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采用微泵多通道换向和分光光度检测法测定水中酚类物质:标准方法的自动化替代方案

Determination of phenols in waters using micro-pumped multicommutation and spectrophotometric detection: an automated alternative to the standard procedure.

作者信息

Ródenas-Torralba Eva, Morales-Rubio Angel, de la Guardia Miguel

机构信息

Department of Analytical Chemistry, University of Valencia, 50th Dr. Moliner St., 46100 Burjassot, Valencia, Spain.

出版信息

Anal Bioanal Chem. 2005 Sep;383(1):138-44. doi: 10.1007/s00216-005-3416-9. Epub 2005 Oct 19.

DOI:10.1007/s00216-005-3416-9
PMID:16094533
Abstract

An automated and greener spectrophotometric procedure has been developed for the determination of phenol in water at 700 nm. The method uses the reaction between phenol, sodium nitroprusside, and hydroxylamine hydrochloride in a buffered medium at pH 12.3. The flow manifold comprises four solenoid micro-pumps employed for sample and reagent introduction into the reaction coil and to transport the colored product formed to the detector. The linear dynamic range was 50-3,500 ng mL(-1) (R = 0.99997; n = 6) and the method provided a limit of detection (3sigma) of 13 ng mL(-1). The sampling throughput was estimated to be 65 measurements per hour and the coefficient of variation was 0.5% (n = 10) for a 1.0 microg mL(-1) phenol concentration. Recoveries of 92-105% were obtained for phenol determination in spiked water samples at concentration levels from 50 to 5,000 ng mL(-1). The use of multicommutation reduced the reagent consumption 25-fold, the sample consumption 225-fold, and the waste generation 30-fold compared with the batch procedure. The proposed method is an environmentally friendly alternative to the official 4-aminoantipyrine method since it avoids the use of chloroform.

摘要

已开发出一种自动化且更环保的分光光度法,用于在700nm波长下测定水中的苯酚。该方法利用苯酚、硝普钠和盐酸羟胺在pH 12.3的缓冲介质中的反应。流动注射系统包括四个电磁微型泵,用于将样品和试剂引入反应盘管,并将形成的有色产物输送至检测器。线性动态范围为50 - 3500 ng mL(-1)(R = 0.99997;n = 6),该方法的检测限(3σ)为13 ng mL(-1)。进样通量估计为每小时65次测量,对于1.0 μg mL(-1)的苯酚浓度,变异系数为0.5%(n = 10)。在加标水样中,苯酚浓度水平为50至5000 ng mL(-1)时,回收率为92 - 105%。与分批法相比,多通道进样法使试剂消耗减少了25倍,样品消耗减少了225倍,废物产生减少了30倍。由于避免了使用氯仿,所提出的方法是官方4 - 氨基安替比林法的一种环境友好替代方法。

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