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Consequences of Climate Change on the Ecogeomorphology of Coastal Wetlands

机译:气候变化对沿海湿地生态地貌的影响

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摘要

Climate impacts on coastal and estuarine systems take many forms and are dependent on the local conditions, including those set by humans. We use a biocomplexity framework to provide a perspective of the consequences of climate change for coastal wetland ecogeomorphology. We concentrate on three dimensions of climate change affects on ecogeomorphology: sea level rise, changes in storm frequency and intensity, and changes in freshwater, sediment, and nutrient inputs. While sea level rise, storms, sedimentation, and changing freshwater input can directly impact coastal and estuarine wetlands, biological processes can modify these physical impacts. Geomorphological changes to coastal and estuarine ecosystems can induce complex outcomes for the biota that are not themselves intuitively obvious because they are mediated by networks of biological interactions. Human impacts on wetlands occur at all scales. At the global scale, humans are altering climate at rapid rates compared to the historical and recent geological record. Climate change can disrupt ecological systems if it occurs at characteristic time scales shorter than ecological system response and causes alterations in ecological function that foster changes in structure or alter functional interactions. Many coastal wetlands can adjust to predicted climate change, but human impacts, in combination with climate change, will significantly affect coastal wetland ecosystems. Management for climate change must strike a balance between that which allows pulsing of materials and energy to the ecosystems and promotes ecosystem goods and services, while protecting human structures and activities. Science-based management depends on a multi-scale understanding of these biocomplex wetland systems. Causation is often associated with multiple factors, considerable variability, feedbacks, and interferences. The impacts of climate change can be detected through monitoring and assessment of historical or geological records. Attribution can be inferred through these in conjunction with experimentation and modeling. A significant challenge to allow wise management of coastal wetlands is to develop observing systems that act at appropriate scales to detect global climate change and its effects in the context of the various local and smaller scale effects.
机译:气候对沿海和河口系统的影响有多种形式,并取决于当地条件,包括人类所设定的条件。我们使用生物复杂性框架来提供气候变化对沿海湿地生态地貌的后果的观点。我们专注于气候变化影响生态地貌的三个方面:海平面上升,风暴频率和强度的变化以及淡水,沉积物和养分输入的变化。虽然海平面上升,风暴,沉积和不断变化的淡水输入量可以直接影响沿海和河口湿地,但生物过程可以改变这些物理影响。沿海和河口生态系统的地貌变化会导致生物群复杂的结果,这些结果本身并不直观直观,因为它们是由生物相互作用网络介导的。人类对湿地的影响无所不在。在全球范围内,与历史和最近的地质记录相比,人类正在迅速改变气候。如果气候变化发生在比生态系统响应短的特征时间尺度上,则会破坏生态系统,并导致生态功能发生变化,从而促进结构变化或功能相互作用。许多沿海湿地可以调整以适应预期的气候变化,但是人类的影响以及气候变化将极大地影响沿海湿地的生态系统。气候变化管理必须在允许物质和能量向生态系统脉动,促进生态系统产品和服务同时保护人类结构和活动的两者之间取得平衡。基于科学的管理取决于对这些生物复杂湿地系统的多尺度理解。原因通常与多种因素,可变性,反馈和干扰有关。气候变化的影响可以通过对历史或地质记录的监测和评估来发现。归因可以通过这些与实验和建模相结合来推断。要对沿海湿地进行明智的管理,一项重大挑战是建立观测系统,以适当的规模发挥作用,以发现全球气候变化及其在各种局部和小尺度影响下的影响。

著录项

  • 来源
    《Estuaries and Coasts》 |2008年第3期|477-491|共15页
  • 作者单位

    Deparment of Oceanography and Coastal Sciences School of the Coast and Environment Louisiana State University Baton Rouge LA 70803 USA;

    Biology Department East Carolina University Greenville NC 27858 USA;

    Center for Environmental Science University of Maryland P.O. Box 775 Cambridge MD 21613 USA;

    Institute of Ecology A.C. Km 2.5 Carretera Antigua Coatepec No. 351 Xalapa 91070 Ver. Mexico;

    Department of Biological Sciences University of South Carolina Columbia SC 29208 USA;

    Deparment of Oceanography and Coastal Sciences School of the Coast and Environment Louisiana State University Baton Rouge LA 70803 USA;

    Department of Geography University of Exeter Cornwall Campus Penryn Cornwall TR10 9EZ UK;

    Virginia Institute of Marine Sciences P.O. Box 1346 Gloucester Point VA 23062 USA;

    Center for Environmental Science University of Maryland P.O. Box 775 Cambridge MD 21613 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Climate change; Ecogeomorphology; Coastal wetlands;

    机译:气候变化;生态地貌学;沿海湿地;

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