66
ILV., GVM., & IFEU. (1991). Umweltprofi le von Packstoffen und Packmitteln, Methode (Entwurf).
München, Wiesbaden & Heidelberg: Fraunhofer-Institut für Lebensmitteltechnologie und
Verpackung (ILV), Gesellschaft für Verpackungsmarktforschung Wiesbaden (GVM) & Institut
für Energie- und Umweltforschung Heidelberg (IFEU).
Jørgensen, A., Le Bocq, A., Nazurkina, L., & Hauschild, M. (2008). Methodologies for social life
cycle assessment. International Journal of Life Cycle Assessment, 13 (2), 96–103.
Jørgensen, A., Herrmann, I. T., & Bjørn, A. (2013). Analysis of the link between a defi nition of
sustainability and the life cycle methodologies. International Journal of Life Cycle Assessment,
18 (8), 1440–1449.
Klöpffer, W. (2003). Life-cycle based methods for sustainable product development. International
Journal of Life Cycle Assessment, 8 (3), 157–159.
Klöpffer, W. (2008). Life cycle sustainability assessment of products. International Journal of Life
Cycle Assessment, 13 (2), 89–95.
Klöpffer, W., & Grahl, B. (2014). Life cycle assessment (LCA) – A guide to best practice . Weinheim:
Wiley-VCH.
Klöpffer, W., & Renner, I. (2007). Lebenszyklusbasierte Nachhaltigkeitsbewertung von Produkten.
TaTuP Zeitschrift des ITAS zur Technikfolgenabschätzung, 16 (3), 32–38.
Koning, A. de, Huppes, G., Deetman, S., & Tukker, A. (2015). Scenarios for a 2 °C world: a tradelinked input–output model with high sector detail. Climate Policy , (in press). doi: 10.1080/146
93062.2014.999224
Kucukvar, M., & Tatari, O. (2013). Towards a triple bottom-line sustainability assessment of the
U.S. construction industry. International Journal of Life Cycle Assessment, 18 (5), 958–972.
Kucukvar, M., Gumus, S., Egilmez, G., & Tatari, O. (2014a). Ranking the sustainability performance of pavements: An intuitionistic fuzzy decision making method. Automation in
Construction, 40 , 33–43.
Kucukvar, M., Noori, M., Egilmez, G., & Tatari, O. (2014b). Stochastic decision modeling for
sustainable pavement designs. International Journal of Life Cycle Assessment, 19 (6),
1185–1199.
Lindfors, L.-G. (Ed.) (1992). Product life cycle assessment – Principles and methodology. Nord ,
1992, 9. Copenhagen: Nordic Council of Ministers.
Lindfors, L.-G., Christiansen, K., Hoffman, L., Virtanen, Y., Juntilla, V., Hanssen, O. J., Rønning,
A., Ekvall, T., & Finnveden, G. (1995). Nordic guidelines on life-cycle assessment. Nord ,
1995, 20. Copenhagen: Nordic Council of Ministers.
Manzardo, A., Ren, J., Mazzi, A., & Scipioni, A. (2012). A grey-based group decision-making
methodology for the selection of hydrogen technologies in life cycle sustainability perspective.
International Journal of Hydrogen Energy, 37 (23), 17663–17670.
Mendoza Beltran, A., Guinée, J., & Heijungs, R. (2014, October). A statistical approach to deal
with uncertainty due to the choice of allocation method in LCA . Paper presented at the 9th
international conference on LCA of food, San Francisco. Retrieved March 15, 2015, from
http://lcafood2014.org/papers/163.pdf
Menikpura, S. N. M., Gheewala, S. H., & Bonnet, S. (2012). Framework for life cycle sustainability assessment of municipal solid waste management systems with an application to a case
study in Thailand. Waste Management and Research, 30 (7), 708–719.
Mitchell, C. A., Carew, A. L., & Clift, R. (2004). The role of the professional engineer and scientist
in sustainable development. In A. Azapagic, R. Clift, & S. Perdan (Eds.), Sustainable development in practice: Case studies for engineers and scientists (pp. 29–55). Chichester: Wiley.
Moriizumi, Y., Matsui, N., & Hondo, H. (2010). Simplifi ed life cycle sustainability assessment of
mangrove management: A case of plantation on wastelands in Thailand. Journal of Cleaner
Production, 18 (16–17), 1629–1638.
Onat, N. C., Kucukvar, M., & Tatari, O. (2014). Integrating triple bottom line input–output analysis
into life cycle sustainability assessment framework: The case for US buildings. International
Journal of Life Cycle Assessment, 19 (8), 1488–1505.
