111
Cimren, E., Fiksel, J., Posner, M. E., & Sikdar, K. (2011). Material fl ow optimization in by-product
synergy
networks.
Journal
of
Industrial
Ecology,
15 (2),
315–332.
doi: 10.1111/j.1530-9290.2010.00310.x .
Cohen-Rosenthal, E., & Musnikow, J. (2003). Eco-industrial strategies: Unleashing synergy
between economic development and the environment . Sheffi eld: Greenleaf.
Côté, R., & Hall, J. (1995). Industrial parks as ecosystems. Journal of Cleaner Production, 3 (1–2),
41–46. doi: 10.1016/0959-6526(95)00041-C .
Desrochers, P. (2000). Market processes and the closing of ‘industrial loops’: A historical reappraisal. Journal of Industrial Ecology, 4 (1), 29–43.
Desrochers, P. (2001). Cities and industrial symbiosis: Some historical perspectives and policy
implications. Journal of Industrial Ecology, 5 (4), 29–44. doi: 10.1162/10881980160084024 .
Desrochers, P. (2004). Industrial symbiosis: The case for market coordination. Journal of Cleaner
Production, 12 (8–10), 1099–1110. doi: 10.1016/j.jclepro.2004.02.008 .
Domenech, T., & Davies, M. (2011). The role of embeddedness in industrial symbiosis networks:
Phases in the evolution of industrial symbiosis networks. Business Strategy and the Environment,
20 (5), 281–296. doi: 10.1002/bse.695 .
Dong, L., Zhang, H., Fujita, T., Ohnishi, S., Li, H. Q., Fujii, M., & Dong, H. J. (2013). Environmental
and economic gains of industrial symbiosis for Chinese iron/steel industry: Kawasaki’s experience and practice in Liuzhou and Jinan. Journal of Cleaner Production, 59 , 226–238.
doi: 10.1016/j.jclepro.2013.06.048 .
Dong, H., Ohnishi, S., Fujita, T., Geng, Y., Fujii, M., & Dong, L. (2014). Achieving carbon emission reduction through industrial & urban symbiosis: A case of Kawasaki. Energy, 64 , 277–
286. doi: 10.1016/j.energy.2013.11.005 .
Eckelman, M. J., & Chertow, M. R. (2013). Life cycle energy and environmental benefi ts of a US
industrial symbiosis. International Journal of Life Cycle Assessment, 18 (8), 1524–1532.
doi: 10.1007/s11367-013-0601-5 .
Ehrenfeld, J., & Chertow, M. (2002). Industrial symbiosis: The legacy of kalundborg. In R. U.
Ayres & L. W. Ayres (Eds.), A handbook of industrial ecology . Cheltenham: Edward Elgar.
Ehrenfeld, J., & Gertler, N. (1997). Industrial ecology in practice: The evolution of interdependence at Kalundborg. Journal of Industrial Ecology, 1 (1), 67–79.
Elabras Veiga, L. B., & Magrini, A. (2009). Eco-industrial park development in Rio de Janeiro,
Brazil: A tool for sustainable development. Journal of Cleaner Production, 17 (7), 653–661.
doi: 10.1016/j.jclepro.2008.11.009 .
Erkman, S. (1997). Industrial ecology: An historical view. Journal of Cleaner Production, 5 (1–2),
1–10. doi: 10.1016/S0959-6526(97)00003-6 .
Frosch, R. A., & Gallopoulos, N. E. (1989). Strategies for manufacturing. Scientifi c American,
261 , 144–152.
Geng, Y., & Côté, R. P. (2002). Scavengers and decomposers in an eco-industrial park. International
Journal of Sustainable Development and World Ecology, 9 (4), 333–340.
Geng, Y., Zhang, P., Côté, R. P., & Fujita, T. (2009). Assessment of the national eco-industrial park
standard for promoting industrial symbiosis in China. Journal of Industrial Ecology, 13 (1),
15–26. doi: 10.1111/j.1530-9290.2008.00071.x .
Geng, Y., Zhang, P., Ulgiati, S., & Sarkis, J. (2010). Emergy analysis of an industrial park: The
case of Dalian, China. Science of the Total Environment, 408 (22), 5273–5283. doi: 10.1016/j.
scitotenv.2010.07.081 .
Geng, Y., Fu, J., Sarkis, J., & Xue, B. (2012). Towards a national circular economy indicator system in China: An evaluation and critical analysis. Journal of Cleaner Production, 23 (1), 216–
224. doi: 10.1016/j.jclepro.2011.07.005 .
Geng, Y., Liu, Z. X., Xue, B., Dong, H. J., Fujita, T., & Chiu, A. (2014). Emergy-based assessment
on industrial symbiosis: A case of Shenyang economic and technological development zone.
Environmental Science and Pollution Research, 21 (23), 13572–13587. doi: 10.1007/
s11356-014-3287-8 .
