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Liquid Metering Centrifuge Sticks (LMCS): A Centrifugal Approach to Metering Known Sample Volumes for Colorimetric Solid Phase Extraction (C-SPE)

机译:液体计量离心棒(LMCS):一种用于计量比色固相萃取(C-SPE)的已知样品量的离心方法

摘要

Phase separation is one of the most significant obstacles encountered during the development of analytical methods for water quality monitoring in spacecraft environments. Removing air bubbles from water samples prior to analysis is a routine task on earth; however, in the absence of gravity, this routine task becomes extremely difficult. This paper details the development and initial ground testing of liquid metering centrifuge sticks (LMCS), devices designed to collect and meter a known volume of bubble-free water in microgravity. The LMCS uses centrifugal force to eliminate entrapped air and reproducibly meter liquid sample volumes for analysis with Colorimetric Solid Phase Extraction (C-SPE). C-SPE is a sorption-spectrophotometric platform that is being developed as a potential spacecraft water quality monitoring system. C-SPE utilizes solid phase extraction membranes impregnated with analyte-specific colorimetric reagents to concentrate and complex target analytes in spacecraft water samples. The mass of analyte extracted from the water sample is determined using diffuse reflectance (DR) data collected from the membrane surface and an analyte-specific calibration curve. The analyte concentration can then be calculated from the mass of extracted analyte and the volume of the sample analyzed. Previous flight experiments conducted in microgravity conditions aboard the NASA KC-135 aircraft demonstrated that the inability to collect and meter a known volume of water using a syringe was a limiting factor in the accuracy of C-SPE measurements. Herein, results obtained from ground based C-SPE experiments using ionic silver as a test analyte and either the LMCS or syringes for sample metering are compared to evaluate the performance of the LMCS. These results indicate very good agreement between the two sample metering methods and clearly illustrate the potential of utilizing centrifugal forces to achieve phase separation and metering of water samples in microgravity.
机译:在航天器环境中水质监测分析方法的开发过程中,相分离是遇到的最大障碍之一。在分析之前,从水样中去除气泡是地球上的一项常规任务。然而,在没有重力的情况下,这一例行任务变得极为困难。本文详细介绍了液体计量离心棒(LMCS)的开发和初步地面测试,该设备旨在收集和计量已知量的微重力无气泡水。 LMCS利用离心力消除残留的空气,并以比色固相萃取(C-SPE)可重复地测量液体样品体积,以进行分析。 C-SPE是一种吸附分光光度法平台,正在开发为潜在的航天器水质监测系统。 C-SPE利用浸有特定于分析物的比色试剂的固相萃取膜来浓缩和复杂化航天器水样品中的目标分析物。使用从膜表面收集的漫反射率(DR)数据和特定于分析物的校准曲线确定从水样中提取的分析物的质量。然后可以从提取的分析物的质量和分析的样品的体积中计算出分析物的浓度。先前在NASA KC-135飞机上在微重力条件下进行的飞行实验表明,无法使用注射器收集和计量已知量的水是C-SPE测量精度的限制因素。本文中,比较了使用离子银作为测试分析物和LMCS或用于样品计量的注射器从基于地面的C-SPE实验获得的结果,以评估LMCS的性能。这些结果表明两种样品计量方法之间具有很好的一致性,并清楚地说明了利用离心力实现微重力下水样品的相分离和计量的潜力。

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