112
Gertler, N. (1995). Industrial ecosystems: Developing sustainable industrial structures . Master of
Science, Massachusetts Institute of Technology.
Gibbs, D. (2003). Trust and networking in inter-fi rm relations: The case of eco-industrial development. Local Economy, 18 (3), 222–236. doi: 10.1080/0269094032000114595 .
Gibbs, D. (2009). Eco-industrial parks and industrial ecology: Strategic niche or mainstream
development? In The social embeddedness of industrial ecology (pp. 73–102). Cheltenham:
Edward Elgar.
Grant, G. B., Seager, T. P., Massard, G., & Nies, L. (2010). Information and communication technology for industrial symbiosis. Journal of Industrial Ecology, 14 (5), 740–753.
doi: 10.1111/j.1530-9290.2010.00273.x .
Gregson, N., Crang, M., Ahamed, F. U., Akter, N., Ferdous, R., Foisal, S., & Hudson, R. (2012).
Territorial agglomeration and industrial symbiosis: Sitakunda-Bhatiary, Bangladesh, as a secondary
processing
complex.
Economic
Geography,
88 (1),
37–58.
doi: 10.1111/j.1944-8287.2011.01138.x .
Hardy, C., & Graedel, T. E. (2002). Industrial ecosystems as food webs. Journal of Industrial
Ecology, 6 (1), 29–38. doi: 10.1162/108819802320971623 .
Hashimoto, S., Fujita, T., Geng, Y., & Nagasawa, E. (2010). Realizing CO2 emission reduction
through industrial symbiosis: A cement production case study for Kawasaki. Resources,
Conservation and Recycling, 54 (10), 704–710. doi: 10.1016/j.resconrec.2009.11.013 .
Hewes, A., & Lyons, D. I. (2008). The humanistic side of eco-industrial parks: Champions and the
role of trust. Regional Studies, 42 (10), 1329–1342. doi: 10.1080/00343400701654079 .
Hipólito-Valencia, B. J., Rubio-Castro, E., Ponce-Ortega, J. M., Serna-González, M.,
Nápoles- Rivera, F., & El-Halwagi, M. M. (2014). Optimal design of inter-plant waste energy
integration.
Applied
Thermal
Engineering,
62 (2),
633–652.
doi: 10.1016/j.
applthermaleng.2013.10.015 .
Howard-Grenville, J., & Paquin, R. (2008). Organizational dynamics in industrial ecosystems:
Insights from organizational theory. In M. Ruth & B. Davidsdottir (Eds.), Changing stocks,
fl ows and behaviors in industrial ecosystems (pp. 122–139). Cheltenham/Northampton:
Edward Elgar.
Hu, J. (2012). Making great efforts to promote ecological progress/civilization . Report of Hu
Jintao to the 18th national congress of the communist party of China. Retrieved April 5, 2015,
from http://www.china.org.cn/chinese/18da/2012-11/19/content_27152706_9.htm
Huo, C. H., & Chai, L. H. (2008). Physical principles and simulations on the structural evolution
of eco-industrial systems. Journal of Cleaner Production, 16 (18), 1995–2005. doi: 10.1016/j.
jclepro.2008.02.013 .
Jacobsen, N. B. (2006). Industrial symbiosis in Kalundborg, Denmark: A quantitative assessment
of economic and environmental aspects. Journal of Industrial Ecology, 10 (1–2), 239–255.
doi: 10.1162/108819806775545411 .
Jacobsen, N. B. (2007). Do social factors really matter when companies engage in industrial
symbiosis? Progress in Industrial Ecology, 4 (6), 440–462. doi: 10.1504/PIE.2007.016353 .
Jensen, P. D., Basson, L., Hellawell, E. E., Bailey, M. R., & Leach, M. (2011). Quantifying
‘geographic proximity’: Experiences from the United Kingdom’s national industrial symbiosis
programme. Resources, Conservation and Recycling, 55 (7), 703–712. doi: 10.1016/j.
resconrec.2011.02.003 .
Jiao, W. T., & Boons, F. (2014). Toward a research agenda for policy intervention and facilitation
to enhance industrial symbiosis based on a comprehensive literature review. Journal of Cleaner
Production, 67 , 14–25. doi: 10.1016/j.jclepro.2013.12.050 .
Jung, S., An, K. J., Dodbiba, G., & Fujita, T. (2012). Regional energy-related carbon emission
characteristics and potential mitigation in eco-industrial parks in South Korea: Logarithmic
mean Divisia index analysis based on the Kaya identity. Energy, 46 (1), 231–241. doi: 10.1016/j.
energy.2012.08.028 .
Kalundborg Symbiosis. (2014). Kalundborg symbiosis 40th anniversary: Grafi sk forum A/S .
Denmark.
