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能量色散X射线荧光系统作为评估污染土壤的分析工具。

Energy-dispersive X-ray fluorescence systems as analytical tool for assessment of contaminated soils.

作者信息

Vanhoof Chris, Corthouts Valère, Tirez Kristof

机构信息

Flemish Institute for Technological Research (Vito), Environmental Measurements, Boeretang 200, B-2400 Mol, Belgium.

出版信息

J Environ Monit. 2004 Apr;6(4):344-50. doi: 10.1039/b312781h. Epub 2004 Feb 20.

Abstract

To determine the heavy metal content in soil samples at contaminated locations, a static and time consuming procedure is used in most cases. Soil samples are collected and analyzed in the laboratory at high quality and high analytical costs. The demand by government and consultants for a more dynamic approach and by customers requiring performances in which analyses are performed in the field with immediate feedback of the analytical results, is growing. Especially during the follow-up of remediation projects or during the determination of the sampling strategy, field analyses are advisable. For this purpose four types of ED-XRF systems, ranging from portable up to high performance laboratory systems, have been evaluated. The evaluation criteria are based on the performance characteristics for all the ED-XRF systems such as limit of detection, accuracy and the measurement uncertainty on one hand, and also the influence of the sample pretreatment on the obtained results on the other hand. The study proved that the field portable system and the bench top system, placed in a mobile van, can be applied as field techniques, resulting in semi-quantitative analytical results. A limited homogenization of the analyzed sample significantly increases the representativeness of the soil sample. The ED-XRF systems can be differentiated by their limits of detection which are a factor of 10 to 20 higher for the portable system. The accuracy of the results and the measurement uncertainty also improved using the bench top system. Therefore, the selection criteria for applicability of both field systems are based on the required detection level and also the required accuracy of the results.

摘要

为了测定受污染地点土壤样品中的重金属含量,大多数情况下采用的是静态且耗时的程序。土壤样品在实验室中采集并进行分析,质量高但分析成本也高。政府和咨询顾问对更具动态性的方法的需求以及客户对能在现场进行分析并能即时反馈分析结果的性能的要求与日俱增。特别是在修复项目的跟进过程中或确定采样策略时,现场分析是可取的。为此,对四种类型的能量色散X射线荧光光谱(ED-XRF)系统进行了评估,从便携式到高性能实验室系统不等。评估标准一方面基于所有ED-XRF系统的性能特征,如检测限、准确性和测量不确定度,另一方面基于样品预处理对所得结果的影响。研究证明,现场便携式系统和放置在移动货车中的台式系统可作为现场技术应用,能得出半定量分析结果。对分析样品进行有限的均质化处理可显著提高土壤样品的代表性。ED-XRF系统可根据其检测限进行区分,便携式系统的检测限要高出10到20倍。使用台式系统时,结果的准确性和测量不确定度也有所提高。因此,这两种现场系统适用性的选择标准基于所需的检测水平以及结果所需的准确性。

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