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流动注射法结合 N-邻香草醛-2-氨基对甲酚络合后荧光光谱检测法测定铝:应用于天然水分析

Flow injection determination of aluminium by spectrofluorimetric detection after complexation with N-o-vanillidine-2-amino-p-cresol: the application to natural waters.

作者信息

Kara Derya, Fisher Andrew, Hill Steve J

机构信息

Department of Chemistry, Art and Science Faculty, Balikesir University, 10100 Balikesir, Turkey.

出版信息

Anal Chim Acta. 2008 Mar 17;611(1):62-7. doi: 10.1016/j.aca.2008.01.044. Epub 2008 Jan 25.

DOI:10.1016/j.aca.2008.01.044
PMID:18298968
Abstract

An on-line flow injection spectrofluorimetric method for the direct determination of aluminium in water samples is described. The method is based on the reaction of aluminium with N-o-vanillidine-2-amino-p-cresol (OVAC) in acidic medium at pH 4.0 to form a water-soluble complex. The excitation and emission wavelengths were 423.0 and 553.0nm, respectively, at which the OVAC-Al complex gave the maximum fluorescence intensity at pH 4.0 in a 50% methanol-50% water medium at 50 degrees C. An interference from fluoride ions was minimised by the addition of Be(2+). Other ions were found not to interfere at the concentrations likely to be found in natural waters. The proposed methods were validated in terms of linearity, repeatability, detection limit, accuracy and selectivity. Under these conditions, the calibration was linear up to 1000microgL(-1) (r=0.999). The limit of detection (3sigma) for the determination of Al(III) was 0.057microgL(-1) and the precision for multiple determinations of 3ngmL(-1) Al(III) prepared in ultra-pure water was found to be 0.62% (n=10). The Schiff base ligand could be used to determine ultra-trace aluminium from natural waters. Analysis of environmental certified reference materials showed good agreement with the certified values. The procedure was found to be equally applicable to both freshwater and saline solutions, including seawater.

摘要

本文描述了一种用于直接测定水样中铝的在线流动注射荧光光谱法。该方法基于铝与N-邻香草醛基-2-氨基对甲酚(OVAC)在pH 4.0的酸性介质中反应形成水溶性络合物。激发波长和发射波长分别为423.0nm和553.0nm,在50℃的50%甲醇-50%水介质中,OVAC-铝络合物在pH 4.0时给出最大荧光强度。通过加入Be(2+)可使氟离子的干扰降至最低。发现其他离子在天然水中可能存在的浓度下不会产生干扰。从线性、重复性、检测限、准确度和选择性方面对所提出的方法进行了验证。在这些条件下,校准曲线在高达1000μg L(-1)范围内呈线性(r = 0.999)。测定Al(III)的检测限(3σ)为0.057μg L(-1),对超纯水中制备的3ng mL(-1) Al(III)进行多次测定的精密度为0.62%(n = 10)。席夫碱配体可用于测定天然水中的超痕量铝。环境标准参考物质的分析结果与认证值吻合良好。该方法同样适用于淡水和盐溶液,包括海水。

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