18
Klee, R. (1999). Zero waste system in paradise. Biocycle, 40 (2), 66–67.
Kleijn, R., Huele, R., & van der Voet, E. (2000). Dynamic substance fl ow analysis: The delaying
mechanism of stocks, with the case of PVC in Sweden. Ecological Economics, 32 , 241–254.
Klöpffer, W. (2006). The role of SETAC in the development of LCA. The International Journal of
Life Cycle Assessment, 11 , 116–122.
Kondo, Y., Moriguchi, Y., & Shimizu, H. (1998). CO 2 emissions in Japan: Infl uences of imports
and exports. Applied Energy, 59 , 163–174.
Kuczenski, B., & Guyer, R. (2010). Material fl ow analysis of polyethylene terephthalate in the US,
1996–2007. Resources, Conservation and Recycling, 54 , 1161–1169.
Laudise, R. A., & Taylor-Smith, R. E. (1999). Lucent industrial ecology faculty fellowship program: Accomplishments, lessons, and prospects. Journal of Industrial Ecology, 2 (4), 15–27.
Lave, L. B., Cobas-Flores, E., Hendrickson, C. T., & McMichael, F. C. (1995). Using input–output
analysis to estimate economy-wide discharges. Environmental Science & Technology, 29 ,
420A–426A.
Lenzen, M. (2001). Errors in conventional and input–output-based life-cycle inventories. Journal
of Industrial Ecology, 4 (4), 127–148.
Lenzen, M., Moran, D., Kanemoto, K., Foran, B., Lobefaro, L., & Geschke, A. (2012). International
trade drives biodiversity threats in developing nations. Nature, 486 , 109–112.
Leontief, W. (1970). Environmental repercussions and economic structure – Input–output
approach. Review of Economics and Statistics, 52 , 262–271.
Lopez-Morales, C., & Duchin, F. (2011). Policies and technologies for a sustainable use of water
in Mexico: A scenario analysis. Economic Systems Research, 23 , 387–407.
Lu, Z. (2008). Crossing “environmental mountain”: Study on industrial ecology . Beijing: Science
Press.
Lundgren, J., Franzén, B., & Storåkers, J. (1994). Design for environment can be profi table – A
case study of the paper feeder in the IBM printer 4234. In Proceedings of the IEEE international symposium on electronics and the environment (pp. 128–133).
Makov, T. (2014). Private communication.
Marstrander, R., Brattebø, H., Røine, K., & Støren, S. (1999). Teaching industrial ecology to graduate students: Experiences at the Norwegian University of Science and Technology. Journal of
Industrial Ecology, 3 (4), 117–130.
Matsuno, Y., Inaba, A., & Betx, M. (1998). Valuation of electricity grid mixes in Japan with application of life-cycle impact assessment methodology. In Proceedings of the third international
conference on ecobalance (pp. 97–100). Tokyo: Society of Non-Traditional Technology.
Matthews, E., Amann, C., Bringezu, S., Fischer-Kowalski, M., Hüttler, W., Kleijn, R., Moriguchi,
Y., Ottke, C., Rodenburg, E., Rogich, D., Schandl, H., Schütz, H., van der Voet, E., & Weisz,
H. (2000). The weight of nations: Material outfl ows from industrial economies (125 pp).
Washington, DC: World Resources Institute.
Meadows, D. H., Meadows, D. L., Randers, J., & Behrens, W. H., III. (1972). Limits to growth .
New York: New American Library.
Melo, M. T. (1999). Statistical analysis of metal scrap generation: The case of aluminium in
Germany. Resources, Conservation and Recycling, 26 , 91–113.
Microelectronics and Computer Technology Corporation. (1994). Electronics industry environmental roadmap . Austin: Microelectronics and Computer Technology Corporation.
Mihelcic, J., & Zimmerman, J. B. (2009). Environmental engineering: Fundamentals sustainability, design . Hoboken: Wiley.
Mihelcic, J., & Zimmerman, J. B. (2014). Environmental engineering: Fundamentals, sustainability, design (2nd ed.). Hoboken: Wiley.
Ministry of International Trade and Industry (MITI) (1988, September). Trends and future tasks in
industrial technology. Developing innovative technologies to support the 21st century, summary of a white paper on industrial technology (29 pp). Tokyo.
Moriguchi, Y. (2001). Rapid socio-economic transition and material fl ows in Japan. Population
and Environment, 23 , 105–115.
Murray, F. E. S. (1993). Xerox: Design for the environment . Harvard Business School case study
9-794-022 , Cambridge, MA: Harvard University .
