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February 26, 2026Buildings1 citationsOpen Access

Operational Carbon Emission Assessment of Buildings: Development and Application of an Electricity Equivalent-Based Calculation Model for Energy-Related Carbon Emissions

ZGZhenwei GuoTianjin UniversityMLMaolin LiuLudong UniversityQWQingQin WangTianjin University

Key Points

  • The aim is to develop a calculation model for assessing operational carbon emissions in buildings, focusing on electricity equivalent methods.
  • Analyzed indicators for evaluating operational carbon emissions in buildings
  • Developed a calculation method based on the equivalent electricity method
  • Verified the validity of the model through calculations on 15 actual building projects
  • Variances in carbon emission intensity based on the equivalent electricity method were 0.03 for residential, 0.04 for office, and 0.03 for venue buildings
  • These variances are significantly lower than carbon emission intensity per unit area (72.79, 123.33, and 153.35)
  • The new index is more stable and better characterizes building decarbonization across different building types

Abstract

Operational carbon emissions of buildings account for more than 25% of global carbon emissions and, generally, over 50% of the total carbon emissions across the whole life cycle of a building. The evaluation and management of carbon emission levels during the operational phase of buildings are at present important tasks for China’s construction industry administration departments. This paper analyzes the indicators for evaluating the operational carbon emission levels of buildings and the content of carbon emission calculations, and introduces a specific operation mode for characterizing building energy consumption by the equivalent electricity method from the perspective of building energy consumption statistics. A calculation method for the carbon emission intensity per unit energy consumption of buildings based on the equivalent electricity method is constructed, and its validity is verified through calculations on 15 actual projects. The results show that the variances in carbon emission intensity per unit energy consumption index based on the equivalent electricity method are 0.03, 0.04 and 0.03 for residential, office and venue buildings, respectively, which are far lower than those of the carbon emission intensity per unit building area index (72.79, 123.33 and 153.35) and close to those of the building energy saving rate index (0.02, 0.01 and 0.02). Compared with the building energy saving rate and carbon emission intensity per unit building area, this index can better characterize the degree of building decarbonization and exhibits good evaluation stability across buildings of different functional types. Combined with the building energy consumption quota index, it is conducive to promoting the transformation of the construction sector from dual control of energy consumption to dual control of carbon emissions.

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Cite This Study

Guo et al. (2026) studied this question.

synapsesocial.com/papers/699fe35995ddcd3a253e7163https://doi.org/10.3390/buildings16050892
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