Research on Sustainable Development of the Regional Construction Industry Based on Entropy Theory

Author:

Zhou ZhiwuORCID,Alcalá JuliánORCID,Yepes VíctorORCID

Abstract

Human beings are now facing the increasingly urgent problem of global ecological environment pollution. To verify the scientific nature of environmental governance by governments of various countries, researchers need to provide a scientific basis and practical support for governments to adjust and formulate new policies and regulatory measures at any time through data analysis. This paper applies visual literature, aggregate analysis, engineering data programming, advanced mathematical science algorithms, and innovation entropy theory, and through this study obtains sustainable impact data from eight Chinese provinces in the 21st century, including environmental, economic, and social impacts. The results show that China’s sustainable data should grow from 2021 to about 2044. After 2045, it will be stable, and there will be negative growth in a short period. The overall life cycle assessment (LCA) and social impact assessment (SIA) continue to remain in the positive range. There will be no negative growth in aggregate data and zero or negative emissions before 2108. The final research data are accurately presented in the form of annual emissions, which provide a scientific and theoretical basis for the government to formulate medium- and long-term ecological regulations and plans.

Funder

Spanish Ministry of Science and Innovation

FEDER funding

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development,Building and Construction

Reference49 articles.

1. Bernstein, L., Bosch, P., Canziani, O., Chen, Z., Christ, R., Davidson, O., Hare, W., Huq, S., Karoly, D., and Kattsov, V. (2022, September 22). AR4 Climate Change 2007: Synthesis Report—IPCC. Available online: https://www.ipcc.ch/report/ar4/syr/.

2. Edenhofer, O., Pichs-Madruga, R., Sokona, Y., Agrawala, S., Bashmakov, l.A., Blanco, G., Broome, J., Bruckner, T., Brunner, S., and Bustamante, M. (2022, September 18). AR5 Climate Change 2014: Mitigation of Climate Change—IPCC, 2015. Available online: https://www.ipcc.ch/report/ar5/wg3/.

3. Catalysing a political shift from low to negative carbon;Peters;Nat. Clim. Chang.,2017

4. Analysis of energy and carbon flows in the future Norwegian dwelling stock;Sandberg;Build. Res. Inf.,2012

5. Fossil fuels in a trillion tonne world;Scott;Nat. Clim. Chang.,2015

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