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Simulation of munitions effects on ecosystem contamination in an Army range impact area.

机译:在军方靶场影响区域模拟弹药对生态系统污染的影响。

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As a military service, the Army faces unique challenges in maintaining its warfighting readiness while practicing sound environmental stewardship of its training lands. The environmental implications of using firing ranges and impact areas are becoming more important. These include health and safety risks due to unexploded ordnance. Chemical contaminants such as Trinitrotoluene (TNT), Royal Demolition Explosive (RDX), and High Melting Explosive (HMX) are subject to environmental fate and transport processes congruent with the ecological setting in to which they are released.; An understanding and application of environmental and ecological science provides a vehicle for adequately addressing the impact area contamination problem. This dissertation demonstrates a methodology that integrates these disciplines into a problem solving approach that provides a foundation for effective resource management and future research.; An ecological framework for assessment of environmental risk is used to evaluate the relative resilience of eleven major Army impact areas to explosive residue contamination. It identifies ecosystem properties that directly influence the rates of environmental fate and transport processes in the natural system.; First approximations of munitions disturbance and contaminant loading are made and field data collected and analyzed from Fort Greely, Alaska. This yields a set of soil properties such as soil organic matter content that are related to an impact area's ability to attenuate contaminant fate and transport. Organic matter content of the soils proved to be a good predictor of cation exchange capacity and it also is a good descriptor of crater disturbance.; SOM dynamics provides an integrative link between environmental process and ecological setting resolving the complex problem of impact area contamination into one that is more understandable and manageable. CENTURY SOM dynamics simulation adequately predicted levels of primary production and soil carbon for the modeled ecotypes of Fort Greely, Alaska. Simulated SOM rates-of-change resulting from munitions use provided insight into ecological and environmental processes affecting munitions contamination, and the ability to quantify contaminant attenuation.; Finally, a geographic information system enables an integrated analysis that produces an environmentally and ecologically based measure of the system's ability to attenuate contamination for use in decision making.
机译:作为一项兵役,陆军在练习战场的良好环境管理的同时,保持战备状态面临着独特的挑战。使用射击范围和影响区域对环境的影响变得越来越重要。其中包括由于未爆炸弹药而造成的健康和安全风险。三硝基甲苯(TNT),皇家爆破炸药(RDX)和高熔点炸药(HMX)等化学污染物会受到环境影响,其运输过程与释放环境有关。对环境和生态科学的理解和应用为充分解决影响区污染问题提供了一种手段。本文论证了一种将这些学科整合到解决问题的方法中的方法,该方法为有效的资源管理和未来的研究奠定了基础。用于评估环境风险的生态框架用于评估11个主要陆军打击区对爆炸性残留物污染的相对适应性。它确定直接影响自然系统中环境命运和运输过程速率的生态系统特性。从阿拉斯加的格里利堡进行了弹药干扰和污染物装载的初步近似,并收集和分析了实地数据。这样就产生了一组土壤特性,例如土壤有机质含量,这些特性与影响区减弱污染物归宿和运输的能力有关。土壤有机质含量被证明是阳离子交换能力的良好预测指标,也是火山口扰动的良好描述。 SOM动力学提供了环境过程与生态环境之间的整合链接,从而将影响区域污染的复杂问题解决为更易于理解和管理的问题。 CENTURY SOM动力学模拟可以充分预测阿拉斯加Fort Greely生态型的初级生产力和土壤碳水平。弹药使用产生的模拟SOM变化率提供了对影响弹药污染的生态和环境过程的了解,以及量化污染物衰减的能力。最后,地理信息系统可以进行综合分析,从而对环境进行系统评估以减少污染的能力,从而对环境和生态进行衡量。

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