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中国三峡水库的沿岸带:挑战与机遇。

The littoral zone in the Three Gorges Reservoir, China: challenges and opportunities.

机构信息

College of Resources and Environmental Science, Chongqing University, Chongqing, 400044, China,

出版信息

Environ Sci Pollut Res Int. 2013 Oct;20(10):7092-102. doi: 10.1007/s11356-012-1404-0. Epub 2013 Jan 8.

Abstract

For flood control purpose, the water level of the Three Gorges Reservoir (TGR) varies significantly. The annual reservoir surface elevation amplitude is about 30 m behind the dam. Filling of the reservoir has created about 349 km(2) of newly flooded riparian zone. The average flooding period lasts for more than 6 months, from mid-October to late April. The dam and its associated reservoir provide flood control, power generation, and navigation, but there are also many environmental challenges. The littoral zone is the important part of the TGR, once its eco-health and stability are damaged,which will directly endanger the ecological safety of the whole reservoir area and even the Yangtze River Basin. So, understanding the great ecological opportunities which are hidden in littoral zone of TGR (LZTGR) and putting forward approaches to solve the environmental problems are very important. LZTGR involves a wide field of problems, such as the landslides, potential water pollution, soil erosion, biodiversity loss, land cover changes, and other issues. The Three Gorges dam (TGD) is a major trigger of environmental change in the Yangtze River. The landslides, water quality, soil erosion, loss of biodiversity, dam operation, and challenge for land use are closely interrelated across spatial and temporal scales. Therefore, the ecological and environmental impacts caused by TGD are necessarily complex and uncertain. LZTGR is not only a great environmental challenge but also an ecological opportunity for us. In fact, LZTGR is an important structural unit of TGR ecosystem and has special ecosystem services function. Vegetation growing in LZTGR is therefore a valuable resource due to accumulation of carbon and nutrients. Everyone thinks that the ecological approach to the problem is needed. If properly designed, dike-pond systems, littoral woods systems, and re-created waterfowl habitats will have the capacity to capture nutrients from uplands and obstruct soil erosion. Ecological engineering approaches can therefore reduce environmental impacts of LZTGR and optimize ecological services. In view of the current situation and existing ecological problems of LZTGR, according to function demands such as environmental purification, biodiversity conservation, and vegetation carbon sink enhancement, we should explore the eco-friendly utilization mode of resources in LZTGR. Ecological engineering approaches might minimize the impacts or optimize the ecological services. Natural regeneration and ecological restoration in LZTGR are valuable for soil erosion decrease, pollutant purification, biodiversity conservation, carbon sink increase, and ecosystem health maintenance in TGR.

摘要

为了防洪目的,三峡水库(TGR)的水位变化很大。水库表面年度高程振幅约为大坝后面 30 米。水库的蓄水创造了约 349 平方公里的新淹没河岸带。平均洪水期持续 6 个多月,从 10 月中旬到 4 月下旬。大坝及其相关水库提供了防洪、发电和航运等功能,但也存在许多环境挑战。河岸带是三峡水库的重要组成部分,一旦其生态健康和稳定性受到破坏,将直接危及整个库区乃至长江流域的生态安全。因此,了解三峡水库河岸带(LZTGR)所隐藏的巨大生态机遇,并提出解决环境问题的方法非常重要。LZTGR 涉及广泛的问题,如滑坡、潜在水污染、土壤侵蚀、生物多样性丧失、土地覆被变化等。三峡大坝(TGD)是长江环境变化的主要触发因素。滑坡、水质、土壤侵蚀、生物多样性丧失、大坝运行以及土地利用面临的挑战,在时空尺度上是相互关联的。因此,TGD 所造成的生态和环境影响必然是复杂和不确定的。LZTGR 不仅是一个巨大的环境挑战,也是我们的一个生态机遇。事实上,LZTGR 是三峡水库生态系统的一个重要结构单元,具有特殊的生态系统服务功能。LZTGR 中生长的植被由于积累了碳和养分,因此是一种有价值的资源。大家认为需要采取生态方法来解决这个问题。如果设计得当,堤塘系统、河岸林系统和再造水禽栖息地将有能力从高地吸收养分并阻止土壤侵蚀。生态工程方法因此可以减少 LZTGR 的环境影响并优化生态服务。鉴于 LZTGR 的现状和现有生态问题,根据环境净化、生物多样性保护和植被碳汇增强等功能需求,我们应该探索 LZTGR 资源的环保利用模式。生态工程方法可以将影响降到最低或优化生态服务。LZTGR 的自然再生和生态恢复对于减少土壤侵蚀、净化污染物、保护生物多样性、增加碳汇以及维护 TGR 的生态系统健康非常有价值。

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