M. Chertow and J. Park
Gertler, N. (1995). Industrial ecosystems: Developing sustainable industrial structures . Master of
Science, Massachusetts Institute of Technology.
Gibbs, D. (2003). Trust and networking in inter-fi rm relations: The case of eco-industrial development. Local Economy, 18 (3), 222–236. doi: 10.1080/0269094032000114595 .
Gibbs, D. (2009). Eco-industrial parks and industrial ecology: Strategic niche or mainstream
development? In The social embeddedness of industrial ecology (pp. 73–102). Cheltenham:
Edward Elgar.
Grant, G. B., Seager, T. P., Massard, G., & Nies, L. (2010). Information and communication technology for industrial symbiosis. Journal of Industrial Ecology, 14 (5), 740–753.
doi: 10.1111/j.1530-9290.2010.00273.x .
Gregson, N., Crang, M., Ahamed, F. U., Akter, N., Ferdous, R., Foisal, S., & Hudson, R. (2012).
Territorial agglomeration and industrial symbiosis: Sitakunda-Bhatiary, Bangladesh, as a secondary
processing
complex.
Economic
Geography,
88 (1),
37–58.
doi: 10.1111/j.1944-8287.2011.01138.x .
Hardy, C., & Graedel, T. E. (2002). Industrial ecosystems as food webs. Journal of Industrial
Ecology, 6 (1), 29–38. doi: 10.1162/108819802320971623 .
Hashimoto, S., Fujita, T., Geng, Y., & Nagasawa, E. (2010). Realizing CO2 emission reduction
through industrial symbiosis: A cement production case study for Kawasaki. Resources,
Conservation and Recycling, 54 (10), 704–710. doi: 10.1016/j.resconrec.2009.11.013 .
Hewes, A., & Lyons, D. I. (2008). The humanistic side of eco-industrial parks: Champions and the
role of trust. Regional Studies, 42 (10), 1329–1342. doi: 10.1080/00343400701654079 .
Hipólito-Valencia, B. J., Rubio-Castro, E., Ponce-Ortega, J. M., Serna-González, M.,
Nápoles- Rivera, F., & El-Halwagi, M. M. (2014). Optimal design of inter-plant waste energy
integration.
Applied
Thermal
Engineering,
62 (2),
633–652.
doi: 10.1016/j.
applthermaleng.2013.10.015 .
Howard-Grenville, J., & Paquin, R. (2008). Organizational dynamics in industrial ecosystems:
Insights from organizational theory. In M. Ruth & B. Davidsdottir (Eds.), Changing stocks,
fl ows and behaviors in industrial ecosystems (pp. 122–139). Cheltenham/Northampton:
Edward Elgar.
Hu, J. (2012). Making great efforts to promote ecological progress/civilization . Report of Hu
Jintao to the 18th national congress of the communist party of China. Retrieved April 5, 2015,
from http://www.china.org.cn/chinese/18da/2012-11/19/content_27152706_9.htm
Huo, C. H., & Chai, L. H. (2008). Physical principles and simulations on the structural evolution
of eco-industrial systems. Journal of Cleaner Production, 16 (18), 1995–2005. doi: 10.1016/j.
jclepro.2008.02.013 .
Jacobsen, N. B. (2006). Industrial symbiosis in Kalundborg, Denmark: A quantitative assessment
of economic and environmental aspects. Journal of Industrial Ecology, 10 (1–2), 239–255.
doi: 10.1162/108819806775545411 .
Jacobsen, N. B. (2007). Do social factors really matter when companies engage in industrial
symbiosis? Progress in Industrial Ecology, 4 (6), 440–462. doi: 10.1504/PIE.2007.016353 .
Jensen, P. D., Basson, L., Hellawell, E. E., Bailey, M. R., & Leach, M. (2011). Quantifying
‘geographic proximity’: Experiences from the United Kingdom’s national industrial symbiosis
programme. Resources, Conservation and Recycling, 55 (7), 703–712. doi: 10.1016/j.
resconrec.2011.02.003 .
Jiao, W. T., & Boons, F. (2014). Toward a research agenda for policy intervention and facilitation
to enhance industrial symbiosis based on a comprehensive literature review. Journal of Cleaner
Production, 67 , 14–25. doi: 10.1016/j.jclepro.2013.12.050 .
Jung, S., An, K. J., Dodbiba, G., & Fujita, T. (2012). Regional energy-related carbon emission
characteristics and potential mitigation in eco-industrial parks in South Korea: Logarithmic
mean Divisia index analysis based on the Kaya identity. Energy, 46 (1), 231–241. doi: 10.1016/j.
energy.2012.08.028 .
Kalundborg Symbiosis. (2014). Kalundborg symbiosis 40th anniversary: Grafi sk forum A/S .
Denmark.
M. Chertow and J. Park
