258
Daniels, P., & Moore, S. (2001). Approaches for quantifying the metabolism of physical economies – Part I methodological overview. Journal of Industrial Ecology, 5 (4), 69–93.
Deschenes, P. J., & Chertow, M. (2004). An island approach to industrial ecology: Towards sustainability in the island context. Journal of Environmental Planning and Management, 47 (2),
201–217.
Dietzenbacher, E. (2005). Waste treatment in physical input–output analysis. Ecological
Economics, 55 , 11–23.
Dwivedy, M., & Mittal, R. K. (2010a). Estimation of future outfl ows of e-waste in India. Waste
Management, 30 (3), 483–491.
Dwivedy, M., & Mittal, R. K. (2010b). Future trends in computer waste generation in India. Waste
Management, 30 (11), 2265–2277.
Eckelman, M. J., & Chertow, M. R. (2009). Using material fl ow analysis to illuminate long-term
waste management solutions in Oahu, Hawaii. Journal of Industrial Ecology, 13 (5), 758–774.
Eckelman, M., & Daigo, I. (2008). Markov chain modeling of the technological lifetime of copper.
Ecological Economics, 67 (2), 265–273.
Eckelman, M. J., Reck, B. K., & Graedel, T. E. (2012). Exploring the global journey of nickel with
Markov chain models. Journal of Industrial Ecology, 16 (3), 334–342.
Eckelman, M. J., Ashton, W., Arakaki, Y., Hanaki, K., Nagashima, S., & Malone-Lee, L. C. (2014).
Island waste management systems – Statistics, challenges, and opportunities for applied industrial ecology. Journal of Industrial Ecology, 18 (2), 306–317.
Eurostat. (2001). Economy-wide material fl ow accounts and derived indicators – A methodological guide . Luxembourg: European Communities.
Fisher-Kowalski, M., Krausmann, F., Giljum, S., Lutter, S., Mayer, A., Bringezu, S., Moriguchi,
Y., Schütz, H., Schandl, H., & Weisz, H. (2011). Methodology and indicators of economy-wide
material fl ow accounting. Journal of Industrial Ecology, 15 (6), 855–876.
Fuse, M., Nakajima, K., & Yagita, H. (2009). Global fl ow of metal resources in the used automobile trade. Materials Transactions, 50 (4), 703–710.
Gerst, M. D., & Graedel, T. E. (2008). In-use stocks of metals – Status and implications.
Environmental Science and Technology, 42 (19), 7038–7045.
Graedel, T. E., Allwood, J., Birat, J.-P., Buchert, M., Hagelueken, C., Reck, B. K., Sibley, S. F., &
Sonnemann, G. (2011). What do we know about metal recycling rates? Journal of Industrial
Ecology, 15 (3), 355–366.
Gutiérrez, E., Adenso-Díaz, B., Lozano, S., & González-Torre, P. (2010). A competing risks
approach for time estimation of household WEEE disposal. Waste Management, 30 ,
1643–1652.
Habuer, Nakatani, J., & Moriguchi, Y. (2014). Time-series product and substance fl ow analyses of
end-of-life electrical and electronic equipment in China. Waste Management, 34 (02),
489–497.
Hashimoto, S. (2009). A Junkan-Gata Society – Concept and progress in material fl ow analysis in
Japan. Journal of Industrial Ecology, 13 (5), 655–657.
Hashimoto, S., & Moriguchi, Y. (2004). Proposal of six indicators of material cycles for describing
society’s metabolism: From the viewpoint of material fl ow analysis. Resources, Conservation
and Recycling, 40 (3), 185–200.
Hashimoto, S., Tanikawa, H., & Moriguchi, Y. (2007). Where will the large amounts of materials
accumulated within the economy go? – A material fl ow analysis of construction minerals for
Japan. Waste Management, 27 (12), 1725–1738.
Hashimoto, S., Daigo, I., Murakami, S., Matsubae-Yokoyama, K., Fuse, M., Nakajima, K., Oguchi,
M., Tanikawa, H., Tasaki, T., Yamasue, E., & Umezawa, O. (2008). Framework of material
stock accounts – Toward assessment of material accumulation in the economic sphere. In
Proceedings of the eighth international conference on ecobalance, C-08 , Tokyo.
Hashimoto, S., Tanikawa, H., & Moriguchi, Y. (2009). Framework for estimating potential wastes
and secondary resources accumulated within an economy – A case study of construction minerals in Japan. Waste Management, 29 (11), 2859–2866.
