Decarbonization path of China’s public building sector from bottom to top

Author:

Peng Chenwei,Wei QingpengORCID,Wei Wengang

Abstract

Abstract The building sector is one of the three major energy consumption areas and one of the main areas responsible for carbon emissions. In 2019, carbon emissions related to construction and building operations in China accounted for 38% of the total social carbon emissions, of which construction accounted for 16% and operations accounted for 22%. Due to its large volume and high energy consumption per unit area, public buildings account for 38% of the operating energy consumption of all buildings, that is, 8% of the total national energy consumption. At this time, the building industry must take decarbonization actions to avoid a delay in realizing carbon neutrality and an emission peak. We need to form a unified process for the implementation boundary, implementation path, and index system to build a zero-carbon implementation plan for China’s public building sector. Based on bottom-up practical cases, this paper proposes the KAYA model, which is applicable to different scales and different types of public buildings/communities, and proposes specific and feasible plans. Through the implementation of demand reduction, energy efficiency improvement, and the fully-use of renewable energy in all five clear steps, this paper promotes the implementation of decarbonization in China’s building industry.

Funder

Innovative Research Group Project of the National Natural Science Foundation of China

Shanghai Jiao Tong University

Publisher

Springer Science and Business Media LLC

Reference21 articles.

1. Department of Energy Statistics, National Bureau of Statistics (2019) : China Statistics Press. 2020:457

2. China Building Energy Consumption Annual Report (2020): 2020. J BEE, 2021,49(02):1–6

3. Li HM, Tong JJ (2021) Regional differences in carbon emissions from China’s building sector and carbon neutralization path. Environ Prot 49(17):23–29

4. Yang J, Wang J, Zhang ZY (2012) Inter-provincial discrepancy and abatement target achievement in carbon emissions: A study on carbon Lorenz curve. Acta Sci Circumst 32(8):2016–2023

5. Wang Q, Jiang R (2019) Is China’s economic growth decoupled from carbon emissions? J Clean Prod 225:1194–1208

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