110
References
Alfaro, J., & Miller, S. (2014). Applying industrial symbiosis to smallholder farms: Modeling a
case study in Liberia, West Africa. Journal of Industrial Ecology, 18 (1), 145–154. doi: 10.1111/
jiec.12077 .
Anh, P. T., My Dieu, T. T., Mol, A. P. J., Kroeze, C., & Bush, S. R. (2011). Towards eco-agro
industrial clusters in aquatic production: The case of shrimp processing industry in Vietnam.
Journal of Cleaner Production, 19 (17–18), 2107–2118. doi: 10.1016/j.jclepro.2011.06.002 .
Ashton, W. (2008). Understanding the organization of industrial ecosystems: A social network
approach. Journal of Industrial Ecology, 12 (1), 34–51. doi: 10.1111/j.1530-9290.2008.00002.x .
Ashton, W. S. (2009). The structure, function, and evolution of a regional industrial ecosystem.
Journal of Industrial Ecology, 13 (2), 228–246. doi: 10.1111/j.1530-9290.2009.00111.x .
Baas, L. (2008). Industrial symbiosis in the Rotterdam Harbour and Industry Complex: Refl ections
on the interconnection of the techno-sphere with the social system. Business Strategy and the
Environment, 17 (5), 330–340. doi: 10.1002/bse.624 .
Baas, L. W., & Huisingh, D. (2008). The synergistic role of embeddedness and capabilities in
industrial symbiosis: Illustration based upon 12 years of experiences in the Rotterdam Harbour
and Industry Complex. Progress in Industrial Ecology, 5 (5–6), 399–421.
Bailey, R., Bras, B., & Allen, J. K. (1999). Using robust concept exploration and systems dynamics
models in the design of complex industrial ecosystems. Engineering Optimization, 32 (1),
33–58.
Boons, F., Spekkink, W., & Mouzakitis, Y. (2011). The dynamics of industrial symbiosis: a proposal for a conceptual framework based upon a comprehensive literature review. Journal of
Cleaner Production, 19 (9–10), 905–911. doi: 10.1016/j.jclepro.2011.01.003 .
Boons, F., Spekkink, W., & Jiao, W. T. (2014). A process perspective on industrial symbiosis theory, methodology, and application. Journal of Industrial Ecology, 18 (3), 341–355. doi: 10.1111/
jiec.12116 .
Boons, F., Chertow, M., Park, J. Y., Spekkink, W., & Shi, H. (2015). Industrial symbiosis dynamics
and the problem of equivalence: Proposal for a comparative framework . Forthcoming.
Cao, K., Feng, X., & Wan, H. (2009). Applying agent-based modeling to the evolution of ecoindustrial systems. Ecological Economics, 68 (11), 2868–2876. doi: 10.1016/j.
ecolecon.2009.06.009 .
Chen, X., Fujita, T., Ohnishi, S., Fujii, M., & Geng, Y. (2012). The impact of scale, recycling
boundary, and type of waste on symbiosis and recycling: An empirical study of Japanese ecotowns. Journal of Industrial Ecology, 16 (1), 129–141. doi: 10.1111/j.1530-9290.2011.00422.x .
Chertow, M. R. (2000). Industrial symbiosis: Literature and taxonomy. Annual Review of Energy
and the Environment, 25 , 313–337. doi: 10.1146/annurev.energy.25.1.313 .
Chertow, M. R. (2007). “Uncovering” industrial symbiosis. Journal of Industrial Ecology, 11 (1),
11–30. doi: 10.1162/jiec.2007.1110 .
Chertow, M., & Ehrenfeld, J. (2012). Organizing self-organizing systems: Toward a theory of
industrial
symbiosis.
Journal
of
Industrial
Ecology,
16 (1),
13–27.
doi: 10.1111/j.1530-9290.2011.00450.x .
Chertow, M. R., & Lombardi, D. R. (2005). Quantifying economic and environmental benefi ts of
co-located fi rms. Environmental Science & Technology, 39 (17), 6535–6541. doi: 10.1021/
es050050+ .
Chertow, M., & Miyata, Y. (2011). Assessing collective fi rm behavior: Comparing industrial symbiosis with possible alternatives for individual companies in Oahu, HI. Business Strategy and
the Environment, 20 (4), 266–280. doi: 10.1002/bse.694 .
Chopra, S. S., & Khanna, V. (2014). Understanding resilience in industrial symbiosis networks:
Insights from network analysis. Journal of Environmental Management, 141 , 86–94.
doi: 10.1016/j.jenvman.2013.12.038 .
