Department of Environmental Engineering Science, Gunma University, 1-5-1 Tenjin-cho, Kiryu Gunma 376-8515, Japan.
Department of Environmental Engineering Science, Gunma University, 1-5-1 Tenjin-cho, Kiryu Gunma 376-8515, Japan.
Talanta. 2016 Feb 1;148:617-25. doi: 10.1016/j.talanta.2015.06.081. Epub 2015 Jul 3.
A dynamic flow-through microcolumn extraction system based on extractant re-circulation is herein proposed as a novel analytical approach for simplification of bioaccessibility tests of trace elements in sediments. On-line metal leaching is undertaken in the format of all injection (AI) analysis, which is a sequel of flow injection analysis, but involving extraction under steady-state conditions. The minimum circulation times and flow rates required to determine the maximum bioaccessible pools of target metals (viz., Cu, Zn, Cd, and Pb) from lake and river sediment samples were estimated using Tessier's sequential extraction scheme and an acid single extraction test. The on-line AIA method was successfully validated by mass balance studies of CRM and real sediment samples. Tessier's test in on-line AI format demonstrated to be carried out by one third of extraction time (6h against more than 17 h by the conventional method), with better analytical precision (<9.2% against >15% by the conventional method) and significant decrease in blank readouts as compared with the manual batch counterpart.
本文提出了一种基于萃取剂再循环的动态流动微柱萃取系统,作为简化沉积物中微量元素生物可给性测试的一种新分析方法。在线金属浸出采用全注入(AI)分析的形式进行,这是流动注射分析的延续,但涉及到在稳态条件下的萃取。使用 Tessier 顺序提取方案和酸单一提取测试,估算了从湖泊和河流沉积物样品中确定目标金属(即 Cu、Zn、Cd 和 Pb)最大生物可利用池所需的最小循环次数和流速。通过对 CRM 和实际沉积物样品的质量平衡研究,对在线 AIA 方法进行了成功验证。在线 AI 格式的 Tessier 测试被证明可以在三分之一的提取时间内完成(在线 AI 格式 6 小时,而传统方法超过 17 小时),与传统方法相比,具有更好的分析精度(<9.2%比传统方法>15%),并且空白读数显著降低。