State Key Laboratory of Resources and Environmental Information System, Institute of Geographic Science and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China.
Int J Environ Res Public Health. 2018 Apr 25;15(5):855. doi: 10.3390/ijerph15050855.
The Yellow River Delta (YRD), located in Yellow River estuary, is characterized by rich ecological system types, and provides habitats or migration stations for wild birds, all of which makes the delta an ecological barrier or ecotone for inland areas. Nevertheless, the abundant natural resources of YRD have brought huge challenges to the area, and frequent human activities and natural disasters have damaged the ecological systems seriously, and certain ecological functions have been threatened. Therefore, it is necessary to determine the status of the ecological environment based on scientific methods, which can provide scientifically robust data for the managers or stakeholders to adopt timely ecological protection measures. The aim of this study was to obtain the spatial distribution of the ecological vulnerability (EV) in YRD based on 21 indicators selected from underwater status, soil condition, land use, landform, vegetation cover, meteorological conditions, ocean influence, and social economy. In addition, the fuzzy analytic hierarchy process (FAHP) method was used to obtain the weights of the selected indicators, and a fuzzy logic model was constructed to obtain the result. The result showed that the spatial distribution of the EV grades was regular, while the fuzzy membership of EV decreased gradually from the coastline to inland area, especially around the river crossing, where it had the lowest EV. Along the coastline, the dikes had an obviously protective effect for the inner area, while the EV was higher in the area where no dikes were built. This result also showed that the soil condition and groundwater status were highly related to the EV spatially, with the correlation coefficients −0.55 and −0.74 respectively, and human activities had exerted considerable pressure on the ecological environment.
黄河三角洲(YRD)位于黄河入海口,生态系统类型丰富,为野生鸟类提供了栖息地或迁徙站,使三角洲成为内陆地区的生态屏障或生态过渡带。然而,YRD 丰富的自然资源给该地区带来了巨大的挑战,频繁的人类活动和自然灾害严重破坏了生态系统,某些生态功能受到威胁。因此,有必要基于科学方法确定生态环境的状况,为管理者或利益相关者提供及时采取生态保护措施的科学依据。本研究旨在基于从水下状况、土壤条件、土地利用、地形、植被覆盖、气象条件、海洋影响和社会经济等方面选取的 21 个指标,获取 YRD 生态脆弱性(EV)的空间分布。此外,还使用模糊层次分析法(FAHP)获取所选指标的权重,并构建模糊逻辑模型以获得结果。结果表明,EV 等级的空间分布具有规律性,而 EV 的模糊隶属度从海岸线向内陆逐渐降低,尤其是在河流交汇处,EV 值最低。在海岸线沿线,堤防对内部区域具有明显的保护作用,而在没有堤防的区域,EV 值较高。该结果还表明,土壤条件和地下水状况与 EV 在空间上高度相关,相关系数分别为-0.55 和-0.74,人类活动对生态环境施加了相当大的压力。