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Direct-push geochemical profiling for assessment of inorganic chemical heterogeneity in aquifers

机译:直接推压地球化学剖面图评估含水层中的无机化学非均质性

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Discrete-depth sampling of inorganic groundwater chemistry is essential for a variety of site characterization activities. Although the mobility and rapid sampling capabilities of direct-push techniques have led to their widespread use for evaluating the distribution of organic contaminants, complementary methods for the characterization of spatial variations in geochemical conditions have not been developed. In this study, a direct-push-based approach for high-resolution inorganic chemical profiling was developed at a site where sharp chemical contrasts and iron-reducing conditions had previously been observed. Existing multilevel samplers (MLSs) that span a fining-upward alluvial sequence were used for comparison with the direct-push profiling. Chemical profiles obtained with a conventional direct-push exposed-screen sampler differed from those obtained with an adjacent MLS because of sampler reactivity and mixing with water from previous sampling levels. The sampler was modified by replacing steel sampling components with stainless-steel and heat-treated parts, and adding an adapter that prevents mixing. Profiles obtained with the modified approach were in excellent agreement with those obtained from an adjacent MLS for all constituents and parameters monitored (Cl, NO_3, Fe, Mn, DO, ORP, specific conductance and pH). Interpretations of site redox conditions based on field-measured parameters were supported by laboratory analysis of dissolved Fe. The discrete-depth capability of this approach allows inorganic chemical variations to be described at a level of detail that has rarely been possible. When combined with the mobility afforded by direct-pushrigs and on-site methods of chemical analysis, the new approach is well suited for a variety of interactive site-characterization endeavors.
机译:离散深度采样无机地下水化学对于各种现场表征活动至关重要。尽管直接推技术的移动性和快速采样能力已导致其广泛用于评估有机污染物的分布,但尚未开发出表征地球化学条件空间变化的补充方法。在这项研究中,在以前已经观察到明显的化学对比和铁还原条件的地点,开发了一种基于直接推力的高分辨率无机化学轮廓分析方法。跨越细化向上冲积序列的现有多级采样器(MLS)用于与直接推压剖面图进行比较。由于采样器的反应性以及与先前采样级别的水混合,使用传统的直接推压式外露式屏幕采样器获得的化学特性不同于使用相邻的MLS获得的化学特性。对采样器进行了修改,方法是用不锈钢和经过热处理的部件替换钢制采样组件,并添加防止混合的适配器。对于所有成分和所监测的参数(Cl,NO_3,Fe,Mn,DO,ORP,比电导和pH),采用改进方法获得的曲线与从相邻MLS获得的曲线非常吻合。实验室通过对溶解铁的分析来支持基于现场测量参数的现场氧化还原条件的解释。这种方法的离散深度功能使无机化学变化能够以很少的细节得以描述。当与直接推动式钻具和现场化学​​分析方法提供的移动性结合在一起时,新方法非常适合于各种交互式的现场表征工作。

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