A | B | C | D | E | F | G | H | I | J | K | L | M | N | O | P | Q | R | S | T | |
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1 | The Sustainability Sudoku (dataset) | |||||||||||||||||||
2 | a project by the IASTE Research Group of the Universitat Autonoma de Barcelona (Spain) | |||||||||||||||||||
3 | General information | |||||||||||||||||||
4 | Title: | Dataset of The Sustainability Sudoku | ||||||||||||||||||
5 | Authors: | François Diaz-Maurin, Raúl Velasco and Mario Giampietro | ||||||||||||||||||
6 | Affiliation | Universitat Autonoma de Barcelona (Spain) | ||||||||||||||||||
7 | Version: | 1.0 | ||||||||||||||||||
8 | Release date: | Oct. 2014 | ||||||||||||||||||
9 | License: | Creative Commons Attribution-ShareAlike 4.0 International License | ||||||||||||||||||
10 | Use: | http://thesustainabilitysudoku.info/ | ||||||||||||||||||
11 | Terms of use: | http://thesustainabilitysudoku.info/legal | ||||||||||||||||||
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14 | Sheet | Description | ||||||||||||||||||
15 | d_dem | data used in the "Socio-economic" section | ||||||||||||||||||
16 | d_die | data used in the "Diet" section | ||||||||||||||||||
17 | d_hou | data used in the "Households" section | ||||||||||||||||||
18 | d_ser | data used in the "Services and government" section | ||||||||||||||||||
19 | s_lan | data used in the "Land" section | ||||||||||||||||||
20 | s_bm | data used in the "Building and manufacturing" section | ||||||||||||||||||
21 | s_agr | data used in the "Agriculture" section | ||||||||||||||||||
22 | s_ene | data used in the "Energy and mining" section | ||||||||||||||||||
23 | fund_constraints | rules used to cross check external constraints on funds (land uses and human activity) | ||||||||||||||||||
24 | SUDOKU | rules used to generate the sustainability sudoku of the Check section | ||||||||||||||||||
25 | POLAR | rules used to generate the polar diagram of the Check section | ||||||||||||||||||
26 | CRITERIA | rules used to verify if a criterion is met or missed in the Check section (shown only in Levels 2 and 3) | ||||||||||||||||||
27 | ||||||||||||||||||||
28 | References | Full citation | ||||||||||||||||||
29 | Caplow et al. 2001 | Caplow, T., Hicks, L., & Wattenberg, B. J. (2001). Chapter 1: Poulation. Section 6: Urban, Rural, Suburban. in: Caplow, T., Hicks, L., & Wattenberg, B. J. (2001). The first measured century: An illustrated guide to trends in America, 1900-2000. American Enterprise Institute. Available online: http://www.pbs.org/fmc/book/1population6.htm (accessed 19 Jul 2014) | ||||||||||||||||||
30 | Chinbuah 2010 | Chinbuah, A.A. (2010). International comparison of the exosomatic energy metabolic profile of developed economies. MSc. thesis, Autonomous University of Barcelona; 2010. URL: http://www.societalmetabolism.org/aes2010/Proceeds/DIGITAL%20PROCEEDINGS_files/POSTERS/P_181_Arturo_Andersen_REV_10pp.pdf (accessed 19 Jul 2014) | ||||||||||||||||||
31 | Cleveland and O'Connor 2011 | Cleveland, C. J., & O’Connor, P. A. (2011). Energy return on investment (EROI) of oil shale. Sustainability, 3(11), 2307-2322. | ||||||||||||||||||
32 | CONELEC 2012 | CONELEC (2012). Electrification Master Plan 2012-2021 (in Spanish). CONELEC (National Council for Electricity). Ministry of Electricity and Renewable Energy of Ecuador. URL: http://www.conelec.gob.ec/images/documentos/doc_10132_PME2012_2021.pdf (accessed 19 Jul 2014) | ||||||||||||||||||
33 | Diaz-Maurin and Giampietro 2013 | Diaz-Maurin F. and Giampietro M. (2013). A ‘grammar’ for assessing the performance of power-supply systems: comparing nuclear energy to fossil energy. Energy 49: 162–177. doi: 10.1016/j.energy.2012.11.014 | ||||||||||||||||||
34 | Diaz-Maurin et al. 2014 | Diaz-Maurin F. et al. (2014). “The Republic of South Africa”. In: Giampietro, M., Aspinall, R.J., Ramos-Martín, J. and Bukkens, S.G.F. (Eds). Resource Accounting for Sustainability: The Nexus between Energy, Food, Water and Land Use. Routledge series ‘Explorations in Sustainability and Governance’. http://www.routledge.com/books/details/9780415720595/ | ||||||||||||||||||
35 | FAO 2010 | FAO (2010). Food Balance Sheet. Statistics Division of the Food and Agriculture Organization of the UN. http://data.fao.org/dataset?entryId=48dc9161-53e2-4883-93c0-8f099e5e67ab (accessed 19 Jul 2014) | ||||||||||||||||||
