42
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.
Pauliuk, S. (2013). The role of stock dynamics in climate change mitigation . PhD thesis, NTNU,
Trondheim, Norway.
Pauliuk, S., & Hertwich, E. G. (2015). Socioeconomic metabolism as paradigm for studying the
biophysical basis of human society . Trondheim: NTNU. Under review with Ecological
Economics.
Pauliuk, S., Milford, R. L., Müller, D. B., & Allwood, J. M. (2013a). The steel scrap age.
Environmental Science & Technology, 47 (7), 3448–3454.
Pauliuk, S., & Müller, D. B. (2014). The role of in-use stocks in the social metabolism and in climate change mitigation. Global Environmental Change, 24 , 132–142.
Pauliuk, S., Sjöstrand, K., & Müller, D. B. (2013b). Transforming the Norwegian dwelling stock
to reach the 2 degrees celsius climate target. Journal of Industrial Ecology, 17 (4), 542–554.
Pauliuk, S., Wang, T., & Müller, D. B. (2012). Moving toward the circular economy: The role of
stocks in the Chinese steel cycle. Environmental Science & Technology, 46 (1), 148–154.
Pauliuk, S., Wood, R., & Hertwich, E. G. (2015). Dynamic models of fi xed capital stocks and their
application in industrial ecology. Journal of Industrial Ecology, 19 (1), 104–116.
Pauliuk, S., Majeau-Bettez, G., & Müller, D. B. (2015). A general system structure and accounting
framework for socioeconomic metabolism. Journal of Industrial Ecology (forthcoming).
Pindyck, R. S. (2013). Climate change policy: What do the models tell us? Journal of Economic
Literature, 51 (3), 860–872.
Plevin, R. J., Delucchi, M. A., & Creutzig, F. (2014a). Using attributional life cycle assessment to
estimate climate-change mitigation benefi ts misleads policy makers. Journal of Industrial
Ecology, 18 (1), 73–83.
Plevin, R. J., Delucchi, M., & Creutzig, F. (2014b). Response to comments on “Using Attributional
Life Cycle Assessment to Estimate Climate-Change Mitigation …”. Journal of Industrial
Ecology, 18 (3), 468–470.
Sandberg, N. H., & Brattebø, H. (2012). Analysis of energy and carbon fl ows in the future
Norwegian dwelling stock. Building Research and Information, 40 (2), 123–139.
Sartori, I., Bergsdal, H., Müller, D. B., & Brattebø, H. (2008). Towards modelling of construction,
renovation and demolition activities: Norway’s dwelling stock, 1900–2100. Building Research
& Information, 36 (5), 412–425.
Schaffartzik, A., Mayer, A., Gingrich, S., Eisenmenger, N., Loy, C., & Krausmann, F. (2014). The
global metabolic transition: Regional patterns and trends of global material fl ows, 1950–2010.
Global Environmental Change, 26 , 87–97.
Schmidt, J., Merciai, S., Delahaye, R., Vuik, J., Heijungs, R., de Koning, A., & Sahoo, A. (2012).
EU-CREEA project. Deliverable no. 4.1. Recommendation of terminology, classifi cation,
framework of waste accounts and MFA, and data collection guideline . Aalborg: 2.0 LCA
consultants.
Scholz, R. W., & Binder, C. R. (2011). Environmental literacy in science and society: From knowledge to decisions . Cambridge: Cambridge University Press.
Sieferle, R. P., Krausmann, F., Schandl, H., & Winiwarter, V. (2006). Das Ende der Fläche .
Cologne: Böhlau & Cie.
Simas, M., Golsteijn, L., Huijbregts, M., Wood, R., & Hertwich, E. G. (2014). The “Bad Labor”
footprint: Quantifying the social impacts of globalization. Sustainability, 6 (11), 7514–7540.
Spielmann, M., Scholz, R. W., Tietje, O., & Haan, P. D. (2005). Scenario modelling in prospective
LCA of transport systems – Application of formative scenario analysis. The International
Journal of Life Cycle Assessment, 10 (5), 325–335.
Stern, N. (2013). The structure of economic modeling of the potential impacts of climate change:
Grafting gross underestimation of risk onto already narrow science models. Journal of
Economic Literature, 51 (3), 838–859.
S. Pauliuk and E.G. Hertwich
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.
