{"id":{"repo_id":"oregon","oai_identifier":"oai:scholarsbank.uoregon.edu:1794/33300"},"canonical_url":"https://search.dev.ndltd.org/etd/oregon/oai:scholarsbank.uoregon.edu:1794/33300","repository":{"repo_id":"oregon","name":"University of Oregon","base_url":"https://scholarsbank.uoregon.edu/server/oai/request"},"display":{"title":"DESIGNING OUT CARBON: MATERIAL SUBSTIUTION STRATEGIES FOR A UNIVERSITY OF OREGON DORMITORY","abstract":"This thesis examines how material substitution strategies can meaningfully reduce the embodied carbon footprint of university dormitory construction, using Unthank Hall at the University of Oregon as a case study. The primary research question guiding this study is: to what extent can targeted material substitution reduce a building’s embodied carbon emissions without altering design or structure? Despite growing awareness of embodied carbon as a critical driver of building-related emissions, the construction industry has been slow to adopt lower-carbon alternatives. This thesis identified the ten materials responsible for 78% of Unthank Hall’s total embodied global warming potential, evaluates commercially available lower-carbon alternatives supported by Environmental Product Declarations, and models the emissions reductions achievable through substitution. The findings demonstrate that replacing just ten materials yields an approximately 43% reduction in total building embodied carbo, achieved just through material selection. This thesis aims to illustrate that meaningful decarbonization is already possible using existing products.","abstract_html":"This thesis examines how material substitution strategies can meaningfully reduce the embodied carbon footprint of university dormitory construction, using Unthank Hall at the University of Oregon as a case study. The primary research question guiding this study is: to what extent can targeted material substitution reduce a building’s embodied carbon emissions without altering design or structure? Despite growing awareness of embodied carbon as a critical driver of building-related emissions, the construction industry has been slow to adopt lower-carbon alternatives. This thesis identified the ten materials responsible for 78% of Unthank Hall’s total embodied global warming potential, evaluates commercially available lower-carbon alternatives supported by Environmental Product Declarations, and models the emissions reductions achievable through substitution. The findings demonstrate that replacing just ten materials yields an approximately 43% reduction in total building embodied carbo, achieved just through material selection. 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The primary research question guiding this study is: to what extent can targeted material substitution reduce a building’s embodied carbon emissions without altering design or structure? Despite growing awareness of embodied carbon as a critical driver of building-related emissions, the construction industry has been slow to adopt lower-carbon alternatives. This thesis identified the ten materials responsible for 78% of Unthank Hall’s total embodied global warming potential, evaluates commercially available lower-carbon alternatives supported by Environmental Product Declarations, and models the emissions reductions achievable through substitution. The findings demonstrate that replacing just ten materials yields an approximately 43% reduction in total building embodied carbo, achieved just through material selection. This thesis aims to illustrate that meaningful decarbonization is already possible using existing products."]},{"key":"dc:title","label":"Title","values":["DESIGNING OUT CARBON: MATERIAL SUBSTIUTION STRATEGIES FOR A UNIVERSITY OF OREGON DORMITORY"]}]}],"canonical_facts":{"dc:contributor.advisor":["Moore, Emily"],"dc:creator":["Clark, Grace"],"dc:date.accessioned":["2026-08-11T20:00:29Z"],"dc:date.issued":["2026"],"dc:description":["38 pages."],"dc:description.abstract":["This thesis examines how material substitution strategies can meaningfully reduce the embodied carbon footprint of university dormitory construction, using Unthank Hall at the University of Oregon as a case study. The primary research question guiding this study is: to what extent can targeted material substitution reduce a building’s embodied carbon emissions without altering design or structure? Despite growing awareness of embodied carbon as a critical driver of building-related emissions, the construction industry has been slow to adopt lower-carbon alternatives. This thesis identified the ten materials responsible for 78% of Unthank Hall’s total embodied global warming potential, evaluates commercially available lower-carbon alternatives supported by Environmental Product Declarations, and models the emissions reductions achievable through substitution. The findings demonstrate that replacing just ten materials yields an approximately 43% reduction in total building embodied carbo, achieved just through material selection. This thesis aims to illustrate that meaningful decarbonization is already possible using existing products."],"dc:identifier.uri":["https://hdl.handle.net/1794/33300"],"dc:language.iso":["en_US"],"dc:publisher":["University of Oregon"],"dc:rights":["CC BY-NC-ND 4.0"],"dc:subject":["Building Materials","Sustainability","Carbon Intensity","Lower-Carbon","Construction"],"dc:title":["DESIGNING OUT CARBON: MATERIAL SUBSTIUTION STRATEGIES FOR A UNIVERSITY OF OREGON DORMITORY"],"dc:type":["Dissertation or thesis"]},"updated_at":"2026-08-21T16:47:20Z"}