261
Nakamura, S., Kondo, Y., Matsubae, K., Nakajima, K., Tasaki, T., & Nagasaka, T. (2012). Quality
and dilution losses in the recycling of ferrous materials from end-of-life passenger cars – Inputoutput analysis under explicit consideration of scrap quality. Environmental Science and
Technology, 46 (17), 9266–9273.
Nnorom, I. C., & Osibanjo, O. (2008). Electronic waste (e-waste) – Material fl ows and management practices in Nigeria. Waste Management, 28 (8), 1472–1479.
OECD. (2005). OECD environmental data compendium 2004 . OECD, Paris.
OECD. (2008). Measuring material fl ows and resource productivity , Volume I The OECD Guide,
Volume II The Accounting Framework, Volume III Inventory of Country Activities. OECD,
Paris.
Oguchi, M., Kameya, T., Yagi, S., & Urano, K. (2008). Product fl ow analysis of various consumer
durables in Japan. Resources, Conservation and Recycling, 52 (3), 463–480.
Ohno, H., Matsubae, K., Nakajima, K., Nakamura, S., & Nagasaka, T. (2014). Unintentional fl ow
of alloying elements in steel during recycling of end-of-life vehicles. Journal of Industrial
Ecology, 18 (2), 242–253.
Osibanjo, O., & Nnorom, I. C. (2008). Material fl ows of mobile phones and accessories in
Nigeria – Environmental implications and sound end-of-life management options.
Environmental Impact Assessment Review, 28 (2-3), 198–213.
Patel, M. K., Jochem, E., Radgen, P., & Worrell, E. (1998). Plastics streams in Germany – An
analysis of production, consumption and waste generation. Resources, Conservation and
Recycling, 24 , 191–215.
Pedersen, G., & de Haan, M. (2006). The system of environmental and economic accounts-2003
and the economic relevance of physical fl ow accounting. Journal of Industrial Ecology, 10 (12), 19–42.
Polak, M., & Drapalova, L. (2012). Estimation of end of life mobile phones generation – The case
study of the Czech Republic. Waste Management, 32 (8), 1583–1591.
Rahmani, M., Nabizadeh, R., Yaghmaeian, K., Mahvi, A. H., & Yunesian, M. (2014). Estimation
of waste from computers and mobile phones in Iran. Resources, Conservation and Recycling,
87 , 21–29.
Richa, K., Babbitt, C. W., Gaustad, G., & Wang, X. (2014). A future perspective on lithium-ion
battery waste fl ows from electric vehicles. Resources, Conservation and Recycling, 83 , 63–76.
Rochat, D., Binder, C. R., Diaz, J., & Jolliet, O. (2013). Combining material fl ow analysis, life
cycle assessment, and multiattribute utility theory – Assessment of end-of-life scenarios for
polyethylene terephthalate in Tunja, Colombia. Journal of Industrial Ecology, 17 (5),
642–655.
Sarkar, S., Chamberlain, J. F., & Miller, S. A. (2011). A comparison of two methods to conduct
material fl ow analysis on waste tires in a small island developing state. Journal of Industrial
Ecology, 15 (2), 300–314.
Schor, K., Wood, R., Arto, I., & Weinzettel, J. (2013). Estimating raw material equivalents on a
macro-level – Comparison of multi-regional input-output analysis and hybrid LCI-IO.
Environmental Science and Technology, 47 (24), 14282–14289.
Schumacher, K. A., Schumacher, T., & Agbemabiese, L. (2014). Quantifi cation and probabilistic
modeling of CRT obsolescence for the State of Delaware. Waste Management, 34 (11),
2321–2326.
Shi, H., Moriguichi, Y., & Yang, J. (2002). Industrial ecology in China, part I: Research. Journal
of Industrial Ecology, 6 (3-4), 7–11.
Shi, F., Huang, T., Tanikawa, H., Han, J., Hashimoto, S., & Moriguchi, Y. (2012). Toward a low
carbon-dematerialization society – Measuring the materials demand and CO2 emissions of
building and transport infrastructure construction in China. Journal of Industrial Ecology,
16 (4), 493–505.
Steubing, B., Boeni, H., Schluep, M., Silva, U., & Ludwig, C. (2010). Assessing computer waste
generation in Chile using material fl ow analysis. Waste Management, 30 (3), 473–482.
