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Title: Marine Corps Base Camp Lejeune CW-5 Marsh Carbon, Nutrient and Atmospheric Gas exchanges with overlying water

Abstract

Critical military training and testing on lands along the nation’s coastal and estuarine shorelines are increasingly placed at risk because of encroachment pressures in surrounding areas, impairments due to other anthropogenic disturbances, and changes in climate and sea level. The U.S. Department of Defense (DoD) intends to enhance and sustain its training and testing assets and also optimize its stewardship of natural resources through the development and application of an ecosystem-based management approach on DoD installations. To accomplish this goal, particularly for installations in estuarine/coastal environments, the Strategic Environmental Research and Development Program (SERDP) launched the Defense Coastal/Estuarine Research Program (DCERP) as a 10-year effort at Marine Corps Base Camp Lejeune (MCBCL) in North Carolina. The results of the second 5 years of the program (DCERP2) are presented in the DCERP2 Final Report.There were four overarching objectives of DCERP2. The first objective was to understand the effects of climate change impacts, including warming temperatures, variability in the hydrological cycle, storm events, and sea level rise on the coastal ecosystems at MCBCL from observations and measurements made over the 10-year program. The second objective was to understand the carbon cycle of the coastal and terrestrial ecosystems at MCBCL through a highlymore » integrated sampling program. The third objective was to develop models, tools, and indicators to evaluate current and projected future ecosystem state changes and translate scientific findings into actionable information for installation managers. The last objective was to recommend adaptive management strategies to sustain ecosystem natural resources within the context of an active military installation.This dataset represents the results of seasonal samplings of triplicate paired fertilized and control plots across three marsh sites at Camp Lejeune Marine Corps Base, NC. It was used to compare chemical characteristics and processes across the three locations to determine the factors driving the response of salt marsh sustainability to fertilization.« less

Authors:

  1. Virginia Institute of Marine Science
Publication Date:
Research Org.:
Environmental System Science Data Infrastructure for a Virtual Ecosystem (ESS-DIVE) (United States); Defense Coastal/Estuarine Research Program (DCERP)
Sponsoring Org.:
U.S. DoD > Strategic Environmental Research and Development Program (SERDP) > Defense Coastal/Estuarine Research Program (DCERP)
Subject:
54 ENVIRONMENTAL SCIENCES
Keywords:
SERDP; DCERP; RESOURCE CONSERVATION; RC-2245
Geolocation:
34.594713,-77.250985|34.573203,-77.250985|34.573203,-77.338667|34.594713,-77.338667|34.594713,-77.250985
OSTI Identifier:
1602783
DOI:
https://doi.org/10.15485/1602783
Project Location:


Citation Formats

Czapla, Kenneth. Marine Corps Base Camp Lejeune CW-5 Marsh Carbon, Nutrient and Atmospheric Gas exchanges with overlying water. United States: N. p., 2018. Web. doi:10.15485/1602783.
Czapla, Kenneth. Marine Corps Base Camp Lejeune CW-5 Marsh Carbon, Nutrient and Atmospheric Gas exchanges with overlying water. United States. doi:https://doi.org/10.15485/1602783
Czapla, Kenneth. 2018. "Marine Corps Base Camp Lejeune CW-5 Marsh Carbon, Nutrient and Atmospheric Gas exchanges with overlying water". United States. doi:https://doi.org/10.15485/1602783. https://www.osti.gov/servlets/purl/1602783. Pub date:Wed Jan 31 00:00:00 EST 2018
@article{osti_1602783,
title = {Marine Corps Base Camp Lejeune CW-5 Marsh Carbon, Nutrient and Atmospheric Gas exchanges with overlying water},
author = {Czapla, Kenneth},
abstractNote = {Critical military training and testing on lands along the nation’s coastal and estuarine shorelines are increasingly placed at risk because of encroachment pressures in surrounding areas, impairments due to other anthropogenic disturbances, and changes in climate and sea level. The U.S. Department of Defense (DoD) intends to enhance and sustain its training and testing assets and also optimize its stewardship of natural resources through the development and application of an ecosystem-based management approach on DoD installations. To accomplish this goal, particularly for installations in estuarine/coastal environments, the Strategic Environmental Research and Development Program (SERDP) launched the Defense Coastal/Estuarine Research Program (DCERP) as a 10-year effort at Marine Corps Base Camp Lejeune (MCBCL) in North Carolina. The results of the second 5 years of the program (DCERP2) are presented in the DCERP2 Final Report.There were four overarching objectives of DCERP2. The first objective was to understand the effects of climate change impacts, including warming temperatures, variability in the hydrological cycle, storm events, and sea level rise on the coastal ecosystems at MCBCL from observations and measurements made over the 10-year program. The second objective was to understand the carbon cycle of the coastal and terrestrial ecosystems at MCBCL through a highly integrated sampling program. The third objective was to develop models, tools, and indicators to evaluate current and projected future ecosystem state changes and translate scientific findings into actionable information for installation managers. The last objective was to recommend adaptive management strategies to sustain ecosystem natural resources within the context of an active military installation.This dataset represents the results of seasonal samplings of triplicate paired fertilized and control plots across three marsh sites at Camp Lejeune Marine Corps Base, NC. It was used to compare chemical characteristics and processes across the three locations to determine the factors driving the response of salt marsh sustainability to fertilization.},
doi = {10.15485/1602783},
journal = {},
number = ,
volume = ,
place = {United States},
year = {Wed Jan 31 00:00:00 EST 2018},
month = {Wed Jan 31 00:00:00 EST 2018}
}