M. Chertow and J. Park
References
Alfaro, J., & Miller, S. (2014). Applying industrial symbiosis to smallholder farms: Modeling a
case study in Liberia, West Africa. Journal of Industrial Ecology, 18 (1), 145–154. doi: 10.1111/
jiec.12077 .
Anh, P. T., My Dieu, T. T., Mol, A. P. J., Kroeze, C., & Bush, S. R. (2011). Towards eco-agro
industrial clusters in aquatic production: The case of shrimp processing industry in Vietnam.
Journal of Cleaner Production, 19 (17–18), 2107–2118. doi: 10.1016/j.jclepro.2011.06.002 .
Ashton, W. (2008). Understanding the organization of industrial ecosystems: A social network
approach. Journal of Industrial Ecology, 12 (1), 34–51. doi: 10.1111/j.1530-9290.2008.00002.x .
Ashton, W. S. (2009). The structure, function, and evolution of a regional industrial ecosystem.
Journal of Industrial Ecology, 13 (2), 228–246. doi: 10.1111/j.1530-9290.2009.00111.x .
Baas, L. (2008). Industrial symbiosis in the Rotterdam Harbour and Industry Complex: Refl ections
on the interconnection of the techno-sphere with the social system. Business Strategy and the
Environment, 17 (5), 330–340. doi: 10.1002/bse.624 .
Baas, L. W., & Huisingh, D. (2008). The synergistic role of embeddedness and capabilities in
industrial symbiosis: Illustration based upon 12 years of experiences in the Rotterdam Harbour
and Industry Complex. Progress in Industrial Ecology, 5 (5–6), 399–421.
Bailey, R., Bras, B., & Allen, J. K. (1999). Using robust concept exploration and systems dynamics
models in the design of complex industrial ecosystems. Engineering Optimization, 32 (1),
33–58.
Boons, F., Spekkink, W., & Mouzakitis, Y. (2011). The dynamics of industrial symbiosis: a proposal for a conceptual framework based upon a comprehensive literature review. Journal of
Cleaner Production, 19 (9–10), 905–911. doi: 10.1016/j.jclepro.2011.01.003 .
Boons, F., Spekkink, W., & Jiao, W. T. (2014). A process perspective on industrial symbiosis theory, methodology, and application. Journal of Industrial Ecology, 18 (3), 341–355. doi: 10.1111/
jiec.12116 .
Boons, F., Chertow, M., Park, J. Y., Spekkink, W., & Shi, H. (2015). Industrial symbiosis dynamics
and the problem of equivalence: Proposal for a comparative framework . Forthcoming.
Cao, K., Feng, X., & Wan, H. (2009). Applying agent-based modeling to the evolution of ecoindustrial systems. Ecological Economics, 68 (11), 2868–2876. doi: 10.1016/j.
ecolecon.2009.06.009 .
Chen, X., Fujita, T., Ohnishi, S., Fujii, M., & Geng, Y. (2012). The impact of scale, recycling
boundary, and type of waste on symbiosis and recycling: An empirical study of Japanese ecotowns. Journal of Industrial Ecology, 16 (1), 129–141. doi: 10.1111/j.1530-9290.2011.00422.x .
Chertow, M. R. (2000). Industrial symbiosis: Literature and taxonomy. Annual Review of Energy
and the Environment, 25 , 313–337. doi: 10.1146/annurev.energy.25.1.313 .
Chertow, M. R. (2007). “Uncovering” industrial symbiosis. Journal of Industrial Ecology, 11 (1),
11–30. doi: 10.1162/jiec.2007.1110 .
Chertow, M., & Ehrenfeld, J. (2012). Organizing self-organizing systems: Toward a theory of
industrial
symbiosis.
Journal
of
Industrial
Ecology,
16 (1),
13–27.
doi: 10.1111/j.1530-9290.2011.00450.x .
Chertow, M. R., & Lombardi, D. R. (2005). Quantifying economic and environmental benefi ts of
co-located fi rms. Environmental Science & Technology, 39 (17), 6535–6541. doi: 10.1021/
es050050+ .
Chertow, M., & Miyata, Y. (2011). Assessing collective fi rm behavior: Comparing industrial symbiosis with possible alternatives for individual companies in Oahu, HI. Business Strategy and
the Environment, 20 (4), 266–280. doi: 10.1002/bse.694 .
Chopra, S. S., & Khanna, V. (2014). Understanding resilience in industrial symbiosis networks:
Insights from network analysis. Journal of Environmental Management, 141 , 86–94.
doi: 10.1016/j.jenvman.2013.12.038 .
M. Chertow and J. Park
