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Microfluidic sample preparation for elemental analysis in liquid samples using micro X-ray fluorescence spectrometry

机译:使用微X射线荧光光谱法对液体样品中的元素进行分析的微流体样品制备

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摘要

The integration of microfluidic devices with micro X-ray fluorescence (micro-XRF) spectrometry offers a new approach for the direct characterization of liquid materials. A sample presentation method based on use of small volumes (<5 μl) of liquid contained in an XRF-compatible device has been developed. In this feasibility study, a prototype chip was constructed, and its suitability for XRF analysis of liquids was evaluated, along with that of a commercially produced microfluidic device. Each of the chips had an analytical chamber which contained approximately 1 μl of sample when the device was filled using a pipette. The performance of the chips was assessed using micro-XRF and high resolution monochromatic wavelength dispersive X-ray fluorescence, a method that provides highly selective and sensitive detection of actinides. The intended application of the device developed in this study is for measurement of Pu in spent nuclear fuel. Aqueous solutions and a synthetic spent fuel matrix were used to evaluate the devices. Sr, which has its Kα line energy close to the Pu Lα line at 14.2 keV, was utilized as a surrogate for Pu because of reduced handling risks. Between and within chip repeatability were studied, along with linearity of response and accuracy. The limit of detection for Sr determination in the chip is estimated at 5 ng/μl (ppm). This work demonstrates the applicability of microfluidic sample preparation to liquid characterization by XRF, and provides a basis for further development of this approach for elemental analysis within a range of sample types.
机译:微流控设备与微X射线荧光(micro-XRF)光谱仪的集成为液体材料的直接表征提供了一种新方法。基于使用XRF兼容设备中包含的小体积(<5μl)液体的样品展示方法已经开发出来。在此可行性研究中,构建了原型芯片,并评估了其对液体XRF分析的适用性以及商业生产的微流体设备的适用性。每个芯片都有一个分析室,当使用移液器填充设备时,该分析室包含大约1μl样品。使用微型XRF和高分辨率单色波长色散X射线荧光评估了芯片的性能,该方法可提供对act系元素的高度选择性和灵敏检测。在这项研究中开发的设备的预期应用是用于测量乏核燃料中的Pu。使用水溶液和合成乏燃料基质来评估设备。 Sr的Kα线能量接近14.2 keV的PuLα线,由于降低了处理风险,因此被用作Pu的替代物。研究了芯片之间和芯片内部的可重复性,以及响应和精度的线性。芯片中用于Sr测定的检测限估计为5 ng /μl(ppm)。这项工作证明了微流体样品制备对XRF进行液体表征的适用性,并为进一步开发这种在各种样品类型中进行元素分析的方法提供了基础。

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