5 Scholarship and Practice in Industrial Symbiosis: 1989–2014
Cimren, E., Fiksel, J., Posner, M. E., & Sikdar, K. (2011). Material fl ow optimization in by-product
synergy
networks.
Journal
of
Industrial
Ecology,
15 (2),
315–332.
doi: 10.1111/j.1530-9290.2010.00310.x .
Cohen-Rosenthal, E., & Musnikow, J. (2003). Eco-industrial strategies: Unleashing synergy
between economic development and the environment . Sheffi eld: Greenleaf.
Côté, R., & Hall, J. (1995). Industrial parks as ecosystems. Journal of Cleaner Production, 3 (1–2),
41–46. doi: 10.1016/0959-6526(95)00041-C .
Desrochers, P. (2000). Market processes and the closing of ‘industrial loops’: A historical reappraisal. Journal of Industrial Ecology, 4 (1), 29–43.
Desrochers, P. (2001). Cities and industrial symbiosis: Some historical perspectives and policy
implications. Journal of Industrial Ecology, 5 (4), 29–44. doi: 10.1162/10881980160084024 .
Desrochers, P. (2004). Industrial symbiosis: The case for market coordination. Journal of Cleaner
Production, 12 (8–10), 1099–1110. doi: 10.1016/j.jclepro.2004.02.008 .
Domenech, T., & Davies, M. (2011). The role of embeddedness in industrial symbiosis networks:
Phases in the evolution of industrial symbiosis networks. Business Strategy and the Environment,
20 (5), 281–296. doi: 10.1002/bse.695 .
Dong, L., Zhang, H., Fujita, T., Ohnishi, S., Li, H. Q., Fujii, M., & Dong, H. J. (2013). Environmental
and economic gains of industrial symbiosis for Chinese iron/steel industry: Kawasaki’s experience and practice in Liuzhou and Jinan. Journal of Cleaner Production, 59 , 226–238.
doi: 10.1016/j.jclepro.2013.06.048 .
Dong, H., Ohnishi, S., Fujita, T., Geng, Y., Fujii, M., & Dong, L. (2014). Achieving carbon emission reduction through industrial & urban symbiosis: A case of Kawasaki. Energy, 64 , 277–
286. doi: 10.1016/j.energy.2013.11.005 .
Eckelman, M. J., & Chertow, M. R. (2013). Life cycle energy and environmental benefi ts of a US
industrial symbiosis. International Journal of Life Cycle Assessment, 18 (8), 1524–1532.
doi: 10.1007/s11367-013-0601-5 .
Ehrenfeld, J., & Chertow, M. (2002). Industrial symbiosis: The legacy of kalundborg. In R. U.
Ayres & L. W. Ayres (Eds.), A handbook of industrial ecology . Cheltenham: Edward Elgar.
Ehrenfeld, J., & Gertler, N. (1997). Industrial ecology in practice: The evolution of interdependence at Kalundborg. Journal of Industrial Ecology, 1 (1), 67–79.
Elabras Veiga, L. B., & Magrini, A. (2009). Eco-industrial park development in Rio de Janeiro,
Brazil: A tool for sustainable development. Journal of Cleaner Production, 17 (7), 653–661.
doi: 10.1016/j.jclepro.2008.11.009 .
Erkman, S. (1997). Industrial ecology: An historical view. Journal of Cleaner Production, 5 (1–2),
1–10. doi: 10.1016/S0959-6526(97)00003-6 .
Frosch, R. A., & Gallopoulos, N. E. (1989). Strategies for manufacturing. Scientifi c American,
261 , 144–152.
Geng, Y., & Côté, R. P. (2002). Scavengers and decomposers in an eco-industrial park. International
Journal of Sustainable Development and World Ecology, 9 (4), 333–340.
Geng, Y., Zhang, P., Côté, R. P., & Fujita, T. (2009). Assessment of the national eco-industrial park
standard for promoting industrial symbiosis in China. Journal of Industrial Ecology, 13 (1),
15–26. doi: 10.1111/j.1530-9290.2008.00071.x .
Geng, Y., Zhang, P., Ulgiati, S., & Sarkis, J. (2010). Emergy analysis of an industrial park: The
case of Dalian, China. Science of the Total Environment, 408 (22), 5273–5283. doi: 10.1016/j.
scitotenv.2010.07.081 .
Geng, Y., Fu, J., Sarkis, J., & Xue, B. (2012). Towards a national circular economy indicator system in China: An evaluation and critical analysis. Journal of Cleaner Production, 23 (1), 216–
224. doi: 10.1016/j.jclepro.2011.07.005 .
Geng, Y., Liu, Z. X., Xue, B., Dong, H. J., Fujita, T., & Chiu, A. (2014). Emergy-based assessment
on industrial symbiosis: A case of Shenyang economic and technological development zone.
Environmental Science and Pollution Research, 21 (23), 13572–13587. doi: 10.1007/
s11356-014-3287-8 .
5 Scholarship and Practice in Industrial Symbiosis: 1989–2014
