197
Erduran DÜ, Elias-Ozkan ST, Ulybin A (2020) Assessing potential environmental impact and construction cost of reclaimed masonry walls. Int J Life Cycle Assess 25:1–16. https://doi- org.
libdb.njit.edu:8443/10.1007/s11367- 019- 01662- 2
Foundation Le Corbusier (n.d.) Maison Dom-Ino. http://www.fondationlecorbusier.fr/corbuweb/
morpheus.aspx?sysId=13&IrisObjectId=5972&sysLanguage=en- en&itemPos=102&itemCou
nt=215&sysParentId=65&sysParentName=home
Herrmann IT, Moltesen A (2015) Does it matter which life cycle assessment (LCA) tool you
choose? – a comparative assessment of SimaPro and GaBi. J Clean Prod 86:163–169. https://
doi.org/10.1016/j.jclepro.2014.08.004
King B (ed) (2017) The new carbon architecture: building to cool the climate. New Society
Publisher, Gabriola Island
Kneifel J, O’Rear E (2018) Challenges and opportunities in quantifying and evaluating
building sustainability. Technol Archit Des 2:160–169. https://doi.org/10.1080/2475144
8.2018.1497363
Mirabella N, Castellani V, Sala S (2014) LCA for assessing environmental benefit of eco-design
strategies and forest wood short supply chain: a furniture case study. Int J Life Cycle Assess
19:1536–1550. https://doi- org.libdb.njit.edu:8443/10.1007/s11367- 014- 0757- 7
Sinha R, Lennartsson M, Frostell B (2016) Environmental footprint assessment of building structures: a comparative study. Build Environ 104:162–171. https://doi- org.libdb.njit.
edu:8443/10.1016/j.buildenv.2016.05.012
Speck R, Selke S, Auras R et  al (2015) Life cycle assessment software: selection can impact
results. J Ind Ecol 20:18–28. https://doi- org.libdb.njit.edu:8443/10.1111/jiec.12245
Thormark C (2000) Environmental analysis of a building with reused building materials. Int J Low
Energy Sustain Build 1:1–18. http://hdl.handle.net/2043/9844
References
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