Pérez-Serradilla J A, Luque de Castro M D
Department of Analytical Chemistry, University of Córdoba, Annex Marie Curie Building, Campus of Rabanales, 14071 Córdoba, Spain.
Anal Bioanal Chem. 2007 Nov;389(5):1541-7. doi: 10.1007/s00216-007-1539-x. Epub 2007 Sep 11.
Sorbent material packed in a PTFE laboratory-made flow cell located in the specimen holder of an energy-dispersive X-ray fluorescence (EDXRF) detector has been used for in situ solid-phase extraction (SPE) preconcentration-detection of metals. The flow cell was connected to a single-channel flow-injection (FI) manifold (for full automation of the steps and proper development of the method) by two PTFE tubes of 0.5-mm inner diameter introduced into the spectrometer specimen holder by a small orifice without distortion or modification of the instrument. The optical window open in the PTFE flow cell was adjusted to the X-ray irradiation zone of the spectrometer and fixed to it. The approach was tested by using both Pb and Cd aqueous solutions and a Dowex 50 cation-exchange resin as a sorbent, and flushing the sample through the flow cell for EDXRF measurements after removal of the sample matrix. The limits of detection and the limits of quantification (LOQs) thus obtained were 0.15 and 0.5 microg for Pb and 0.3 and 0.8 microg for Cd, respectively, values that allow the approach to be used for the analysis of drinking water by injecting a 100-mL sample into the FI manifold, taking into account the EC drinking water directives. The linear dynamic ranges are between the LOQ and 600 microg for both analytes. The method was validated by the standard addition method using tap-water samples. In addition, the integrated SPE-EDXRF approach enables the study of the variables influencing the sorption step-namely the effects of the volume of sample flushed through the column, concentrations of the analytes in the sample, breakthrough volume of the resin, elution profiles, sample pH and retention and elution flow rates-in an automatic, cheap, fast and precise way.
填充在聚四氟乙烯(PTFE)自制流动池中的吸附材料,该流动池位于能量色散X射线荧光(EDXRF)探测器的样品架内,已用于金属的原位固相萃取(SPE)预浓缩检测。流动池通过两根内径为0.5毫米的聚四氟乙烯管连接到单通道流动注射(FI)歧管(用于步骤的完全自动化和方法的适当开发),这两根管通过一个小孔引入光谱仪样品架,而不会对仪器造成变形或修改。聚四氟乙烯流动池中打开的光学窗口调整到光谱仪的X射线照射区并固定在其上。该方法通过使用铅和镉水溶液以及Dowex 50阳离子交换树脂作为吸附剂进行测试,并在去除样品基质后将样品冲洗通过流动池进行EDXRF测量。由此获得的检测限和定量限(LOQ)分别为铅0.15微克和0.5微克,镉0.3微克和0.8微克,考虑到欧盟饮用水指令,这些值使得该方法可通过将100毫升样品注入FI歧管用于饮用水分析。两种分析物的线性动态范围均在定量限和600微克之间。该方法通过使用自来水样品的标准加入法进行验证。此外,集成的SPE-EDXRF方法能够以自动、廉价、快速和精确的方式研究影响吸附步骤的变量,即通过柱冲洗的样品体积、样品中分析物的浓度、树脂的穿透体积、洗脱曲线、样品pH值以及保留和洗脱流速的影响。