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首页> 外文期刊>Water >Development of the Wetland Condition Index (WCI) by Combining the Landscape Development Intensity Index (LDI) and the Water Environment Index (WEI) for Humid Regions of China
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Development of the Wetland Condition Index (WCI) by Combining the Landscape Development Intensity Index (LDI) and the Water Environment Index (WEI) for Humid Regions of China

机译:结合中国湿润地区的景观发展强度指数(LDI)和水环境指数(WEI)来开发湿地条件指数(WCI)

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Human use and management have a marked effect on wetland from different scales; it is necessary to develop a multi-scale integrated method to assess wetland conditions. So, this research aids the development of the wetland condition index (WCI) for humid regions of China by combining two main sub-indices: (i) the landscape development intensity index (LDI), which assesses human-dominated impacts; and (ii) the water environment index (WEI), which assesses changes in water quality and phytoplankton. We measured terrain and land use in the watersheds of wetlands using remote imaging data with geographic information systems (GIS) software. Also, we monitored the physical and chemical variables of the water bodies of 27 wetlands in urbanized and moderately urbanized areas in Nanjing City of China for this study. There were significant inconsistencies between the city’s level of development and the values of the WCI and its sub-indices. The WCI of urbanized areas was better than that for moderately urbanized areas, and the sub-indices LDI and WEI were only slightly correlated. In other words, wetlands with a low LDI value did not necessarily have a low water environment index value. Due to wetland restoration and human management activities, integrating the LDI and WEI is increasingly necessary for wetlands in urbanized areas than for moderately urbanized areas. This method could guide the design of wetlands to optimize their qualities and benefits to residents and reinforce wetland conservation.
机译:人类的使用和管理对湿地的影响程度不同。有必要开发一种多尺度综合方法来评估湿地条件。因此,本研究通过结合两个主要子指标来帮助开发中国湿润地区的湿地条件指数(WCI):(i)评估人为影响的景观发展强度指数(LDI); (ii)水环境指数(WEI),用于评估水质和浮游植物的变化。我们使用带有地理信息系统(GIS)软件的远程成像数据,对湿地流域的地形和土地利用进行了测量。此外,在本研究中,我们监测了中国南京市城市化和中度城市化地区27个湿地水体的物理和化学变量。该市的发展水平与WCI及其子指数的价值存在明显的不一致。城镇化地区的WCI优于中度城镇化地区的WCI,而子指数LDI和WEI只是略微相关。换句话说,具有低LDI值的湿地并不一定具有低水环境指数值。由于湿地恢复和人类管理活动,与中等程度的城市化地区相比,对于城市化地区的湿地,将LDI和WEI集成起来的必要性越来越高。这种方法可以指导湿地设计,以优化其质量和对居民的好处,并加强湿地保护。

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