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Preliminary Investigations of Seasonal Changes in the Geochemical Evolution of the Logdson River, Mammoth Cave, Kentucky

机译:肯塔基州猛mm洞的Logdson河的地球化学演变的季节性变化的初步调查

摘要

Many geochemical studies have been made of karst waters worldwide. Most data that provide the framework for our current understanding of the evolution of karst waters have come from sampling at discrete times and locations, such as springs or wells. Relatively few studies have been made of the geochemical evolution of groundwater as it moves through an open flow system. This paper addresses the seasonal changes in the geochemistry of the Logsdon River conduit as it passes through nearly 10km of the carbonate aquifer of south-central Kentucky . The most important control on the ability of groundwaters to dissolve limestone is their carbon dioxide pressure, which is influenced by a variety of complex interactions with soil, bedrock, and in-cave organic decay. The fieldwork involved in this research combines seasonal sampling of the entire traversable length of the Logsdon River conduit, as well as continuous monitoring of the chemistry at key points within the flow system. Preliminary results of this study indicate both seasonal changes in CO 2 , transport through the Mammoth Cave karst aquifer during summer and winter conditions, along with significant geochemical changes as the water moves through a distance of 10km.
机译:全世界对岩溶水进​​行了许多地球化学研究。大多数数据为我们目前对喀斯特水域演化的理解提供了框架,这些数据来自于离散时间和地点(例如泉水或水井)的采样。当地下水流经开放水流系统时,对地球化学演化的研究相对较少。本文探讨了洛格斯登河导管经过肯塔基州中南部近10公里的碳酸盐含水层时地球化学的季节性变化。对地下水溶解石灰石的能力的最重要控制是其二氧化碳压力,该压力受与土壤,基岩和洞穴有机物腐烂的各种复杂相互作用的影响。这项研究涉及的现场工作结合了对Logsdon River管道整个可穿越长度的季节性采样,以及对流量系统内关键点的化学物质的连续监控。这项研究的初步结果表明,在夏季和冬季条件下,CO 2的季节变化,通过猛Cave洞岩溶含水层的运输,以及随着水流经10 km的距离都发生了显着的地球化学变化。

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