19
Nagel, C. (1997). Single-use cameras within a multi-use concept – Ecological (non)sense!? In
Proceedings of the IEEE international symposium on electronics and the environment
(pp. 69–72). Piscataway, NJ: IEEE.
Nakamura, S., & Kondo, Y. (2002). Input–output analysis of waste management. Journal of
Industrial Ecology, 6 (1), 39–63.
Nakamura, S., & Kondo, Y. (2009). Waste input–output analysis, LCA and LCC. In S. Suh (Ed.),
Handbook of input–output economics for industrial ecology (pp. 561–572). Dordrecht:
Springer.
Newcombe, K., Kalma, J. D., & Aston, A. R. (1978). The metabolism of a city: The case of Hong
Kong. Ambio, 7 (1), 3–15.
Newman, P. W. G. (1999). Sustainability and cities: Extending the metabolism model. Landscape
and Urban Planning, 44 , 219–226.
Octave, S., & Thomas, D. (2009). Biorefi nery: Toward an industrial metabolism. Biochimie, 91 ,
659–664.
Offi ce of Technology Assessment. (1992). Green products by design: Choices for a cleaner environment (117 pp). Washington, DC: Congress of the United States.
Patel, C. K. N. (Organizer) (1992). Papers from a colloquium entitled “industrial ecology”. In
Proceedings of the National Academy of Sciences of the U.S. , 89, 793–884.
Pauliuk, S., Wang, T., & Müller, D. B. (2012). Moving toward the circular economy: The role of
stocks in the Chinese steel cycle. Environmental Science & Technology, 46 , 148–154.
Pittinger, C. A., Sellers, J. S., Janzen, D. C., Koch, D. G., Rothgeb, T. M., & Hunnicut, M. L.
(1993). Environmental life-cycle inventory of detergent – Grade surfactant sourcing and production. Journal of the American Oil Chemists’ Society, 70 , 1–15.
Porada, T. (1994). Materials recovery: Asset alchemy. In Proceedings of the IEEE international
symposium on electronics and the environment (pp. 171–173). Piscataway, NJ: IEEE.
Rauch, J. N. (2009). Global mapping of Al, Cu, Fe, and Zn in-use stocks and in-ground resources.
Proceedings of the National Academy of Sciences of the United States of America, 106 ,
18920–18925.
Reap, J., Roman, F., Duncan, S., & Bras, B. (2008a). A survey of unresolved problems in life-cycle
assessment. Part 1: Goal and scope and inventory analysis. International Journal of Life Cycle
Assessment, 13 , 290–300.
Reap, J., Roman, F., Duncan, S., & Bras, B. (2008b). A survey of unresolved problems in life-cycle
assessment. Part 2: Impact assessment and interpretation. International Journal of Life Cycle
Assessment, 13 , 374–388.
Reck, B. R., & Graedel, T. E. (2012). Challenges in metal recycling. Science, 337 , 690–695.
Ryan, M. J. (2014). Design for system retirement. Journal of Cleaner Production, 70 , 203–210.
Ryberg, B. A. (1993). Design for environmental quality: Reap the benefi ts of closing the design
loop. In Proceedings of the IEEE international symposium on electronics and the environment
(pp. 37–42). Piscataway, NJ: IEEE.
Schaffartzik, A., Mayer, A., Gingrich, S., Eisenmenger, N., Loy, C., & Krausmann, F. (2014). The
global metabolic transition: Regional patterns and trends of global material fl ows, 1950–2010.
Global Environmental Change, 26 , 87–97.
Scheidt, L.-G., & Stadlbauer, H. (1996). CARE “VISION 2000” – The environmental research
platform of the electronics industry in Europe. In Proceedings of the IEEE international symposium on electronics and the environment (pp. 264–268).
Schütz, H., & Bringezu, S. (1993). Major material fl ows in Germany. Fresenius Environmental
Bulletin, 2 , 443–448.
Schwarz, E. J., & Steininger, K. W. (1997). Implementing nature’s lesson: The industrial recycling
network enhancing regional development. Journal of Cleaner Production, 5 (1–2), 47–56.
Shedd, K. B. (1993). The materials fl ow of cobalt in the United States (26 pp). Washington, DC:
U.S. Department of the Interior.
Sheng, P., Willis III B., & Shiovitz, A. (1995). Infl uence of computer chassis design on metal fabrication waste streams. In Proceedings of the IEEE international symposium on electronics and
the environment (pp. 171–183). Piscataway, NJ: IEEE.
