28
F. Scrucca et al.
5. de Bikuña KS, Hamelin L, Hauschild MZ, Pilegaard K, Ibrom A (2018) A comparison of land
use change accounting methods: seeking common grounds for key modeling choices in biofuel
assessments. J Cleaner Prod 177:52–61
6. Birnik A (2013) An evidence-based assessment of online carbon calculators. Int J Greenhouse
Gas Control 17:280–293
7. Büchs M, Bahaj AS, Blunden L, Bourikas L, Falkingham J, James P, Kamanda M, Wu Y (2018)
Promoting low carbon behaviours through personalised information? Longterm evaluation of
a carbon calculator interview. Energy Policy 120:284–293
8. Carbon Trust (2007) Carbon footprinting. An introduction for organizations. Available online
at https://wwwcarbontrust.co.uk/publications/publicationdetail.htm?productid=CTV033
9. Cardellini G, Mutel CL, Vial E, Muys B (2018) Temporalis, a generic method and tool for
dynamic Life Cycle Assessment. Sci Total Environ 645:585–595
10. Choma EF, Ugaya CML (2017) Environmental impact assessment of increasing electric
vehicles in the Brazilian fleet. J Clean Prod 152:497–507
11. Chomkhamsri K, Pelletier N (2011) Analysis of existing environmental footprint methodologies for products and organizations: Recommendations, rationale, and alignment. JRC Institute
for Environment and Sustainability
12. ˇ
Cuˇ cek L, Klemeš JJ, Kravanja Z (2012) A review of footprint analysis tools for monitoring
impacts on sustainability. J Cleaner Prod 34:9–20
13. Dalgaard R, Schmidt J, Flysjö A (2014) Generic model for calculating carbon footprint of milk
using four different life cycle assessment modelling approaches. J Cleaner Prod 73:146–153
14. van Dam SS, Bakker CA, van Hal JDM (2010) Home energy monitors: impact over the mediumterm. Build Res Inf 38:458–469
15. Darby S (2008) Energy feedback in buildings: improving the infrastructure for demand
reduction. Build Res Inf 36:499–508
16. East AJ (2008) What is a carbon footprint? An overview of definitions and methodologies.
In Vegetable industry carbon footprint scoping study—Discussion papers and workshop, 26
September 2008. Sydney: Horticulture Australia Limited.
17. Ellen MacArthur Foundation (2019) Completing the Picture: How the Circular Economy
Tackles Climate Change. www.ellenmacarthurfoundation.org/publications
18. European Commission. Directive (EU) 2018/2001 of the European Parliament and the Council
of 11 (Dece) on the promotion of the use of energy from renewable sources. off J Eur Union
2018:1–128
19. Fan Z, Lei Y, Wu S (2018) Research on the changing trend of the carbon footprint of residents’
consumption in Beijing. Environ Sci Pollut Res 26(4):4078–4090
20. Finkbeiner (2009) Carbon footprinting—opportunities and threats. Int J Life Cycle Assess
14:91–94
21. Fujii S, Bamberg S, Friman M, Garling T (2009) Are effects of travel feedback programs
correctly assessed? Transportmetrica 5:43–57
22. Galli A, Wiedmann T, Ercin E, Knoblauch D, Ewing B, Giljum S (2012) Integrating ecological,
carbon and water footprint into a “Footprint Family” of indicators: Definition and role in
tracking human pressure on the planet. Ecol Ind 16:100–112
23. Garcia R, Freire F (2014) Carbon footprint of particleboard: a comparison between ISO/TS
14067, GHG Protocol, PAS 2050 and Climate Declaration. J Cleaner Prod 66:199–209
24. Garraín D, de la Rúa C, Lechón Y (2016) Consequential effects of increased biofuel demand in
Spain: Global crop area and CO2 emissions from indirect land use change. Biomass Bioenerg
85:187–197
25. Harangozo G, Szigeti C (2017) Corporate carbon footprint analysis in practice – With a special
focus on validity and reliability issues. J Cleaner Prod 167:1177–1183
26. Hargreaves T, Nye M, Burgess J (2010) Making energy visible: a qualitative field study of how
householders interact with feedback from smart energy monitors. Energy Policy 38:6111–6119
27. IPCC, Climate Change, (2013) the Physical Science Basis: Working Group I Contribution to
the Fifth Assessment Report of the Intergovernmental Panel on Climate Change. Cambridge
