基于InVEST-MGWR模型的黄河流域山西段生境质量变化及其影响因素评价

Q3 Environmental Science
Zi-Xuan Hao, Jia-Kai Ma, Ao Wang, Jin-Fang Wang, Zhi-Lei Zhen
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引用次数: 0

摘要

山西省是黄河流域的重要生态屏障,是生态保护和高质量发展的重要区域。利用2000年、2010年和2020年黄河流域山西段土地利用、高程和国内生产总值(GDP)数据,运用InVEST、Fragstats和多尺度地理加权回归(MGWR)模型,研究了黄河流域山西段生境质量的分布特征及其影响因素。结果表明:耕地、林地和草地是主要的土地利用类型,其次是建设用地和水域,未利用地占比较小;2000年至2020年,西藏自治区耕地面积减少,建设用地面积持续增加。生境质量呈下降趋势,低质量生境面积显著增加,高质量生境面积变化不明显。从空间上看,生境质量呈现东南、西北高、中部、西南低的格局。GDP和土地城市化率对栖息地质量产生负向影响,对南部中条山脉、东部太岳山和西部吕梁山脉均有显著负向影响。相反,聚集指数对生境质量有正向影响,其影响范围从中心向外围逐渐扩大,并随着时间的推移逐渐减小。传染指数主要在生境质量较低的地区呈现负向影响。斑块丰富度指数对高生境质量区域的影响主要为负。在植被覆盖度高的地区,香农均匀度指数对生境质量的影响主要为负。研究结果表明,生态系统与人类活动之间存在复杂的相互作用。该研究可为制定有效的生态保护政策和生态系统的可持续发展提供理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessing the changes of habitat quality and its influencing factor in the Shanxi Section of the Yellow River Basin based on InVEST-MGWR model.

Shanxi Province acts as a critical ecological barrier in the Yellow River Basin (YRB) and is an important area for ecological protection and high-quality development. With the data of land use, elevation, and gross domestic product (GDP) of the Shanxi section of the Yellow River Basin (SYRB) in 2000, 2010, and 2020, we employed the InVEST, Fragstats, and multi-scale geographically weighted regression (MGWR) models to investigate the distribution characteristics of habitat quality and its influencing factors within the SYRB. The results showed that cultivated land, forest, and grassland were the predominant land use types, followed by construction land and water area, while unused land accounted for small proportion. Between 2000 and 2020, the area of cultivated land in the SYRB had decreased and that of construction land had continuously increased. Habitat quality in the SYRB exhibited a declining trend, with a significant increase in the area of low-quality habitat, while change in high-qua-lity habitat area was not pronounced. Spatially, the habitat quality exhibited a pattern with higher values in the southeast and northwest, and lower values in the central and southwestern regions. The GDP and the rate of land urbanization negatively impacted habitat quality, exhibiting significant negative influences on the Zhongtiao Mountains in the south, the Taiyue Mountains in the east, and the Lyuliang Mountains in the west. Conversely, the aggregation index positively influenced habitat quality, with the range gradually expanding from the central area to the periphery and diminishing over time. The contagion index primarily exhibited negative impact on area with low habitat quality. The patch richness index mainly demonstrated a negative influence on area with high habitat quality. The Shannon evenness index predominantly affected habitat quality negatively in area with high vegetation coverage. Our results indicated the complex interaction between ecosystems and human activities. This study would provide a theoretical basis for the formulation of effective ecological protection policies and the sustainable development of ecosystems.

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应用生态学报
应用生态学报 Environmental Science-Ecology
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2.50
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11393
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