Knowledge Agora



Similar Articles

Title Multi-Objective Optimization of Land Use in the Beijing-Tianjin-Hebei Region of China Based on the GMOP-PLUS Coupling Model
ID_Doc 70219
Authors Meng, FD; Zhou, Z; Zhang, PT
Title Multi-Objective Optimization of Land Use in the Beijing-Tianjin-Hebei Region of China Based on the GMOP-PLUS Coupling Model
Year 2023
Published Sustainability, 15, 5
Abstract The changeable patterns and contractions of land use have become increasingly significant in recent years as the economy and society have rapidly developed. Subsequently, land use change simulation has become a focal point in the study of land use patterns and change processes. Four development scenarios in 2030, including business-as-usual, ecological protection, economic development, and sustainable development scenarios, are proposed to realize the sustainable development of land use in Beijing-Tianjin-Hebei in the context of a low-carbon economy and ecological security. Then, a feasible multi-objective land use optimization scheme suitable for the region's long-term development was identified through comparative analysis. The GMOP-PLUS model analyzed changes in ecological and economic benefits and carbon emissions by optimizing the quantitative structure and spatial layout of land use in different scenarios. The cultivated land area in the four scenarios decreased, while the construction land area increased for all scenarios other than the ecological protection and sustainable development scenarios. Moreover, the target development of the sustainable development scenario was the most balanced, with carbon emissions and economic benefits reduced by 49.77 million tons and CNY 0.73 billion compared with the business-as-usual scenario, respectively. Meanwhile, the ecological benefits increased by CNY 0.03 billion, and the economic benefits increased by 1.54 times compared with those in 2020. Therefore, the sustainable development scenario was more in line with the needs of Beijing, Tianjin, and Hebei for high-quality economic and ecological development, aiming towards a low-carbon goal. This work provides a theoretical basis for Beijing-Tianjin-Hebei territorial spatial planning and more perspectives for the study of sustainable land use through the obtained results.
PDF https://www.mdpi.com/2071-1050/15/5/3977/pdf?version=1677060509

Similar Articles

ID Score Article
66404 Guo, W; Teng, YJ; Yan, YG; Zhao, CW; Zhang, WQ; Ji, XL Simulation of Land Use and Carbon Storage Evolution in Multi-Scenario: A Case Study in Beijing-Tianjin-Hebei Urban Agglomeration, China(2022)Sustainability, 14, 20
66894 Yang, YY; Bao, WK; Liu, YS Scenario simulation of land system change in the Beijing-Tianjin-Hebei region(2020)
68749 Li, C; Wu, YM; Gao, BP; Zheng, KJ; Wu, Y; Li, C Multi-scenario simulation of ecosystem service value for optimization of land use in the Sichuan-Yunnan ecological barrier, China(2021)
76497 Li, T; Jia, BQ; Zhang, QM; Liu, WR; Fang, YX Scenario Simulation of Urban Land Use and Ecosystem Service Coupling Major Function-Oriented Zoning(2024)
71588 Chen, XD; Zhao, RF; Shi, PJ; Zhang, LH; Yue, XX; Han, ZY; Wang, JF; Dou, HM Land Use Optimization Embedding in Ecological Suitability in the Embryonic Urban Agglomeration(2023)Land, 12.0, 6
68184 Zhang, Y; Naerkezi, N; Zhang, Y; Wang, B Multi-Scenario Land Use/Cover Change and Its Impact on Carbon Storage Based on the Coupled GMOP-PLUS-InVEST Model in the Hexi Corridor, China(2024)Sustainability, 16, 4
68178 Fu, H; Liang, YW; Chen, J; Zhu, L; Fu, G A New Framework of Land Use Simulation for Land Use Benefit Optimization Based on GMOP-PLUS Model-A Case Study of Haikou(2024)Land, 13, 8
69609 Sun, YJ; Li, J; Ren, ZY; Yang, FP Ecosystem Service Trade-Offs and Spatial Pattern Optimisation under Different Land Use Scenarios: A Case Study in Guanzhong Region, China(2023)Land, 12.0, 1
37971 Su, L; Fan, JJ; Fu, LH Exploration of smart city construction under new urbanization: A case study of Jinzhou-Huludao Coastal Area(2020)
68053 Zhao, QJ; Shao, JF Evaluating the impact of simulated land use changes under multiple scenarios on ecosystem services in Ji'an, China(2023)
Scroll