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A New Device for Collecting Samples from Groundwater Monitoring Wells

机译:用于收集地下水监测井采样的新装置

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Obtaining truly representative groundwater samples which have low turbidity and minimal volatile organic compound (VOC) loss has been, until now, a sampling dilemma. Current practice requires groundwater monitoring wells to be purged, drawing out the "standing) groundwater and drawing in fresh, "representative" formation water. This is primarily because available samplers cold only gather a "mixed column" sample from groundwater which is "static" (resident) above the well screen interval, and unavailable to refreshment by flow through the screened interval of the well. Furthermore, purged groundwater contaminated with toxic chemicals must be either disposed of an appropriate landfill, or treated at a TSD permitted treatment facility. The KABIS Discrete Sampler was designed to solve as many of these sampling problems as possible; it has no moving parts, and is extremely simple to operate and decontaminate. The sampler can be lowered past flating product without affectign the integrity of the sample, and it is capable of sampling at any depth below or above the screened interval of any well, making purging of the well unnecessary. Since the Kabis Sampler samples directly into the sampling container (via laminar flow), lossof volatile fractions within a sample is greatly minimized. The hydrodynamic shape of the Kabis Sampler creates a minimal amount of hydrodynamic dispersion of settled flocculants and soil particles, providing the least turbid sample available. This paper provides a literature review of current sampling methods and their reasonign, and provides for a new groundwater sampling device and method.
机译:获得具有低混浊度和最小的挥发性有机化合物真正代表地下水样品(VOC)损耗一直以来,到现在为止,一采样的困境。目前的实践要求地下水监测井被清除,绘制出了“站立),地下水和新鲜的绘画,‘代表’地层水,这主要是因为可用的采样冷只收集一个‘混合列’,从地下水样本是‘静态’ (居民)的井筛间隔的上方,并且不可用于刷新由流过的孔中。此外,混有有毒化学品净化地下水必须是设置适当的垃圾填埋场,或在TSD处理的筛选间隔允许处理设备。该KABIS离散采样的目的是要解决许多的这些采样问题成为可能;它没有移动部件,并且是非常简单的操作和净化该取样器可以降低过去的扁平化产物无需affectign样品的完整性,这是。能在低于或任何公筛选的间隔以上的任何深度采样,使得井的不必要的清洗,由于Kabis萨姆PLER样品直接进入取样容器(通过层流),lossof样品内的挥发性馏分大大最小化。所述Kabis采样的流体动力学形状创建结算絮凝剂和土壤颗粒的流体动力学分散体的最小量,从而提供可用的至少混浊样品。本文提供的电流取样方法及其reasonign文献综述,并提供了一种新的地下水取样装置和方法。

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