Pauliuk, S. (2013). The role of stock dynamics in climate change mitigation . PhD thesis, NTNU,
Trondheim, Norway.
Pauliuk, S., & Hertwich, E. G. (2015). Socioeconomic metabolism as paradigm for studying the
biophysical basis of human society . Trondheim: NTNU. Under review with Ecological
Economics.
Pauliuk, S., Milford, R. L., Müller, D. B., & Allwood, J. M. (2013a). The steel scrap age.
Environmental Science & Technology, 47 (7), 3448–3454.
Pauliuk, S., & Müller, D. B. (2014). The role of in-use stocks in the social metabolism and in climate change mitigation. Global Environmental Change, 24 , 132–142.
Pauliuk, S., Sjöstrand, K., & Müller, D. B. (2013b). Transforming the Norwegian dwelling stock
to reach the 2 degrees celsius climate target. Journal of Industrial Ecology, 17 (4), 542–554.
Pauliuk, S., Wang, T., & Müller, D. B. (2012). Moving toward the circular economy: The role of
stocks in the Chinese steel cycle. Environmental Science & Technology, 46 (1), 148–154.
Pauliuk, S., Wood, R., & Hertwich, E. G. (2015). Dynamic models of fi xed capital stocks and their
application in industrial ecology. Journal of Industrial Ecology, 19 (1), 104–116.
Pauliuk, S., Majeau-Bettez, G., & Müller, D. B. (2015). A general system structure and accounting
framework for socioeconomic metabolism. Journal of Industrial Ecology (forthcoming).
Pindyck, R. S. (2013). Climate change policy: What do the models tell us? Journal of Economic
Literature, 51 (3), 860–872.
Plevin, R. J., Delucchi, M. A., & Creutzig, F. (2014a). Using attributional life cycle assessment to
estimate climate-change mitigation benefi ts misleads policy makers. Journal of Industrial
Ecology, 18 (1), 73–83.
Plevin, R. J., Delucchi, M., & Creutzig, F. (2014b). Response to comments on “Using Attributional
Life Cycle Assessment to Estimate Climate-Change Mitigation …”. Journal of Industrial
Ecology, 18 (3), 468–470.
Sandberg, N. H., & Brattebø, H. (2012). Analysis of energy and carbon fl ows in the future
Norwegian dwelling stock. Building Research and Information, 40 (2), 123–139.
Sartori, I., Bergsdal, H., Müller, D. B., & Brattebø, H. (2008). Towards modelling of construction,
renovation and demolition activities: Norway’s dwelling stock, 1900–2100. Building Research
& Information, 36 (5), 412–425.
Schaffartzik, A., Mayer, A., Gingrich, S., Eisenmenger, N., Loy, C., & Krausmann, F. (2014). The
global metabolic transition: Regional patterns and trends of global material fl ows, 1950–2010.
Global Environmental Change, 26 , 87–97.
Schmidt, J., Merciai, S., Delahaye, R., Vuik, J., Heijungs, R., de Koning, A., & Sahoo, A. (2012).
EU-CREEA project. Deliverable no. 4.1. Recommendation of terminology, classifi cation,
framework of waste accounts and MFA, and data collection guideline . Aalborg: 2.0 LCA
consultants.
Scholz, R. W., & Binder, C. R. (2011). Environmental literacy in science and society: From knowledge to decisions . Cambridge: Cambridge University Press.
Sieferle, R. P., Krausmann, F., Schandl, H., & Winiwarter, V. (2006). Das Ende der Fläche .
Cologne: Böhlau & Cie.
Simas, M., Golsteijn, L., Huijbregts, M., Wood, R., & Hertwich, E. G. (2014). The “Bad Labor”
footprint: Quantifying the social impacts of globalization. Sustainability, 6 (11), 7514–7540.
Spielmann, M., Scholz, R. W., Tietje, O., & Haan, P. D. (2005). Scenario modelling in prospective
LCA of transport systems – Application of formative scenario analysis. The International
Journal of Life Cycle Assessment, 10 (5), 325–335.
Stern, N. (2013). The structure of economic modeling of the potential impacts of climate change:
Grafting gross underestimation of risk onto already narrow science models. Journal of
Economic Literature, 51 (3), 838–859.
S. Pauliuk and E.G. Hertwich
