257
References
Alavi, N., Shirmardi, M., Babaei, A., Takdastan, A., & Bagheri, N. (2015). Waste electrical and
electronic equipment (WEEE) estimation: A case study of Ahvaz City, Iran. Journal of the Air
and Waste Management Association, 65 (3), 298–305.
Andarani, P., & Goto, N. (2014). Potential e-waste generated from households in Indonesia using
material fl ow analysis. Journal of Material Cycles and Waste Management, 16 (2), 306–320.
Aoki-Suziki, C., Bengtsson, M., & Hotta, Y. (2012). Policy application of economy-wide material
fl ow accounting – International comparison and suggestions for capacity development in
industrializing countries. Journal of Industrial Ecology, 16 (4), 467–480.
Araújo, M. G., Magrini, A., Mahler, C. F., & Bilitewski, B. (2012). A model for estimation of
potential generation of waste electrical and electronic equipment in Brazil. Waste Management,
32 (2), 335–342.
Ayres, R., & Ayres, L. (1998). Accounting for resources 1 (245 pp). Cheltenham: Edward Elgar.
Ayres, R., & Ayres, L. (1999). Accounting for resources 2 (371 pp). Cheltenham: Edward Elgar.
Ayres, R., & Ayres, L. (Eds.). (2002). A handbook of industrial ecology (680 pp). Cheltenham:
Edward Elgar.
Ayres, R., & Kneese, A. (1969). Production, consumption and externalities. American Economic
Review, 59 (3), 282–297.
Bailey, R., Bras, B., & Allen, J. K. (2008). Measuring material cycling in industrial systems.
Resources, Conservation and Recycling, 52 (4), 643–652.
Bergsdal, H., Bohne, R. A., & Brattebo, H. (2007). Projection of construction and demolition
waste in Norway. Journal of Industrial Ecology, 11 (3), 27–39.
Bogucka, R., Kosinska, I., & Brunner, P. H. (2008). Setting priorities in plastic waste management – Lessons learned from material fl ow analysis in Austria and Poland. Polimery, 53 (1),
55–59.
Breivik, K., Armitage, J. M., Wania, F., & Jones, K. C. (2014). Tracking the global generation and
exports of e-waste. Do existing estimates add up? Environmental Science and Technology,
48 (15), 8735–8743.
Bringezu, S., & Moriguchi, Y. (2002). Material fl ow analysis. In Ayres, R. & Ayres, L. (Eds.), A
handbook of industrial ecology (pp. 79–90), Cheltenham: Edward Elgar.
Bringezu, S., Schqtz, H., Steger, S., & Baudisch, J. (2004). International comparison of resource
use and its relation to economic growth – The development of total material requirement, direct
material inputs and hidden fl ows and the structure of TMR. Ecological Economics, 51 (1-2),
97–124.
Chancerel, P., Meskers, C. E. M., Hageluken, C., & Rotter, V. S. (2009). Assessment of precious
metal fl ows during preprocessing of waste electrical and electronic equipment. Journal of
Industrial Ecology, 13 (5), 791–810.
Chang, T. C., You, S. J., Yu, B. S., & Yao, K. F. (2009). A material fl ow of lithium batteries in
Taiwan. Journal of Hazardous Materials, 163 , 910–915.
Cheah, L., Heywood, J., & Kirchain, R. (2009). Aluminum stock and fl ows in U.S. passenger
vehicles and implications for energy use. Journal of Industrial Ecology, 13 (5), 718–734.
Chen, W.-Q., & Graedel, T. E. (2012). Anthropogenic cycles of the elements: A critical review.
Environmental Science and Technology, 46 (16), 8574–8586.
Chung, S. S. (2012). Projection of waste quantities: The case of e-waste of the People’s Republic
of China. Waste Management and Research, 30 (11), 1130–1137.
Chung, S. S., Lau, K. Y., & Zhang, C. (2011). Generation of, and control measures for, e-waste in
Hong Kong. Waste Management, 31 (3), 544–554.
Cordell, D., Rosemarin, A., Schroder, J.-J., & Smit, A. L. (2011). Towards global phosphorus
security: A systematic framework for phosphorus recovery and reuse options. Chemosphere,
84 , 747–758.
Daniels, P. (2002). Approaches for quantifying the metabolism of physical economies – Part II
review of individual approaches. Journal of Industrial Ecology, 6 (1), 65–88.
