Research on Cement Demand Forecast and Low Carbon Development Strategy in Shandong Province

Author:

Xu Chongqing1ORCID,Gong Yangyang1,Yan Guihuan1

Affiliation:

1. Ecology Institute of Shandong Academy of Sciences, Qilu University of Technology (Shandong Academy of Sciences), Jinan 250101, China

Abstract

The dual carbon targets and environmental quality constraints have released a clear transition signal for the green and low-carbon development of the cement industry. This study builds a CDI model based on the terminal sector forecasting method, predicts the cement demand in Shandong Province from 2020 to 2035, constructs a CO2 emission scenario in combination with green and low-carbon technical measures, uses the life-cycle assessment method to systematically simulate the CO2 emission trend of the cement industry in Shandong Province from 2020 to 2035, and discusses the low-carbon development path of the cement industry. The research shows that the overall demand for cement in Shandong Province shows a downward trend. Under the HD scenario, the cement demand has reached a historical peak of 166 Mt in 2021, and the per capita cement consumption is 1.63 t. In terms of CO2 emission structure, industrial production process CO2 accounts for 50.89–54.32%, fuel combustion CO2 accounts for 25.12–27.76%, transportation CO2 accounts for 10.65–11.36%, and electricity CO2 accounts for 9.20–10.71%. Through deepening supply-side structural reforms and implementing green and low-carbon technologies, the CO2 emissions and carbon intensity of the cement industry in Shandong Province will be significantly reduced. Under the EL scenario, CO2 emissions will be reduced from 92.96 Mt in 2020 to 56.31 Mt in 2035, the carbon intensity will be reduced from 581.32 kg/tc in 2020 to 552.32 kg/tc in 2035. In the short term, the decarbonization path of the cement industry in Shandong Province is mainly based on improving energy efficiency and comprehensive utilization of resources and energy technologies. In the long term, alternative raw materials and fuels are of great significance to improving the green and low-carbon development level of the cement industry.

Funder

The major innovation projects of science, education, and industry integration of Qilu University of Technology

Publisher

MDPI AG

Subject

Atmospheric Science,Environmental Science (miscellaneous)

Reference61 articles.

1. Deciphering the CO2 emissions and emission intensity of cement sector in China through decomposition analysis;Wu;J. Clean. Prod.,2022

2. Challenges against CO2 abatement strategies in cement industry: A review;Benhelal;J. Environ. Sci.,2021

3. Submarine mineral resources: A potential solution to political conflicts and global warming;Toro;Miner. Eng.,2022

4. Intergovernmental Panel on Climate Change (2022, November 04). Global Warming of 1.5 °C, Available online: https://www.ipcc.ch/site/assets/uploads/sites/2/2022/06/SR15_Full_Report_LR.pdf.

5. Will China peak its energy-related carbon emissions by 2030? Lessons from 30 Chinese provinces;Fang;Appl. Energy,2019

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