16
Bringezu, S., Schütz, H., & Moll, S. (2003). Rationale for and interpretation of economy-wide
materials fl ow analysis and derived indicators. Journal of Industrial Ecology, 7 (2), 43–64.
Bringezu, S., Schütz, H., Steger, S., & Baudisch, J. (2004). International comparison of resource
use and its relation to economic growth. Ecological Economics, 51 , 97–124.
Brunner, P. H., Daxbeck, H., & Baccini, P. (1994). Industrial metabolism at the regional and local
level: A case study on a Swiss region. In R. U. Ayres & U. E. Simonis (Eds.), Industrial
metabolism: Restructuring for sustainable development (pp. 163–193). Tokyo: United Nations
University Press.
Cândido, L., Kindlein, W., Demori, R., Carli, L., Mauler, R., & Oliveira, R. (2011). The recycling
cycle of materials as a design project tool. Journal of Cleaner Production, 19 , 1438–1445.
Chen, W., & Graedel, T. E. (2012). Anthropogenic cycles of the elements: A critical review.
Environmental Science & Technology, 46 , 8574–8586.
Chertow, M. R. (2000). Industrial ecology: Literature and taxonomy. Annual Review of Energy and
Environment, 25 , 313–337.
Christiansen, K (Ed.). (1997). Simplifying LCA: Just a cut? Final report of the SETAC-Europe LCA
screening and streamlining working group . ISBN 90-5607-006-1. Brussels: SETAC-Europe.
Clift, R., Udo de Haes, H. A., Bensahel, J. F., Fussler, C. R., Griesshammer, R., & Jensen, A. A.
(1994). Guidelines for the application of life cycle assessment in the EU ecolabelling programme . Brussels: DGXI of the Commission of the European Communities.
Cockerill, K. (2013). A failure reveals success: A comparative analysis of environmental education, education for sustainable development, and industrial ecology education. Journal of
Industrial Ecology, 17 , 633–641.
Desrochers, P. (2000). Market processes and the closing of ‘industrial loops’. Journal of Industrial
Ecology, 4 (1), 29–43.
Diamond, M., Melymuk, L., Csisyer, S. A., & Robson, M. (2010). Estimation of PCB studies,
emissions, and urban fate: Will our policies reduce concentration and exposure? Environmental
Science & Technology, 44 , 2777–2783.
Duchin, F. (1992). Industrial input–output analysis: Implications for industrial ecology.
Proceedings of the National Academy of Sciences of the United States of America, 89 ,
851–855.
Ehrenfeld, J., & Gertler, N. (1997). Industrial ecology in practice: The evolution of interdependence at Kalundborg. Journal of Industrial Ecology, 1 (1), 67–79.
Erkman, S. (1997). Industrial ecology: An historical view. Journal of Cleaner Production, 5 , 1–10.
Erkman, S., & Ramaswamy, R. (2003). Applied industrial ecology: A new platform for planning
sustainable societies . Bangalore: Aicra Publishers.
Ferrao, P. (2009). Ecologia industrial . Lisbon: Instituto Superior Tecnico.
Field, F. R., III, Isaacs, J. A., & Clark, J. P. (1993). Life cycle analysis and its role in product and
process development. International Journal of Environmentally Conscious Design &
Manufacturing, 2 (2), 13–20.
Finlayson, A., Markewitz , K. , & Frayret, J.-M. (2014). Postsecondary education in industrial ecology across the world. Journal of Industrial Ecology, 18 , 931–941.
Fischer-Kowalski, M., & Haberl, H. (1998). Sustainable development: Socio-economic metabolism and colonization of nature. International Social Science Journal, 50 , 573–587.
Fischer-Kowalski, M., Krausmann, F., Giljum, S., Lutter, S., Mayer, A., Bringezu, S., Moriguchi,
Y., Schütz, H., Schandl, H., & Weisz, H. (2011). Methodology and indicators of economy wide
material fl ow accounting. State of the art and reliability across sources. Journal of Industrial
Ecology, 15 (6), 855–876.
Forsund, F. R. (1985). Input–output models, national economic models, and the environment. In
A. V. Kneese & J. L. Sweeney (Eds.), Handbook of natural resource and energy economics
(Vol. 1, pp. 325–341). Dordrecht: Elsevier.
Frosch, R. A., & Gallopoulos, N. E. (1989). Strategies for manufacturing. Scientifi c American,
261 (3), 144–152.
Georgescu-Roegen, N. (1971). The Entropy Law and the Economic Process . Cambridge, MA:
Harvard University Press.