12 Material Flow Analysis and Waste Management
References
Alavi, N., Shirmardi, M., Babaei, A., Takdastan, A., & Bagheri, N. (2015). Waste electrical and
electronic equipment (WEEE) estimation: A case study of Ahvaz City, Iran. Journal of the Air
and Waste Management Association, 65 (3), 298–305.
Andarani, P., & Goto, N. (2014). Potential e-waste generated from households in Indonesia using
material fl ow analysis. Journal of Material Cycles and Waste Management, 16 (2), 306–320.
Aoki-Suziki, C., Bengtsson, M., & Hotta, Y. (2012). Policy application of economy-wide material
fl ow accounting – International comparison and suggestions for capacity development in
industrializing countries. Journal of Industrial Ecology, 16 (4), 467–480.
Araújo, M. G., Magrini, A., Mahler, C. F., & Bilitewski, B. (2012). A model for estimation of
potential generation of waste electrical and electronic equipment in Brazil. Waste Management,
32 (2), 335–342.
Ayres, R., & Ayres, L. (1998). Accounting for resources 1 (245 pp). Cheltenham: Edward Elgar.
Ayres, R., & Ayres, L. (1999). Accounting for resources 2 (371 pp). Cheltenham: Edward Elgar.
Ayres, R., & Ayres, L. (Eds.). (2002). A handbook of industrial ecology (680 pp). Cheltenham:
Edward Elgar.
Ayres, R., & Kneese, A. (1969). Production, consumption and externalities. American Economic
Review, 59 (3), 282–297.
Bailey, R., Bras, B., & Allen, J. K. (2008). Measuring material cycling in industrial systems.
Resources, Conservation and Recycling, 52 (4), 643–652.
Bergsdal, H., Bohne, R. A., & Brattebo, H. (2007). Projection of construction and demolition
waste in Norway. Journal of Industrial Ecology, 11 (3), 27–39.
Bogucka, R., Kosinska, I., & Brunner, P. H. (2008). Setting priorities in plastic waste management – Lessons learned from material fl ow analysis in Austria and Poland. Polimery, 53 (1),
55–59.
Breivik, K., Armitage, J. M., Wania, F., & Jones, K. C. (2014). Tracking the global generation and
exports of e-waste. Do existing estimates add up? Environmental Science and Technology,
48 (15), 8735–8743.
Bringezu, S., & Moriguchi, Y. (2002). Material fl ow analysis. In Ayres, R. & Ayres, L. (Eds.), A
handbook of industrial ecology (pp. 79–90), Cheltenham: Edward Elgar.
Bringezu, S., Schqtz, H., Steger, S., & Baudisch, J. (2004). International comparison of resource
use and its relation to economic growth – The development of total material requirement, direct
material inputs and hidden fl ows and the structure of TMR. Ecological Economics, 51 (1-2),
97–124.
Chancerel, P., Meskers, C. E. M., Hageluken, C., & Rotter, V. S. (2009). Assessment of precious
metal fl ows during preprocessing of waste electrical and electronic equipment. Journal of
Industrial Ecology, 13 (5), 791–810.
Chang, T. C., You, S. J., Yu, B. S., & Yao, K. F. (2009). A material fl ow of lithium batteries in
Taiwan. Journal of Hazardous Materials, 163 , 910–915.
Cheah, L., Heywood, J., & Kirchain, R. (2009). Aluminum stock and fl ows in U.S. passenger
vehicles and implications for energy use. Journal of Industrial Ecology, 13 (5), 718–734.
Chen, W.-Q., & Graedel, T. E. (2012). Anthropogenic cycles of the elements: A critical review.
Environmental Science and Technology, 46 (16), 8574–8586.
Chung, S. S. (2012). Projection of waste quantities: The case of e-waste of the People’s Republic
of China. Waste Management and Research, 30 (11), 1130–1137.
Chung, S. S., Lau, K. Y., & Zhang, C. (2011). Generation of, and control measures for, e-waste in
Hong Kong. Waste Management, 31 (3), 544–554.
Cordell, D., Rosemarin, A., Schroder, J.-J., & Smit, A. L. (2011). Towards global phosphorus
security: A systematic framework for phosphorus recovery and reuse options. Chemosphere,
84 , 747–758.
Daniels, P. (2002). Approaches for quantifying the metabolism of physical economies – Part II
review of individual approaches. Journal of Industrial Ecology, 6 (1), 65–88.
12 Material Flow Analysis and Waste Management
