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(ed) Environmental sustainability—role of Green Technologies, 121–128
14. Nautiyal H, Shree V, Khurana S, Kumar N, Varun (2015) Recycling potential of building
materials: a review.Muthu SS (ed) Environmental Implications of Recycling and Recycled
Products, 31–50
15. Nautiyal H, Shree V, Singh P, Khurana S, Goel V (2018) Life cycle assessment of an academic
building: a case study. Muthu SS (ed) Environmental carbon footprints, 295–315
16. Nautiyal H, Varun (2012) Progress in renewable energy under clean development mechanism
in India. Renew Sustain Energy Rev 16, 2913–2919
17. Nautiyal H, Goel V, Singh P (2019) Water footprints of hydropower projects. Muthu SS (ed)
Environmental water footprints (energy and building sectors), 35–46
18. Ozawa-Meida L, Brockway P, Letten K, Davies J, Fleming PD (2011) Measuring carbon
performance in a UK University through a consumption-based carbon footprint: De Montfort
University case study. J Cleaner Prod 5:185–198
19. Ramesh T, Prakash R, Shukla KK (2012) Life cycle energy analysis of a residential building
with different envelopes and climates in Indian context. Appl Energy 89:193–202
20. Reddy BVV, Jagadish KS (2003) Embodied energy of common and alternative building
materials and technologies. Energy Build 35:129–137
21. Sartori I, Hestnes AG (2007) Energy use in the life cycle of conventional and low energy
building: a review article. Energy and Build 39:249–257
22. Scheuer C, Keoleian GA, Reppe P (2003) Life cycle energy and environmental performance of
new university building: modelling challenges and design implications. Energy Build 35:1049–
1064
23. Sharma A, Saxena A, Sethi M, Shree V, Varun (2011) Life cycle assessment of buildings: a
review. Renew Sustain Energy Rev 15, 871–875
24. Shree V, Varun, Nautiyal H (2015) Carbon footprint estimation from a building sector in India.
In: The carbon foot print handbook, 239–258
25. Srinivasan RS, Ingwersen W, Trucco C, Ries R, Campbell D (2014) Comparison of energybased indicators used in life cycle assessment tools for buildings. Build Environ 79:138–151
26. Tsai WH, Lin SJ, Liu JY, Lin WR, Lee KC (2011) Incorporating life cycle assessments
into building project decision-making: an energy consumption and CO 2 emission perspective.
Energy 36:3022–3029
27. Varun Bhat IK, Prakash R (2009) LCA of renewable energy for electricity generation systems
e a review. Renew Sustain Energy Rev 13(5):1067–1073
28. Varun PR, Bhat IK (2010) Life cycle energy and GHG analysis of hydro electric power
development in India. Int J Green Energy 7(4):361–375
29. Varun Sharma A, Shree V, Nautiyal H (2012) Life cycle environmental assessment of an
educational building in Northern India: a case study. Sustain Cities Soc 4:22–28
30. Varun, SA, Nautiyal H (2016) Environmental impacts of packaging materials, environmental
footprints of packaging. Muthu SS (ed) Environmental footprints of packaging (environmental
footprints and eco-design of products and processes), 115–137
31. Wackernagel M, Rees WE (1996) Our ecological footprint: reducing human impact on the
earth
32. Wiedmann T, Minx J (2008) A definition of “carbon footprint.” In: Pertsova CC (ed) Ecological
economics research trends, 1, 1–11
33. World Resource Institute (www.wri.org)
V. Shree et al.
13. Nautiyal H, Varun (2015) CDM: a key to sustainable development. In: Thangavel P, Sridevi G
(ed) Environmental sustainability—role of Green Technologies, 121–128
14. Nautiyal H, Shree V, Khurana S, Kumar N, Varun (2015) Recycling potential of building
materials: a review.Muthu SS (ed) Environmental Implications of Recycling and Recycled
Products, 31–50
15. Nautiyal H, Shree V, Singh P, Khurana S, Goel V (2018) Life cycle assessment of an academic
building: a case study. Muthu SS (ed) Environmental carbon footprints, 295–315
16. Nautiyal H, Varun (2012) Progress in renewable energy under clean development mechanism
in India. Renew Sustain Energy Rev 16, 2913–2919
17. Nautiyal H, Goel V, Singh P (2019) Water footprints of hydropower projects. Muthu SS (ed)
Environmental water footprints (energy and building sectors), 35–46
18. Ozawa-Meida L, Brockway P, Letten K, Davies J, Fleming PD (2011) Measuring carbon
performance in a UK University through a consumption-based carbon footprint: De Montfort
University case study. J Cleaner Prod 5:185–198
19. Ramesh T, Prakash R, Shukla KK (2012) Life cycle energy analysis of a residential building
with different envelopes and climates in Indian context. Appl Energy 89:193–202
20. Reddy BVV, Jagadish KS (2003) Embodied energy of common and alternative building
materials and technologies. Energy Build 35:129–137
21. Sartori I, Hestnes AG (2007) Energy use in the life cycle of conventional and low energy
building: a review article. Energy and Build 39:249–257
22. Scheuer C, Keoleian GA, Reppe P (2003) Life cycle energy and environmental performance of
new university building: modelling challenges and design implications. Energy Build 35:1049–
1064
23. Sharma A, Saxena A, Sethi M, Shree V, Varun (2011) Life cycle assessment of buildings: a
review. Renew Sustain Energy Rev 15, 871–875
24. Shree V, Varun, Nautiyal H (2015) Carbon footprint estimation from a building sector in India.
In: The carbon foot print handbook, 239–258
25. Srinivasan RS, Ingwersen W, Trucco C, Ries R, Campbell D (2014) Comparison of energybased indicators used in life cycle assessment tools for buildings. Build Environ 79:138–151
26. Tsai WH, Lin SJ, Liu JY, Lin WR, Lee KC (2011) Incorporating life cycle assessments
into building project decision-making: an energy consumption and CO 2 emission perspective.
Energy 36:3022–3029
27. Varun Bhat IK, Prakash R (2009) LCA of renewable energy for electricity generation systems
e a review. Renew Sustain Energy Rev 13(5):1067–1073
28. Varun PR, Bhat IK (2010) Life cycle energy and GHG analysis of hydro electric power
development in India. Int J Green Energy 7(4):361–375
29. Varun Sharma A, Shree V, Nautiyal H (2012) Life cycle environmental assessment of an
educational building in Northern India: a case study. Sustain Cities Soc 4:22–28
30. Varun, SA, Nautiyal H (2016) Environmental impacts of packaging materials, environmental
footprints of packaging. Muthu SS (ed) Environmental footprints of packaging (environmental
footprints and eco-design of products and processes), 115–137
31. Wackernagel M, Rees WE (1996) Our ecological footprint: reducing human impact on the
earth
32. Wiedmann T, Minx J (2008) A definition of “carbon footprint.” In: Pertsova CC (ed) Ecological
economics research trends, 1, 1–11
33. World Resource Institute (www.wri.org)