T.E. Graedel and R.J. Lifset
Bringezu, S., Schütz, H., & Moll, S. (2003). Rationale for and interpretation of economy-wide
materials fl ow analysis and derived indicators. Journal of Industrial Ecology, 7 (2), 43–64.
Bringezu, S., Schütz, H., Steger, S., & Baudisch, J. (2004). International comparison of resource
use and its relation to economic growth. Ecological Economics, 51 , 97–124.
Brunner, P. H., Daxbeck, H., & Baccini, P. (1994). Industrial metabolism at the regional and local
level: A case study on a Swiss region. In R. U. Ayres & U. E. Simonis (Eds.), Industrial
metabolism: Restructuring for sustainable development (pp. 163–193). Tokyo: United Nations
University Press.
Cândido, L., Kindlein, W., Demori, R., Carli, L., Mauler, R., & Oliveira, R. (2011). The recycling
cycle of materials as a design project tool. Journal of Cleaner Production, 19 , 1438–1445.
Chen, W., & Graedel, T. E. (2012). Anthropogenic cycles of the elements: A critical review.
Environmental Science & Technology, 46 , 8574–8586.
Chertow, M. R. (2000). Industrial ecology: Literature and taxonomy. Annual Review of Energy and
Environment, 25 , 313–337.
Christiansen, K (Ed.). (1997). Simplifying LCA: Just a cut? Final report of the SETAC-Europe LCA
screening and streamlining working group . ISBN 90-5607-006-1. Brussels: SETAC-Europe.
Clift, R., Udo de Haes, H. A., Bensahel, J. F., Fussler, C. R., Griesshammer, R., & Jensen, A. A.
(1994). Guidelines for the application of life cycle assessment in the EU ecolabelling programme . Brussels: DGXI of the Commission of the European Communities.
Cockerill, K. (2013). A failure reveals success: A comparative analysis of environmental education, education for sustainable development, and industrial ecology education. Journal of
Industrial Ecology, 17 , 633–641.
Desrochers, P. (2000). Market processes and the closing of ‘industrial loops’. Journal of Industrial
Ecology, 4 (1), 29–43.
Diamond, M., Melymuk, L., Csisyer, S. A., & Robson, M. (2010). Estimation of PCB studies,
emissions, and urban fate: Will our policies reduce concentration and exposure? Environmental
Science & Technology, 44 , 2777–2783.
Duchin, F. (1992). Industrial input–output analysis: Implications for industrial ecology.
Proceedings of the National Academy of Sciences of the United States of America, 89 ,
851–855.
Ehrenfeld, J., & Gertler, N. (1997). Industrial ecology in practice: The evolution of interdependence at Kalundborg. Journal of Industrial Ecology, 1 (1), 67–79.
Erkman, S. (1997). Industrial ecology: An historical view. Journal of Cleaner Production, 5 , 1–10.
Erkman, S., & Ramaswamy, R. (2003). Applied industrial ecology: A new platform for planning
sustainable societies . Bangalore: Aicra Publishers.
Ferrao, P. (2009). Ecologia industrial . Lisbon: Instituto Superior Tecnico.
Field, F. R., III, Isaacs, J. A., & Clark, J. P. (1993). Life cycle analysis and its role in product and
process development. International Journal of Environmentally Conscious Design &
Manufacturing, 2 (2), 13–20.
Finlayson, A., Markewitz , K. , & Frayret, J.-M. (2014). Postsecondary education in industrial ecology across the world. Journal of Industrial Ecology, 18 , 931–941.
Fischer-Kowalski, M., & Haberl, H. (1998). Sustainable development: Socio-economic metabolism and colonization of nature. International Social Science Journal, 50 , 573–587.
Fischer-Kowalski, M., Krausmann, F., Giljum, S., Lutter, S., Mayer, A., Bringezu, S., Moriguchi,
Y., Schütz, H., Schandl, H., & Weisz, H. (2011). Methodology and indicators of economy wide
material fl ow accounting. State of the art and reliability across sources. Journal of Industrial
Ecology, 15 (6), 855–876.
Forsund, F. R. (1985). Input–output models, national economic models, and the environment. In
A. V. Kneese & J. L. Sweeney (Eds.), Handbook of natural resource and energy economics
(Vol. 1, pp. 325–341). Dordrecht: Elsevier.
Frosch, R. A., & Gallopoulos, N. E. (1989). Strategies for manufacturing. Scientifi c American,
261 (3), 144–152.
Georgescu-Roegen, N. (1971). The Entropy Law and the Economic Process . Cambridge, MA:
Harvard University Press.
T.E. Graedel and R.J. Lifset