1 Industrial Ecology’s First Decade
Nagel, C. (1997). Single-use cameras within a multi-use concept – Ecological (non)sense!? In
Proceedings of the IEEE international symposium on electronics and the environment
(pp. 69–72). Piscataway, NJ: IEEE.
Nakamura, S., & Kondo, Y. (2002). Input–output analysis of waste management. Journal of
Industrial Ecology, 6 (1), 39–63.
Nakamura, S., & Kondo, Y. (2009). Waste input–output analysis, LCA and LCC. In S. Suh (Ed.),
Handbook of input–output economics for industrial ecology (pp. 561–572). Dordrecht:
Springer.
Newcombe, K., Kalma, J. D., & Aston, A. R. (1978). The metabolism of a city: The case of Hong
Kong. Ambio, 7 (1), 3–15.
Newman, P. W. G. (1999). Sustainability and cities: Extending the metabolism model. Landscape
and Urban Planning, 44 , 219–226.
Octave, S., & Thomas, D. (2009). Biorefi nery: Toward an industrial metabolism. Biochimie, 91 ,
659–664.
Offi ce of Technology Assessment. (1992). Green products by design: Choices for a cleaner environment (117 pp). Washington, DC: Congress of the United States.
Patel, C. K. N. (Organizer) (1992). Papers from a colloquium entitled “industrial ecology”. In
Proceedings of the National Academy of Sciences of the U.S. , 89, 793–884.
Pauliuk, S., Wang, T., & Müller, D. B. (2012). Moving toward the circular economy: The role of
stocks in the Chinese steel cycle. Environmental Science & Technology, 46 , 148–154.
Pittinger, C. A., Sellers, J. S., Janzen, D. C., Koch, D. G., Rothgeb, T. M., & Hunnicut, M. L.
(1993). Environmental life-cycle inventory of detergent – Grade surfactant sourcing and production. Journal of the American Oil Chemists’ Society, 70 , 1–15.
Porada, T. (1994). Materials recovery: Asset alchemy. In Proceedings of the IEEE international
symposium on electronics and the environment (pp. 171–173). Piscataway, NJ: IEEE.
Rauch, J. N. (2009). Global mapping of Al, Cu, Fe, and Zn in-use stocks and in-ground resources.
Proceedings of the National Academy of Sciences of the United States of America, 106 ,
18920–18925.
Reap, J., Roman, F., Duncan, S., & Bras, B. (2008a). A survey of unresolved problems in life-cycle
assessment. Part 1: Goal and scope and inventory analysis. International Journal of Life Cycle
Assessment, 13 , 290–300.
Reap, J., Roman, F., Duncan, S., & Bras, B. (2008b). A survey of unresolved problems in life-cycle
assessment. Part 2: Impact assessment and interpretation. International Journal of Life Cycle
Assessment, 13 , 374–388.
Reck, B. R., & Graedel, T. E. (2012). Challenges in metal recycling. Science, 337 , 690–695.
Ryan, M. J. (2014). Design for system retirement. Journal of Cleaner Production, 70 , 203–210.
Ryberg, B. A. (1993). Design for environmental quality: Reap the benefi ts of closing the design
loop. In Proceedings of the IEEE international symposium on electronics and the environment
(pp. 37–42). Piscataway, NJ: IEEE.
Schaffartzik, A., Mayer, A., Gingrich, S., Eisenmenger, N., Loy, C., & Krausmann, F. (2014). The
global metabolic transition: Regional patterns and trends of global material fl ows, 1950–2010.
Global Environmental Change, 26 , 87–97.
Scheidt, L.-G., & Stadlbauer, H. (1996). CARE “VISION 2000” – The environmental research
platform of the electronics industry in Europe. In Proceedings of the IEEE international symposium on electronics and the environment (pp. 264–268).
Schütz, H., & Bringezu, S. (1993). Major material fl ows in Germany. Fresenius Environmental
Bulletin, 2 , 443–448.
Schwarz, E. J., & Steininger, K. W. (1997). Implementing nature’s lesson: The industrial recycling
network enhancing regional development. Journal of Cleaner Production, 5 (1–2), 47–56.
Shedd, K. B. (1993). The materials fl ow of cobalt in the United States (26 pp). Washington, DC:
U.S. Department of the Interior.
Sheng, P., Willis III B., & Shiovitz, A. (1995). Infl uence of computer chassis design on metal fabrication waste streams. In Proceedings of the IEEE international symposium on electronics and
the environment (pp. 171–183). Piscataway, NJ: IEEE.
1 Industrial Ecology’s First Decade
