咸水入侵
气候变化
环境变化
风暴潮
地理
滨海平原
生态系统
海平面
地下水
环境资源管理
海洋学
环境科学
生态学
风暴
自然地理学
含水层
地质学
岩土工程
生物
作者
Kiera L. O’Donnell,Emily S. Bernhardt,Xi Yang,R. E. Emanuel,Marcelo Ardón,Manuel Lerdau,Alex K. Manda,Anna Braswell,Todd K. BenDor,Eric C. Edwards,Elizabeth Frankenberg,Ashley M. Helton,John S. Kominoski,Amy E. Lesen,Lindsay Naylor,Gregory B. Noe,Kate Tully,Elliott White,Justin P. Wright
出处
期刊:Anthropocene
[Elsevier BV]
日期:2024-01-13
卷期号:45: 100427-100427
被引量:15
标识
DOI:10.1016/j.ancene.2024.100427
摘要
The United States (U.S.) coastal plain is subject to rising sea levels, land subsidence, more severe coastal storms, and more intense droughts. These changes lead to inputs of marine salts into freshwater-dependent coastal systems, creating saltwater intrusion. The penetration of salinity into the coastal interior is exacerbated by groundwater extraction and the high density of agricultural canals and ditches throughout much of the rural U.S. landscape. Together saltwater intrusion and sea level rise (SWISLR) create substantial changes to the social-ecological systems situated along the coastal plain. Many scholars and practitioners are engaged in studying and managing SWISLR impacts on social, economic, and ecological systems. However, most efforts are localized and disconnected, despite a widespread desire to understand this common threat. In addition to variable rates of sea level rise across the U.S. outer coastal plain, differences in geomorphic setting, water resources infrastructure and management, and climate extremes are resulting in different patterns of saltwater intrusion. Understanding both the absolute magnitude of this rapid environmental change, and the causes and consequences for its spatial and temporal variation presents an opportunity to build new mechanistic models to link directional climate change to temporally and spatially dynamic socio-environmental impacts. The diverse trajectories of change offer rich opportunities to test and refine modern theories of ecosystem state change in systems with exceptionally strong socioecological feedbacks.
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