土地利用变化对热带岛屿生态系统服务时空演变的影响:中国海南岛案例研究

IF 3.2 2区 环境科学与生态学 Q2 ENVIRONMENTAL STUDIES Land Pub Date : 2024-08-08 DOI:10.3390/land13081244
Mingjia Yang, Jiabao Luo, Lirong Zhu, Peng Lu
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引用次数: 0

摘要

土地利用变化在一定程度上影响着生态系统服务价值(ESV)。研究不同情景下土地利用分布模式对生态系统服务价值的影响对于优化热带岛屿地区的土地空间利用至关重要。本研究采用多目标程序设计(MOP)和斑块生成土地利用模拟(PLUS)模型相结合的方法,模拟并预测了 2030 年海南岛在自然发展、生态保护优先和旅游发展优先三种情景下的土地利用空间分布。然后对这些情景的 ESV 进行评估,为热带岛屿地区的经济、社会和生态可持续发展提供启示。结果如下(1) 2010-2020 年间,林地是海南岛最主要的土地利用类型,占总面积的 63%,其次是耕地。土地利用变化的主要特征是建设用地和草地的增加,分别增加了 497.13 平方公里和 18.87 平方公里,其他类型的土地减少。土地转化面积最大的是林地,主要转化为建设用地和耕地,分别为 259.97 平方公里和 174.49 平方公里。(2)利用 PLUS 模型模拟海南岛土地利用变化,Kappa 系数为 0.88,总体精度为 0.94,表明模拟结果与实际数据高度一致。(3)生态保护优先情景下的生态系统服务价值最高(720.52 亿元人民币),其他情景下的生态系统服务价值较 2020 年有所下降。自然发展情景下减少了 18.21 亿元人民币,旅游发展优先情景下减少了 5.95 亿元人民币。从空间上看,生态保护优先情景下生态系统服务价值高的区域增加最多,特别是由于林地面积的增加,这有助于研究区域生态系统服务价值的整体增加。本研究为海南岛旅游业优先发展方案的选择提供了科学依据和决策参考,旨在支持海南岛未来的可持续发展。该研究强调保护森林资源,促进绿化行动,实现生态保护与旅游活动之间的平衡。
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Impact of Land Use Change on the Spatiotemporal Evolution of Ecosystem Services in Tropical Islands: A Case Study of Hainan Island, China
Land use change drives the ecosystem service value (ESV) to some extent. Investigating the impact of land use distribution patterns under different scenarios on ESV is crucial for optimizing land spatial utilization in tropical island regions. This study employs a combination of multi-objective programming (MOP) and the patch-generating land use simulation (PLUS) model to simulate and predict the spatial distribution of land use in Hainan Island for the year 2030 under three scenarios: natural development, ecological protection priority, and tourism development priority. The ESV for these scenarios is then assessed to provide insights into the sustainable economic, social, and ecological development of tropical island regions. The results indicate the following: (1) Between 2010 and 2020, forest land was the dominant land use type in Hainan Island, accounting for 63% of the total area, followed by arable land. Land use changes were characterized mainly by increases in built-up land and grass land, which increased by 497.13 km2 and 18.87 km2, respectively, with decreases in other types. The largest area of land conversion was from forest land, which was predominantly converted to built-up land and arable land, measuring 259.97 km2 and 174.49 km2, respectively. (2) The PLUS model was used to simulate land use changes in Hainan Island, achieving a Kappa coefficient of 0.88 and an overall accuracy of 0.94, indicating a high consistency between the simulation results and actual data. (3) The ecological protection priority scenario yielded the highest ecosystem service values (CNY 72.052 billion), while the values under other scenarios decreased compared to 2020. The natural development scenario saw a decrease of CNY 1.821 billion, and the tourism development priority scenario saw a decrease of CNY 0.595 billion. Spatially, the ecological protection priority scenario also showed the greatest increase in areas with high ecosystem service values, particularly due to an increase in forest land area, which contributed to an overall increase in the ecosystem service values of the study area. This study offers a scientific foundation and a decision-making reference for selecting priority scenarios for tourism development on Hainan Island, aimed at supporting its future sustainable development. It emphasizes the protection of forest resources, the promotion of greening initiatives, and the achievement of a balance between ecological preservation and tourism activities.
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来源期刊
Land
Land ENVIRONMENTAL STUDIES-Nature and Landscape Conservation
CiteScore
4.90
自引率
23.10%
发文量
1927
期刊介绍: Land is an international and cross-disciplinary, peer-reviewed, open access journal of land system science, landscape, soil–sediment–water systems, urban study, land–climate interactions, water–energy–land–food (WELF) nexus, biodiversity research and health nexus, land modelling and data processing, ecosystem services, and multifunctionality and sustainability etc., published monthly online by MDPI. The International Association for Landscape Ecology (IALE), European Land-use Institute (ELI), and Landscape Institute (LI) are affiliated with Land, and their members receive a discount on the article processing charge.
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