State Key Joint Laboratory of Environmental Simulation and Pollution Control & School of Environment, Beijing Normal University, Beijing, 100875, China.
Ecotoxicology. 2014 May;23(4):506-17. doi: 10.1007/s10646-014-1219-5. Epub 2014 Mar 20.
The Haihe River Basin is a semiarid water resources area of China. River ecosystem was degraded for high population density and intensive water resources development activities. To assist in the improvement of the ecological integrity of this river ecosystem, an environmental flow assessment model was developed that consider both spatial structure and dominant eco-function parameters. River ecosystem was divided into three sub-ecosystems which including river reach, wetland and estuary based on the spatial structure of river ecosystem. River reach was divided into three types which including habitat restoration type (HR), water quality restoration type (WQR) and vegetation restoration substitute water quantity restoration type (VRSWQR) according to their dominant eco-function. The spatio-temporal distribution of environmental flow (EF) for the river ecosystem in the Haihe River Basin was assessed based on the model. The results indicate that the EF for the river reach, wetland, and estuary are 2.267, 1.532, and 0.972 billion m(3), respectively. The EF for HR type of river reach, the WQR type of river reach and VRSWQR type of river reach are 1.140, 1.138, and 0.154 billion m(3), which are equal to 4.320, 4.312, and 0.584 % of the average annual flow of 26.39 billion m(3), respectively. EF for river ecosystem in wet period (June-September), normal period (October-January) and dry period (February-May) are 2.999, 0.951, and 0.821 billion m(3), respectively. Annual EF for river ecosystem of the Basin are 4.771 billion m(3), which accounts for 18 % of the average annual flows of 26.39 billion m(3).
海河流域是中国半干旱地区水资源区。由于人口密度高和水资源开发活动密集,河流水生态系统退化。为了协助改善该河流水生态系统的生态完整性,开发了一个环境流量评估模型,该模型同时考虑了空间结构和主要生态功能参数。根据河流水生态系统的空间结构,将河流水生态系统分为河流段、湿地和河口三个亚生态系统。根据其主要生态功能,将河流段分为栖息地恢复型(HR)、水质恢复型(WQR)和植被恢复替代水量恢复型(VRSWQR)三种类型。基于该模型评估了海河流域河流水生态系统的环境流量(EF)的时空分布。结果表明,河流段、湿地和河口的 EF 分别为 22.67 亿立方米、15.32 亿立方米和 0.972 亿立方米。HR 型河流段、WQR 型河流段和 VRSWQR 型河流段的 EF 分别为 11.40 亿立方米、11.38 亿立方米和 0.154 亿立方米,分别占 263.90 亿立方米多年平均流量的 4.320%、4.312%和 0.584%。湿季(6 月-9 月)、正常季(10 月-1 月)和枯水季(2 月-5 月)的河流水生态系统 EF 分别为 29.99 亿立方米、9.51 亿立方米和 8.21 亿立方米。流域河流水生态系统的年 EF 为 47.71 亿立方米,占 263.90 亿立方米多年平均流量的 18%。