12 Material Flow Analysis and Waste Management
Nakamura, S., Kondo, Y., Matsubae, K., Nakajima, K., Tasaki, T., & Nagasaka, T. (2012). Quality
and dilution losses in the recycling of ferrous materials from end-of-life passenger cars – Inputoutput analysis under explicit consideration of scrap quality. Environmental Science and
Technology, 46 (17), 9266–9273.
Nnorom, I. C., & Osibanjo, O. (2008). Electronic waste (e-waste) – Material fl ows and management practices in Nigeria. Waste Management, 28 (8), 1472–1479.
OECD. (2005). OECD environmental data compendium 2004 . OECD, Paris.
OECD. (2008). Measuring material fl ows and resource productivity , Volume I The OECD Guide,
Volume II The Accounting Framework, Volume III Inventory of Country Activities. OECD,
Paris.
Oguchi, M., Kameya, T., Yagi, S., & Urano, K. (2008). Product fl ow analysis of various consumer
durables in Japan. Resources, Conservation and Recycling, 52 (3), 463–480.
Ohno, H., Matsubae, K., Nakajima, K., Nakamura, S., & Nagasaka, T. (2014). Unintentional fl ow
of alloying elements in steel during recycling of end-of-life vehicles. Journal of Industrial
Ecology, 18 (2), 242–253.
Osibanjo, O., & Nnorom, I. C. (2008). Material fl ows of mobile phones and accessories in
Nigeria – Environmental implications and sound end-of-life management options.
Environmental Impact Assessment Review, 28 (2-3), 198–213.
Patel, M. K., Jochem, E., Radgen, P., & Worrell, E. (1998). Plastics streams in Germany – An
analysis of production, consumption and waste generation. Resources, Conservation and
Recycling, 24 , 191–215.
Pedersen, G., & de Haan, M. (2006). The system of environmental and economic accounts-2003
and the economic relevance of physical fl ow accounting. Journal of Industrial Ecology, 10 (12), 19–42.
Polak, M., & Drapalova, L. (2012). Estimation of end of life mobile phones generation – The case
study of the Czech Republic. Waste Management, 32 (8), 1583–1591.
Rahmani, M., Nabizadeh, R., Yaghmaeian, K., Mahvi, A. H., & Yunesian, M. (2014). Estimation
of waste from computers and mobile phones in Iran. Resources, Conservation and Recycling,
87 , 21–29.
Richa, K., Babbitt, C. W., Gaustad, G., & Wang, X. (2014). A future perspective on lithium-ion
battery waste fl ows from electric vehicles. Resources, Conservation and Recycling, 83 , 63–76.
Rochat, D., Binder, C. R., Diaz, J., & Jolliet, O. (2013). Combining material fl ow analysis, life
cycle assessment, and multiattribute utility theory – Assessment of end-of-life scenarios for
polyethylene terephthalate in Tunja, Colombia. Journal of Industrial Ecology, 17 (5),
642–655.
Sarkar, S., Chamberlain, J. F., & Miller, S. A. (2011). A comparison of two methods to conduct
material fl ow analysis on waste tires in a small island developing state. Journal of Industrial
Ecology, 15 (2), 300–314.
Schor, K., Wood, R., Arto, I., & Weinzettel, J. (2013). Estimating raw material equivalents on a
macro-level – Comparison of multi-regional input-output analysis and hybrid LCI-IO.
Environmental Science and Technology, 47 (24), 14282–14289.
Schumacher, K. A., Schumacher, T., & Agbemabiese, L. (2014). Quantifi cation and probabilistic
modeling of CRT obsolescence for the State of Delaware. Waste Management, 34 (11),
2321–2326.
Shi, H., Moriguichi, Y., & Yang, J. (2002). Industrial ecology in China, part I: Research. Journal
of Industrial Ecology, 6 (3-4), 7–11.
Shi, F., Huang, T., Tanikawa, H., Han, J., Hashimoto, S., & Moriguchi, Y. (2012). Toward a low
carbon-dematerialization society – Measuring the materials demand and CO2 emissions of
building and transport infrastructure construction in China. Journal of Industrial Ecology,
16 (4), 493–505.
Steubing, B., Boeni, H., Schluep, M., Silva, U., & Ludwig, C. (2010). Assessing computer waste
generation in Chile using material fl ow analysis. Waste Management, 30 (3), 473–482.
12 Material Flow Analysis and Waste Management
