Liu Juncong, Liu Bangyu, Wu Linjing, Miao Haiying, Liu Jiegang, Jiang Ke, Ding Hu, Gao Weichang, Liu Taoze
College of Eco-Environment Engineering, Engineering Research Center of Green and Low-Carbon Technology for Plastic Application, Guizhou Minzu University, Guiyang, 550025, China.
College of Architectural Engineering, Research Center of Solid Waste Pollution Control and Recycling, Guizhou Minzu University, Guiyang, 550025, China.
Sci Rep. 2024 Jun 7;14(1):13143. doi: 10.1038/s41598-024-64014-7.
Land use changes significantly impact the structure and functioning of ecosystems. The current research focus lies in how to utilize economic and policy instruments to regulate conflicts among stakeholders effectively. The objective is to facilitate rational planning and sustainable development of land utilization resources. The PLUS model integrates a rule-based mining method for land expansion analysis and a CA model based on multi-type stochastic seeding mechanism, which can be used to mine the driving factors of land expansion and predict the patch-level evolution of land use landscapes. Using the PLUS model, a simulation was conducted to study the future land use distribution in the research area over the next 30 years. Based on land use data from Guizhou Province in 2000, 2010, and 2020, a total of 16 driving factors were selected from three aspects: geographical environment, transportation network, and socio-economic conditions. Four scenarios, namely natural development, urban development, ecological conservation, and farmland rotection, were established. Comparative analysis of the simulated differences among the various scenarios was performed. (1) The overall accuracy of the land use simulation using the PLUS model in the study area was 0.983, with a Kappa coefficient of 0.972 and a FoM coefficient of 0.509. The research accuracy meets the simulation requirements. (2) Through the simulation of four different scenarios, the study investigated the land use changes in Guizhou Province over the next 30 years. Each scenario exhibited distinct impacts on land utilization. Comprehensive comparison of the different simulation results revealed that the farmland protection scenario aligns with the sustainable development goals of the research area. Currently, there is a relative scarcity of research on land use simulation, particularly in model application, for Guizhou Province. This study aims to provide a reference for the rational planning of land resources and high-quality urban construction in Guizhou, promoting the high-quality economic development in tandem with advanced ecological and environmental protection.
土地利用变化对生态系统的结构和功能有着重大影响。当前的研究重点在于如何利用经济和政策手段有效调节利益相关者之间的冲突。目标是促进土地利用资源的合理规划和可持续发展。PLUS模型集成了用于土地扩张分析的基于规则的挖掘方法和基于多类型随机播种机制的元胞自动机(CA)模型,可用于挖掘土地扩张的驱动因素并预测土地利用景观的斑块级演变。利用PLUS模型,对研究区域未来30年的土地利用分布进行了模拟。基于贵州省2000年、2010年和2020年的土地利用数据,从地理环境、交通网络和社会经济条件三个方面共选取了16个驱动因素。建立了自然发展、城市发展、生态保护和农田保护四种情景。对不同情景下的模拟差异进行了对比分析。(1)研究区域内使用PLUS模型进行土地利用模拟的总体精度为0.983,卡帕系数为0.972,FOM系数为0.509。研究精度满足模拟要求。(2)通过对四种不同情景的模拟,研究了贵州省未来30年的土地利用变化。每种情景对土地利用都有不同的影响。对不同模拟结果的综合比较表明,农田保护情景符合研究区域的可持续发展目标。目前,针对贵州省土地利用模拟尤其是模型应用方面的研究相对较少。本研究旨在为贵州省土地资源的合理规划和高质量城市建设提供参考,推动经济高质量发展与生态环境保护协同共进。