J. Guinée
ILV., GVM., & IFEU. (1991). Umweltprofi le von Packstoffen und Packmitteln, Methode (Entwurf).
München, Wiesbaden & Heidelberg: Fraunhofer-Institut für Lebensmitteltechnologie und
Verpackung (ILV), Gesellschaft für Verpackungsmarktforschung Wiesbaden (GVM) & Institut
für Energie- und Umweltforschung Heidelberg (IFEU).
Jørgensen, A., Le Bocq, A., Nazurkina, L., & Hauschild, M. (2008). Methodologies for social life
cycle assessment. International Journal of Life Cycle Assessment, 13 (2), 96–103.
Jørgensen, A., Herrmann, I. T., & Bjørn, A. (2013). Analysis of the link between a defi nition of
sustainability and the life cycle methodologies. International Journal of Life Cycle Assessment,
18 (8), 1440–1449.
Klöpffer, W. (2003). Life-cycle based methods for sustainable product development. International
Journal of Life Cycle Assessment, 8 (3), 157–159.
Klöpffer, W. (2008). Life cycle sustainability assessment of products. International Journal of Life
Cycle Assessment, 13 (2), 89–95.
Klöpffer, W., & Grahl, B. (2014). Life cycle assessment (LCA) – A guide to best practice . Weinheim:
Wiley-VCH.
Klöpffer, W., & Renner, I. (2007). Lebenszyklusbasierte Nachhaltigkeitsbewertung von Produkten.
TaTuP Zeitschrift des ITAS zur Technikfolgenabschätzung, 16 (3), 32–38.
Koning, A. de, Huppes, G., Deetman, S., & Tukker, A. (2015). Scenarios for a 2 °C world: a tradelinked input–output model with high sector detail. Climate Policy , (in press). doi: 10.1080/146
93062.2014.999224
Kucukvar, M., & Tatari, O. (2013). Towards a triple bottom-line sustainability assessment of the
U.S. construction industry. International Journal of Life Cycle Assessment, 18 (5), 958–972.
Kucukvar, M., Gumus, S., Egilmez, G., & Tatari, O. (2014a). Ranking the sustainability performance of pavements: An intuitionistic fuzzy decision making method. Automation in
Construction, 40 , 33–43.
Kucukvar, M., Noori, M., Egilmez, G., & Tatari, O. (2014b). Stochastic decision modeling for
sustainable pavement designs. International Journal of Life Cycle Assessment, 19 (6),
1185–1199.
Lindfors, L.-G. (Ed.) (1992). Product life cycle assessment – Principles and methodology. Nord ,
1992, 9. Copenhagen: Nordic Council of Ministers.
Lindfors, L.-G., Christiansen, K., Hoffman, L., Virtanen, Y., Juntilla, V., Hanssen, O. J., Rønning,
A., Ekvall, T., & Finnveden, G. (1995). Nordic guidelines on life-cycle assessment. Nord ,
1995, 20. Copenhagen: Nordic Council of Ministers.
Manzardo, A., Ren, J., Mazzi, A., & Scipioni, A. (2012). A grey-based group decision-making
methodology for the selection of hydrogen technologies in life cycle sustainability perspective.
International Journal of Hydrogen Energy, 37 (23), 17663–17670.
Mendoza Beltran, A., Guinée, J., & Heijungs, R. (2014, October). A statistical approach to deal
with uncertainty due to the choice of allocation method in LCA . Paper presented at the 9th
international conference on LCA of food, San Francisco. Retrieved March 15, 2015, from
http://lcafood2014.org/papers/163.pdf
Menikpura, S. N. M., Gheewala, S. H., & Bonnet, S. (2012). Framework for life cycle sustainability assessment of municipal solid waste management systems with an application to a case
study in Thailand. Waste Management and Research, 30 (7), 708–719.
Mitchell, C. A., Carew, A. L., & Clift, R. (2004). The role of the professional engineer and scientist
in sustainable development. In A. Azapagic, R. Clift, & S. Perdan (Eds.), Sustainable development in practice: Case studies for engineers and scientists (pp. 29–55). Chichester: Wiley.
Moriizumi, Y., Matsui, N., & Hondo, H. (2010). Simplifi ed life cycle sustainability assessment of
mangrove management: A case of plantation on wastelands in Thailand. Journal of Cleaner
Production, 18 (16–17), 1629–1638.
Onat, N. C., Kucukvar, M., & Tatari, O. (2014). Integrating triple bottom line input–output analysis
into life cycle sustainability assessment framework: The case for US buildings. International
Journal of Life Cycle Assessment, 19 (8), 1488–1505.
J. Guinée
