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通过原位吸附剂形成进行微相吸附剂萃取用于痕量分析:应用于环境水中亚硝酸盐的分光光度测定

Micro-phase sorbent extraction for trace analysis via in situ sorbent formation: application to the spectrophotometric determination of nitrite in environmental waters.

作者信息

Hata Noriko, Kawashima Misaki, Kasahara Issei, Taguchi Shigeru

机构信息

Department of Environmental Biology and Chemistry, Faculty of Science, Toyama University, Gofuku 3190, Toyama 930-8555, Japan.

出版信息

Anal Sci. 2003 Feb;19(2):239-43. doi: 10.2116/analsci.19.239.

Abstract

A micro-phase sorbent in situ formation from an aqueous solution was proposed for the sensitive spectrophotometric determination of nitrite in environmental waters. Nitrite in a 10 mL sample solution was converted into a cationic azo dye by the reaction with 4-trifluoromethylanilinium ion and N-1-naphthylethylenediammonium ion in an acidic medium. Addition of dodecylbenzenesulfonate ion caused the formation of a suspension of ion associate in the solution. Centrifugation of the solution led to the isolation of a liquid organic phase that extracted the azo dye at the bottom of the centrifuge tube. The volume of the new phase was ca. 5 microL. After the aqueous phase was discarded, the organic phase was dissolved with 1 mL of 2-methoxyethanol to measure the absorbance. Nitrogen as NO2- at concentrations from 1.5 to 30 microg L(-1) was determined with sufficient precision. When 0.2 mL of 2-methoxyethanol was applied to dissolve the organic phase, 0.3-4.8 microg NO2--N L(-1) was determined. The recovery tests for nitrite added to some river water and seawater were satisfactory. This method is very simple and rapid. It takes only 30 min from the dye formation to the measurement of the absorbance.

摘要

提出了一种从水溶液中原位形成微相吸附剂的方法,用于灵敏分光光度法测定环境水样中的亚硝酸盐。在酸性介质中,10 mL样品溶液中的亚硝酸盐通过与4-三氟甲基苯胺离子和N-1-萘基乙二铵离子反应转化为阳离子偶氮染料。加入十二烷基苯磺酸根离子导致溶液中形成离子缔合物悬浮液。对溶液进行离心分离,得到在离心管底部萃取偶氮染料的液态有机相。新相的体积约为5 μL。弃去水相后,将有机相用1 mL 2-甲氧基乙醇溶解以测量吸光度。以足够的精密度测定了浓度为1.5至30 μg L(-1)的以NO2-形式存在的氮。当用0.2 mL 2-甲氧基乙醇溶解有机相时,测定了0.3 - 4.8 μg NO2--N L(-1)。对添加到一些河水和海水中的亚硝酸盐进行的回收率测试结果令人满意。该方法非常简单快速。从形成染料到测量吸光度仅需30分钟。

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