首页> 外文期刊>The Science of the Total Environment >Water quality and associated microbial ecology in selected Alaska Native communities: Challenges in off-the-grid water supplies
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Water quality and associated microbial ecology in selected Alaska Native communities: Challenges in off-the-grid water supplies

机译:选定的阿拉斯加本地社区中的水质和相关的微生物生态学:越野水供应挑战

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摘要

The availability of safe water for potable purposes in Alaska Native communities is limited due to naturally occurring metals and contaminants released from anthropogenic activities, such as drilling and mining. The impacts of climate change are magnified in the arctic and sub-arctic regions and thus have the potential to mobilize contaminants and exacerbate the water contamination problem. Alaska Native communities are vulnerable to such changes in their water quality because of their remote location and limited access to resources. This study initiates an assessment of water quality, including its microbial ecology, in off-the-grid Alaskan water supplies (i.e., primarily groundwater wells). In particular, water quality data were collected from nine communities (22 ground water wells). Water quality analyses included basic water quality parameters, a suite of metals relevant to human health, and microbial community composition. Results revealed location-specific elevated arsenic concentrations based on the underlying geological formation, particularly in the areas located in the geological formation of the McHugh Complex. Diverse microbial communities were observed, and the grouping appeared to be based on elevation. These findings present evidence of compromised water quality in an understudied area in the United States. The results from this study should be considered as a snapshot in time, which highlight the importance for further systematic studies in similar off-the-grid communities.
机译:由于自然发生的金属和污染物从人为的活性,如钻井和采矿,因此,阿拉斯加本地社区的可用水的可用性是有限的。气候变化的影响在北极和亚北极地区中辐射,因此有可能动员污染物并加剧水污染问题。由于其远程位置和对资源的访问有限,阿拉斯加本土社区易受其水质的变化。本研究提出了对水质的评估,包括其微生物生态,包括其在栅栏中的阿拉斯加水供应(即主要是地下水井)。特别是,从九个社区(22个地面水井)收集水质数据。水质分析包括基本水质参数,这是一种与人体健康相关的金属套件和微生物群落组成。结果揭示了基于潜在地质形成的特异性升高的砷浓度,特别是在位于MChugh复合物的地质形成的区域。观察到不同的微生物群落,分组似乎基于升高。这些调查结果呈现了在美国被清算的地区的水质受损的证据。该研究的结果应被视为时间的快照,这突出了类似于类似的离网社区中进一步系统研究的重要性。

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