Y. Moriguchi and S. Hashimoto
Daniels, P., & Moore, S. (2001). Approaches for quantifying the metabolism of physical economies – Part I methodological overview. Journal of Industrial Ecology, 5 (4), 69–93.
Deschenes, P. J., & Chertow, M. (2004). An island approach to industrial ecology: Towards sustainability in the island context. Journal of Environmental Planning and Management, 47 (2),
201–217.
Dietzenbacher, E. (2005). Waste treatment in physical input–output analysis. Ecological
Economics, 55 , 11–23.
Dwivedy, M., & Mittal, R. K. (2010a). Estimation of future outfl ows of e-waste in India. Waste
Management, 30 (3), 483–491.
Dwivedy, M., & Mittal, R. K. (2010b). Future trends in computer waste generation in India. Waste
Management, 30 (11), 2265–2277.
Eckelman, M. J., & Chertow, M. R. (2009). Using material fl ow analysis to illuminate long-term
waste management solutions in Oahu, Hawaii. Journal of Industrial Ecology, 13 (5), 758–774.
Eckelman, M., & Daigo, I. (2008). Markov chain modeling of the technological lifetime of copper.
Ecological Economics, 67 (2), 265–273.
Eckelman, M. J., Reck, B. K., & Graedel, T. E. (2012). Exploring the global journey of nickel with
Markov chain models. Journal of Industrial Ecology, 16 (3), 334–342.
Eckelman, M. J., Ashton, W., Arakaki, Y., Hanaki, K., Nagashima, S., & Malone-Lee, L. C. (2014).
Island waste management systems – Statistics, challenges, and opportunities for applied industrial ecology. Journal of Industrial Ecology, 18 (2), 306–317.
Eurostat. (2001). Economy-wide material fl ow accounts and derived indicators – A methodological guide . Luxembourg: European Communities.
Fisher-Kowalski, M., Krausmann, F., Giljum, S., Lutter, S., Mayer, A., Bringezu, S., Moriguchi,
Y., Schütz, H., Schandl, H., & Weisz, H. (2011). Methodology and indicators of economy-wide
material fl ow accounting. Journal of Industrial Ecology, 15 (6), 855–876.
Fuse, M., Nakajima, K., & Yagita, H. (2009). Global fl ow of metal resources in the used automobile trade. Materials Transactions, 50 (4), 703–710.
Gerst, M. D., & Graedel, T. E. (2008). In-use stocks of metals – Status and implications.
Environmental Science and Technology, 42 (19), 7038–7045.
Graedel, T. E., Allwood, J., Birat, J.-P., Buchert, M., Hagelueken, C., Reck, B. K., Sibley, S. F., &
Sonnemann, G. (2011). What do we know about metal recycling rates? Journal of Industrial
Ecology, 15 (3), 355–366.
Gutiérrez, E., Adenso-Díaz, B., Lozano, S., & González-Torre, P. (2010). A competing risks
approach for time estimation of household WEEE disposal. Waste Management, 30 ,
1643–1652.
Habuer, Nakatani, J., & Moriguchi, Y. (2014). Time-series product and substance fl ow analyses of
end-of-life electrical and electronic equipment in China. Waste Management, 34 (02),
489–497.
Hashimoto, S. (2009). A Junkan-Gata Society – Concept and progress in material fl ow analysis in
Japan. Journal of Industrial Ecology, 13 (5), 655–657.
Hashimoto, S., & Moriguchi, Y. (2004). Proposal of six indicators of material cycles for describing
society’s metabolism: From the viewpoint of material fl ow analysis. Resources, Conservation
and Recycling, 40 (3), 185–200.
Hashimoto, S., Tanikawa, H., & Moriguchi, Y. (2007). Where will the large amounts of materials
accumulated within the economy go? – A material fl ow analysis of construction minerals for
Japan. Waste Management, 27 (12), 1725–1738.
Hashimoto, S., Daigo, I., Murakami, S., Matsubae-Yokoyama, K., Fuse, M., Nakajima, K., Oguchi,
M., Tanikawa, H., Tasaki, T., Yamasue, E., & Umezawa, O. (2008). Framework of material
stock accounts – Toward assessment of material accumulation in the economic sphere. In
Proceedings of the eighth international conference on ecobalance, C-08 , Tokyo.
Hashimoto, S., Tanikawa, H., & Moriguchi, Y. (2009). Framework for estimating potential wastes
and secondary resources accumulated within an economy – A case study of construction minerals in Japan. Waste Management, 29 (11), 2859–2866.
Y. Moriguchi and S. Hashimoto
