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首页> 外文期刊>Reviews of Geophysics >DRIVERS OF CHANGE IN ESTUARINE-COASTAL ECOSYSTEMS: DISCOVERIES FROM FOUR DECADES OF STUDY IN SAN FRANCISCO BAY
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DRIVERS OF CHANGE IN ESTUARINE-COASTAL ECOSYSTEMS: DISCOVERIES FROM FOUR DECADES OF STUDY IN SAN FRANCISCO BAY

机译:河口-沿海生态系统变化的驱动因素:旧金山湾研究的四个十年的发现

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[1] Poised at the interface of rivers, ocean, atmosphere and dense human settlement, estuaries are driven by a large array of natural and anthropogenic forces. San Francisco Bay exemplifies the fast-paced change occurring in many of the world’s estuaries, bays, and inland seas in response to these diverse forces. We use observations from this particularly well-studied estuary to illustrate responses to six drivers that are common agents of change where land and sea meet: water consumption and diversion, human modification of sediment supply, introduction of nonnative species, sewage input, environmental policy, and climate shifts. In San Francisco Bay, responses to these drivers include, respectively, shifts in the timing and extent of freshwater inflow and salinity intrusion, decreasing turbidity, restructuring of plankton communities, nutrient enrichment, elimination of hypoxia and reduced metal contamination of biota, and food web changes that decrease resistance of the estuary to nutrient pollution. Detection of these changes and discovery of their causes through environmental monitoring have been essential for establishing and measuring outcomes of environmental policies that aim to maintain high water quality and sustain services provided by estuarinecoastal ecosystems. The many time scales of variability and the multiplicity of interacting drivers place heavy demands on estuarine monitoring programs, but the San Francisco Bay case study illustrates why the imperative for monitoring has never been greater.
机译:[1]河口处在河流,海洋,大气层和密集的人类住区的交界处,其受各种自然和人为力量驱动。旧金山湾体现了世界上许多河口,海湾和内陆海域响应这些多样化力量而发生的快节奏变化。我们使用来自这个经过特别研究的河口的观察来说明对六个驱动因素的响应,这些驱动因素是陆地和海洋相遇的共同推动因素:水的消耗和转移,对沉积物供应的人为改变,外来物种的引入,污水输入,环境政策,和气候变化。在旧金山湾,对这些驱动因素的应对措施分别包括淡水流入和盐分侵入的时间和范围的变化,浊度降低,浮游生物群落的重组,营养物质富集,消除缺氧和减少生物群的金属污染以及食物网降低河口对养分污染的抵抗力的变化。对于这些变化的发现以及通过环境监测发现其原因,对于建立和衡量旨在维持高水质并维持河口-沿海生态系统提供的服务的环境政策的成果至关重要。可变性的许多时间尺度和相互作用的驱动程序的多样性对河口监测计划提出了很高的要求,但是旧金山湾的案例研究说明了为什么监测的紧迫性从未如此重要。

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