems based on a hierarchical agglomerative clustering,
International Journal of Sustainable Engineering, Vol. 8, No. 6, 2015, pp. 386–404.
17. Hastie T, Tibshirani R, Friedman J.J.H, The elements of statistical learning, Springer New
York, 2001.
18. Tchertchian N, Yvars P-A, Millet D, Benefits and limits of a Constraint Satisfaction Problem/
Life Cycle Assessment approach for the ecodesign of complex systems: a case applied to a
hybrid passenger ferry, Journal of Cleaner Production, Vol. 42, 2013, pp. 1–18.
Implementation of Environmental Considerations …
379
vehicles, 2009.
3. Johansson G, Greif A, Fleischer G, Managing the design/environment interface: studies of
integration mechanisms, International Journal of Production Research, Vol. 45, No. 18–19,
2007, pp. 4041–4055.
4. Oltra V, Saint Jean M, Sectoral systems of environmental innovation: An application to the
French automotive industry, Technological Forecasting and Social Change, Vol. 76, No. 4,
2009, pp. 567–583.
5. Beaume R, Maniak R, Midler C, Crossing innovation and product projects management: A
comparative analysis in the automotive industry, International Journal of Project
Management, Vol. 27, No. 2, 2009, pp. 166–174.
6. Schmidt W-P, Life Cycle Tools within Ford of Europe’s Product Sustainability Index. Case
Study Ford S-MAX & Ford Galaxy (8 pp), The International Journal of Life Cycle
Assessment, Vol. 11, No. 5, 2006, pp. 315–322.
7. Karlsson R, Steen B, Wendel A, EPS as a Life Cycle oriented System Assessment Tool to
Facilitate Industrial Learning about Relations to the Environment, The 15th International
Conference of the System Dynamics Society, Istanbul, Turkey, 1997, pp. 61–68.
8. Tingström J, Karlsson R, The relationship between environmental analyses and the dialogue
process in product development, Journal of Cleaner Production, Vol. 14, No. 15–16, 2006,
pp. 1409–1419.
9. Nakano K, Hirao M, Collaborative activity with business partners for improvement of product
environmental performance using LCA, Journal of Cleaner Production, Vol. 19, No. 11, 2011,
pp. 1189–1197.
10. Keoleian G.A, Kar K, Elucidating complex design and management trade-offs through life
cycle design: air intake manifold demonstration project, Journal of Cleaner Production, Vol.
11, No. 1, 2003, pp. 61–77.
11. Bocken N.M.P, Allwood J.M, Willey A.R, King J.M.H, Development of an eco-ideation tool
to identify stepwise greenhouse gas emissions reduction options for consumer goods, Journal
of Cleaner Production, Vol. 19, No. 12, 2011, pp. 1279–1287.
12. Gasafi E, Weil M, Approach and application of life cycle screening in early phases of process
design: case study of supercritical water gasification, Journal of Cleaner Production, Vol. 19,
No. 14, 2011, pp. 1590–1600.
13. Poudelet V, Chayer J-A, Margni M, Pellerin R, Samson R, A process-based approach to
operationalize life cycle assessment through the development of an eco-design
decision-support system, Journal of Cleaner Production, Vol. 33, 2012, pp. 192–201.
14. Hatcher G.D, Ijomah W.L, Windmill J.F.C, Integrating design for remanufacture into the
design process: the operational factors, Journal of Cleaner Production, Vol. 39, 2013,
pp. 200–208.
15. Garcia J, Millet D, Tonnelier P, A tool to evaluate the impacts of an innovation on a product’s
recyclability rate by adopting a modular approach: automotive sector application,
International Journal of Vehicle Design, Vol. 67, No. 2, 2015, pp. 178–204.
16. Garcia J, Millet D, Tonnelier P, Construction of evolving models for the environmental
evaluation of innovative sub-systems based on a hierarchical agglomerative clustering,
International Journal of Sustainable Engineering, Vol. 8, No. 6, 2015, pp. 386–404.
17. Hastie T, Tibshirani R, Friedman J.J.H, The elements of statistical learning, Springer New
York, 2001.
18. Tchertchian N, Yvars P-A, Millet D, Benefits and limits of a Constraint Satisfaction Problem/
Life Cycle Assessment approach for the ecodesign of complex systems: a case applied to a
hybrid passenger ferry, Journal of Cleaner Production, Vol. 42, 2013, pp. 1–18.
Implementation of Environmental Considerations …
379