36 | FAOSTAT 2013 | FATSTAT (2013). Statistics Division of the Food and Agriculture Organization of the UN. http://faostat3.fao.org/faostat-gateway/go/to/home/E (accessed 19 Jul 2014) | ||||||||||||||||||
37 | Giampietro and Diaz-Maurin 2014 | Giampietro M. and Diaz-Maurin F. (2014). “The Energy Grammar”. In: Giampietro, M., Aspinall, R.J., Ramos-Martín, J. and Bukkens, S.G.F. (Eds). Resource Accounting for Sustainability: The Nexus between Energy, Food, Water and Land Use. Routledge series ‘Explorations in Sustainability and Governance’. http://www.routledge.com/books/details/9780415720595/ | ||||||||||||||||||
38 | Giampietro and Mayumi 2009 | Giampietro M. and Mayumi K. (2009). The Biofuel Delusion: The fallacy of large-scale agro-biofuel production. Earthscan, London, 320 pp. http://www.taylorandfrancis.com/books/details/9781844076819/ | ||||||||||||||||||
39 | Giampietro et al. 2014 | Giampietro, M., Aspinall, R.J., Ramos-Martín, J. and Bukkens, S.G.F. (Eds) (2014). Resource Accounting for Sustainability: The Nexus between Energy, Food, Water and Land Use. Routledge series ‘Explorations in Sustainability and Governance’. http://www.routledge.com/books/details/9780415720595/ | ||||||||||||||||||
40 | Gupta and Hall 2011 | Gupta, A. K., & Hall, C. A. (2011). A review of the past and current state of EROI data. Sustainability, 3(10), 1796-1809. doi: 10.3390/su3101796 | ||||||||||||||||||
41 | ILOstat 2008 | ILOstat (2008). Database on labour statistics, ILO Department of Statistics, International Labour Office. URL: http://laborsta.ilo.org (accessed 19 Jul 2014) | ||||||||||||||||||
42 | INSEE 2010 | INSEE (2010). Macro-economic database. INSEE (National Institute for Statistics and Economic Studies), Paris. URL: http://www.bdm.insee.fr/bdm2/do/accueil/index (accessed 19 Jul 2014) | ||||||||||||||||||
43 | Scheidel and Sorman 2012 | Scheidel, A., & Sorman, A. H. (2012). Energy transitions and the global land rush: Ultimate drivers and persistent consequences. Global Environmental Change, 22(3), 588-595. DOI: 10.1016/j.gloenvcha.2011.12.005 | ||||||||||||||||||
44 | Scheidel et al. 2013 | Scheidel, A., Giampietro, M., & Ramos-Martin, J. (2013). Self-sufficiency or surplus: Conflicting local and national rural development goals in Cambodia. Land use policy, 34, 342-352. DOI: 10.1016/j.landusepol.2013.04.009 | ||||||||||||||||||
45 | Sorman 2011 | Sorman, A. H. (2011). The energetics metabolisms of society.Development of Methodological Tools and Empirical Applications. PhD Dissertation presented at the Universitat Autònoma de Barcelona. July 2011. https://www.educacion.es/teseo/mostrarRef.do?ref=946551 | ||||||||||||||||||
46 | UN data 2009 | UN data (2009). Slum population in urban areas. United Nations. URL: http://data.un.org/Data.aspx?d=MDG&f=seriesRowID%3A711 (accessed 19 Jul 2014) | ||||||||||||||||||
47 | US EIA 2009 | US EIA (2009). Annual Energy Review. U.S. Energy Information Administration. URL: http://www.eia.gov/totalenergy/data/annual/index.cfm (accessed 19 Jul 2014) | ||||||||||||||||||
48 | Velasco et al. 2015 | Velasco Fernández, R., Ramos Martín, J. and Giampietro, M. (2015). The energy metabolism of China and India between 1971 and 2010: Studying the bifurcation. Renewable and Sustainable Energy Reviews, 41, 1052-1066. DOI: 10.1016/j.rser.2014.08.065 | ||||||||||||||||||
49 | Wei et al 2010 | Wei, M., Patadia, S., & Kammen, D. M. (2010). Putting renewables and energy efficiency to work: How many jobs can the clean energy industry generate in the US?. Energy policy, 38(2), 919-931. | ||||||||||||||||||
50 | World Bank 2012 | World Bank (2012). Rural population (% of total population). World Bank. URL: http://data.worldbank.org/indicator/SP.RUR.TOTL.ZS/countries (accessed 19 Jul 2014) | ||||||||||||||||||
51 | Yeh et al. 2010 | Yeh, S., Jordaan, S. M., Brandt, A. R., Turetsky, M. R., Spatari, S., & Keith, D. W. (2010). Land use greenhouse gas emissions from conventional oil production and oil sands. Environmental science & technology, 44(22), 8766-8772. DOI: 10.1021/es1013278 | ||||||||||||||||||
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