Sabarudin Akhmad, Lenghor Narong, Oshima Mitsuko, Hakim Lukman, Takayanagi Toshio, Gao Yun-Hua, Motomizu Shoji
Department of Chemistry, Faculty of Science, Okayama University, Tsushimanaka 3-1-1, Okayama City 700-8530, Japan.
Talanta. 2007 Jul 31;72(5):1609-17. doi: 10.1016/j.talanta.2007.01.024. Epub 2007 Jan 18.
A new chelating resin using chitosan as a base material was synthesized. Functional moiety of 2-amino-5-hydroxy benzoic acid (AHBA) was chemically bonded to the amino group of cross-linked chitosan (CCTS) through the arm of chloromethyloxirane (CCTS-AHBA resin). Several elements, such as Ag, Be, Cd, Co, Cu, Ni, Pb, U, V, and rare earth elements (REEs), could be adsorbed on the resin. To use the resin for on-line pretreatment, the resin was packed in a mini-column and installed into a sequential-injection/automated pretreatment system (Auto-Pret System) coupled with inductively coupled plasma-atomic emission spectrometry (ICP-AES). The sequential-injection/automated pretreatment system was a laboratory-assembled, and the program was written using Visual Basic software. This system can provide easy operation procedures, less reagent consumption, as well as less waste production. Experimental variables considered as effective factors in the improvement sensitivity, such as an eluent concentration, a sample and an eluent flow rate, pH of samples, and air-sandwiched eluent were carefully optimized. The proposed system provides excellent on-line collection efficiency, as well as high concentration factors of analytes in water samples, which results in highly sensitive detection of ultra-trace and trace analysis. Under the optimal conditions, the detection limits of 24 elements examined are in the range from ppt to sub-ppb levels. The proposed method was validated by using the standard reference material of a river water, SLRS-4, and the applicability was further demonstrated to the on-line collection/concentration of trace elements, such as Ag, Be, Cd, Co, Cu, Ni, Pb, U, V, and REEs in water samples.
合成了一种以壳聚糖为基材的新型螯合树脂。2-氨基-5-羟基苯甲酸(AHBA)的功能基团通过氯甲基环氧乙烷臂化学键合到交联壳聚糖(CCTS)的氨基上(CCTS-AHBA树脂)。银、铍、镉、钴、铜、镍、铅、铀、钒等几种元素以及稀土元素(REEs)均可被该树脂吸附。为将该树脂用于在线预处理,将其填充到微型柱中,并安装到与电感耦合等离子体原子发射光谱仪(ICP-AES)联用的顺序注射/自动预处理系统(自动预处理系统)中。顺序注射/自动预处理系统是实验室组装的,程序使用Visual Basic软件编写。该系统操作程序简便,试剂消耗少,废物产生量也少。仔细优化了作为提高灵敏度有效因素的实验变量,如洗脱液浓度、样品和洗脱液流速、样品pH值以及气夹式洗脱液。所提出的系统具有出色的在线收集效率以及水样中分析物的高浓缩倍数,从而实现了超痕量和痕量分析的高灵敏度检测。在最佳条件下,所检测的24种元素的检测限在ppt至亚ppb水平范围内。通过使用河水标准参考物质SLRS-4对所提出的方法进行了验证,并进一步证明了其对水样中银、铍、镉、钴、铜、镍、铅、铀、钒和稀土元素等痕量元素的在线收集/浓缩的适用性。