University Press, Cambridge, p 2013
F. Scrucca et al.
5. de Bikuña KS, Hamelin L, Hauschild MZ, Pilegaard K, Ibrom A (2018) A comparison of land
use change accounting methods: seeking common grounds for key modeling choices in biofuel
assessments. J Cleaner Prod 177:52–61
6. Birnik A (2013) An evidence-based assessment of online carbon calculators. Int J Greenhouse
Gas Control 17:280–293
7. Büchs M, Bahaj AS, Blunden L, Bourikas L, Falkingham J, James P, Kamanda M, Wu Y (2018)
Promoting low carbon behaviours through personalised information? Longterm evaluation of
a carbon calculator interview. Energy Policy 120:284–293
8. Carbon Trust (2007) Carbon footprinting. An introduction for organizations. Available online
at https://wwwcarbontrust.co.uk/publications/publicationdetail.htm?productid=CTV033
9. Cardellini G, Mutel CL, Vial E, Muys B (2018) Temporalis, a generic method and tool for
dynamic Life Cycle Assessment. Sci Total Environ 645:585–595
10. Choma EF, Ugaya CML (2017) Environmental impact assessment of increasing electric
vehicles in the Brazilian fleet. J Clean Prod 152:497–507
11. Chomkhamsri K, Pelletier N (2011) Analysis of existing environmental footprint methodologies for products and organizations: Recommendations, rationale, and alignment. JRC Institute
for Environment and Sustainability
12. ˇ
Cuˇ cek L, Klemeš JJ, Kravanja Z (2012) A review of footprint analysis tools for monitoring
impacts on sustainability. J Cleaner Prod 34:9–20
13. Dalgaard R, Schmidt J, Flysjö A (2014) Generic model for calculating carbon footprint of milk
using four different life cycle assessment modelling approaches. J Cleaner Prod 73:146–153
14. van Dam SS, Bakker CA, van Hal JDM (2010) Home energy monitors: impact over the mediumterm. Build Res Inf 38:458–469
15. Darby S (2008) Energy feedback in buildings: improving the infrastructure for demand
reduction. Build Res Inf 36:499–508
16. East AJ (2008) What is a carbon footprint? An overview of definitions and methodologies.
In Vegetable industry carbon footprint scoping study—Discussion papers and workshop, 26
September 2008. Sydney: Horticulture Australia Limited.
17. Ellen MacArthur Foundation (2019) Completing the Picture: How the Circular Economy
Tackles Climate Change. www.ellenmacarthurfoundation.org/publications
18. European Commission. Directive (EU) 2018/2001 of the European Parliament and the Council
of 11 (Dece) on the promotion of the use of energy from renewable sources. off J Eur Union
2018:1–128
19. Fan Z, Lei Y, Wu S (2018) Research on the changing trend of the carbon footprint of residents’
consumption in Beijing. Environ Sci Pollut Res 26(4):4078–4090
20. Finkbeiner (2009) Carbon footprinting—opportunities and threats. Int J Life Cycle Assess
14:91–94
21. Fujii S, Bamberg S, Friman M, Garling T (2009) Are effects of travel feedback programs
correctly assessed? Transportmetrica 5:43–57
22. Galli A, Wiedmann T, Ercin E, Knoblauch D, Ewing B, Giljum S (2012) Integrating ecological,
carbon and water footprint into a “Footprint Family” of indicators: Definition and role in
tracking human pressure on the planet. Ecol Ind 16:100–112
23. Garcia R, Freire F (2014) Carbon footprint of particleboard: a comparison between ISO/TS
14067, GHG Protocol, PAS 2050 and Climate Declaration. J Cleaner Prod 66:199–209
24. Garraín D, de la Rúa C, Lechón Y (2016) Consequential effects of increased biofuel demand in
Spain: Global crop area and CO2 emissions from indirect land use change. Biomass Bioenerg
85:187–197
25. Harangozo G, Szigeti C (2017) Corporate carbon footprint analysis in practice – With a special
focus on validity and reliability issues. J Cleaner Prod 167:1177–1183
26. Hargreaves T, Nye M, Burgess J (2010) Making energy visible: a qualitative field study of how
householders interact with feedback from smart energy monitors. Energy Policy 38:6111–6119
27. IPCC, Climate Change, (2013) the Physical Science Basis: Working Group I Contribution to
the Fifth Assessment Report of the Intergovernmental Panel on Climate Change. Cambridge
University Press, Cambridge, p 2013
