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首页> 外文期刊>Analytical chemistry >3D-Printed Column with Porous Monolithic Packing for Online Solid-Phase Extraction of Multiple Trace Metals in Environmental Water Samples
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3D-Printed Column with Porous Monolithic Packing for Online Solid-Phase Extraction of Multiple Trace Metals in Environmental Water Samples

机译:3D印刷柱,具有多孔整体包装,用于在环境水样中的多迹金属的在线固相提取

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摘要

In this study, we used a multimaterial three-dimensional printing (3DP) technology and porous composite filaments (Lay-Fomm, Gel-Lay, and Lay-Felt) to fabricate solid phase extraction (SPE) columns for the enhanced extraction of multiple metal ions. When employed as sample pretreatment devices in an automatic flow injection analysis/inductively coupled plasma mass spectrometry (ICP-MS) system, these 3D-printed SPE columns performed the near-complete extractions of Mn, Co, Ni, Cu, Zn, Cd, and Pb ions from natural water samples prior to ICP-MS determination. After optimizing the column fabrication, the extraction conditions, and the automatic analysis system, the column packed with the porous composite Lay-Fomm 40 was found to provide the highest extraction performance-the extraction efficiencies of the listed metal ions were all greater than 99.2%, and the detection limits of the method ranged from 0.3 to 6.7 ng L-1. The detection of these metal ions in several reference materials (CASS-4, SLEW-3, 1640a, and 1643f) validated the reliability of this method; spike analyses of collected water samples (groundwater, river water, and seawater) demonstrated the applicability of the method. The nature of the printing materials enhanced the analytical performance of 3D-printed sample pretreatment devices. Such approaches will be useful to diversify the range of sample preparation schemes and analytical methods enabled by 3DP technologies.
机译:在这项研究中,我们使用了多维三维印刷(3DP)技术和多孔复合丝(Lay-FOMM,凝胶和毡),用于制造用于增强多金属的提取的固相萃取(SPE)柱离子。当用作自动流喷液/电感耦合等离子体质谱(ICP-MS)系统中的样品预处理装置时,这些3D印刷SPE柱进行了Mn,Co,Ni,Cu,Zn,Cd的近完整提取物,在ICP-MS测定之前,来自天然水样的PB离子。优化柱制造后,萃取条件和自动分析系统,发现用多孔复合物除欧40包装的柱提供最高的提取性能 - 所列金属离子的提取效率均大于99.2%并且该方法的检测限范率范围为0.3至6.7ng L-1。在几种参考材料(CASS-4,SLOW-3,1640a和1643f)中检测这些金属离子验证了该方法的可靠性;收集水样(地下水,河水和海水)的尖峰分析证明了该方法的适用性。印刷材料的性质增强了3D印刷样品预处理装置的分析性能。这种方法将有助于多样化3DP技术支持的样品制备方案和分析方法的范围。

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