T.E. Graedel and R.J. Lifset
Klee, R. (1999). Zero waste system in paradise. Biocycle, 40 (2), 66–67.
Kleijn, R., Huele, R., & van der Voet, E. (2000). Dynamic substance fl ow analysis: The delaying
mechanism of stocks, with the case of PVC in Sweden. Ecological Economics, 32 , 241–254.
Klöpffer, W. (2006). The role of SETAC in the development of LCA. The International Journal of
Life Cycle Assessment, 11 , 116–122.
Kondo, Y., Moriguchi, Y., & Shimizu, H. (1998). CO 2 emissions in Japan: Infl uences of imports
and exports. Applied Energy, 59 , 163–174.
Kuczenski, B., & Guyer, R. (2010). Material fl ow analysis of polyethylene terephthalate in the US,
1996–2007. Resources, Conservation and Recycling, 54 , 1161–1169.
Laudise, R. A., & Taylor-Smith, R. E. (1999). Lucent industrial ecology faculty fellowship program: Accomplishments, lessons, and prospects. Journal of Industrial Ecology, 2 (4), 15–27.
Lave, L. B., Cobas-Flores, E., Hendrickson, C. T., & McMichael, F. C. (1995). Using input–output
analysis to estimate economy-wide discharges. Environmental Science & Technology, 29 ,
420A–426A.
Lenzen, M. (2001). Errors in conventional and input–output-based life-cycle inventories. Journal
of Industrial Ecology, 4 (4), 127–148.
Lenzen, M., Moran, D., Kanemoto, K., Foran, B., Lobefaro, L., & Geschke, A. (2012). International
trade drives biodiversity threats in developing nations. Nature, 486 , 109–112.
Leontief, W. (1970). Environmental repercussions and economic structure – Input–output
approach. Review of Economics and Statistics, 52 , 262–271.
Lopez-Morales, C., & Duchin, F. (2011). Policies and technologies for a sustainable use of water
in Mexico: A scenario analysis. Economic Systems Research, 23 , 387–407.
Lu, Z. (2008). Crossing “environmental mountain”: Study on industrial ecology . Beijing: Science
Press.
Lundgren, J., Franzén, B., & Storåkers, J. (1994). Design for environment can be profi table – A
case study of the paper feeder in the IBM printer 4234. In Proceedings of the IEEE international symposium on electronics and the environment (pp. 128–133).
Makov, T. (2014). Private communication.
Marstrander, R., Brattebø, H., Røine, K., & Støren, S. (1999). Teaching industrial ecology to graduate students: Experiences at the Norwegian University of Science and Technology. Journal of
Industrial Ecology, 3 (4), 117–130.
Matsuno, Y., Inaba, A., & Betx, M. (1998). Valuation of electricity grid mixes in Japan with application of life-cycle impact assessment methodology. In Proceedings of the third international
conference on ecobalance (pp. 97–100). Tokyo: Society of Non-Traditional Technology.
Matthews, E., Amann, C., Bringezu, S., Fischer-Kowalski, M., Hüttler, W., Kleijn, R., Moriguchi,
Y., Ottke, C., Rodenburg, E., Rogich, D., Schandl, H., Schütz, H., van der Voet, E., & Weisz,
H. (2000). The weight of nations: Material outfl ows from industrial economies (125 pp).
Washington, DC: World Resources Institute.
Meadows, D. H., Meadows, D. L., Randers, J., & Behrens, W. H., III. (1972). Limits to growth .
New York: New American Library.
Melo, M. T. (1999). Statistical analysis of metal scrap generation: The case of aluminium in
Germany. Resources, Conservation and Recycling, 26 , 91–113.
Microelectronics and Computer Technology Corporation. (1994). Electronics industry environmental roadmap . Austin: Microelectronics and Computer Technology Corporation.
Mihelcic, J., & Zimmerman, J. B. (2009). Environmental engineering: Fundamentals sustainability, design . Hoboken: Wiley.
Mihelcic, J., & Zimmerman, J. B. (2014). Environmental engineering: Fundamentals, sustainability, design (2nd ed.). Hoboken: Wiley.
Ministry of International Trade and Industry (MITI) (1988, September). Trends and future tasks in
industrial technology. Developing innovative technologies to support the 21st century, summary of a white paper on industrial technology (29 pp). Tokyo.
Moriguchi, Y. (2001). Rapid socio-economic transition and material fl ows in Japan. Population
and Environment, 23 , 105–115.
Murray, F. E. S. (1993). Xerox: Design for the environment . Harvard Business School case study
9-794-022 , Cambridge, MA: Harvard University .
T.E. Graedel and R.J. Lifset
