Development of a carbon emissions analysis framework using building information modeling and life cycle assessment for the construction of hospital projects

Lu, Kun, Jiang, Xiaoyan, Tam, Vivian W.Y., Li, Mengyun, Wang, Hongyu, , & (2019) Development of a carbon emissions analysis framework using building information modeling and life cycle assessment for the construction of hospital projects. Sustainability, 11(22), Article number: 6274.

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Description

Buildings produce a large amount of carbon emissions in their life cycle, which intensifies greenhouse-gas effects and has become a great threat to the survival of humans and other species. Although many previous studies shed light on the calculation of carbon emissions, a systematic analysis framework is still missing. Therefore, this study proposes an analysis framework of carbon emissions based on building information modeling (BIM) and life cycle assessment (LCA), which consists of four steps: (1) defining the boundary of carbon emissions in a life cycle; (2) establishing a carbon emission coefficients database for Chinese buildings and adopting Revit, GTJ2018, and Green Building Studio for inventory analysis; (3) calculating carbon emissions at each stage of the life cycle; and (4) explaining the calculation results of carbon emissions. The framework developed is validated using a case study of a hospital project, which is located in areas in Anhui, China with a hot summer and a cold winter. The results show that the reinforced concrete engineering contributes to the largest proportion of carbon emissions (around 49.64%) in the construction stage, and the HVAC (heating, ventilation, and air conditioning) generates the largest proportion (around 53.63%) in the operational stage. This study provides a practical reference for similar buildings in analogous areas and for additional insights on reducing carbon emissions in the future.

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113 citations in Scopus
75 citations in Web of Science®
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ID Code: 201984
Item Type: Contribution to Journal (Journal Article)
Refereed: Yes
ORCID iD:
Xia, Boorcid.org/0000-0001-7694-4743
Measurements or Duration: 18 pages
Keywords: Analysis framework, Building information modeling (BIM), Carbon coeffcient database, carbon emissions, Chinese hospital, Cold winter, Hot summer, Life cycle assessment (LCA), Sustainable green building
DOI: 10.3390/su11226274
ISSN: 2071-1050
Pure ID: 60017897
Divisions: Past > Institutes > Institute for Future Environments
Past > QUT Faculties & Divisions > Science & Engineering Faculty
Funding Information: Funding: The research was supported by the Soft Science Research Plan of Department of Housing and Urban-Rural Development of Anhui Province in China (No. JS2016AHST0011) and by the Innovation Research Plan of Anhui Construction Engineering Group in China (No. W2018JSZX0002).
Copyright Owner: The Author(s)
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Deposited On: 14 Jul 2020 10:19
Last Modified: 02 Jan 2026 18:44