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分光光度法测定钒及其在工业、环境、生物和土壤样品中的应用。

Spectrophotometric method for determination of vanadium and its application to industrial, environmental, biological and soil samples.

作者信息

Ahmed M J, Banoo S

机构信息

Laboratory of Analytical Chemistry, Department of Chemistry, University of Chittagong, Chittagong, Bangladesh.

出版信息

Talanta. 1999 May;48(5):1085-94. doi: 10.1016/s0039-9140(98)00329-4.

Abstract

The very sensitive, fairly selective direct spectrophotometric method for the determination of trace amount of vanadium (V) with 1,5-diphenylcarbohydrazide (1,5-diphenylcarbazide) has been developed. 1,5-diphenylcarbohydrazide (DPCH) reacts in slightly acidic (0.0001-0.001 M H(2)SO(4) or pH 4.0-5.5) 50% acetonic media with vanadium (V) to give a red-violet chelate which has an absorption maximum at 531 nm. The average molar absorption coefficient and Sandell's sensitivity were found to be 4.23 x 10(4) l mol(-1) cm(-1) and 10 ng cm(-2) of V(v), respectively. Linear calibration graph were obtained for 0.1-30 microg ml(-1) of V(v): the stoichiometric composition of the chelate is 1:3 (V: DPCH). The reaction is instantaneous and absorbance remain stable for 48 h. The interference from over 50 cations, anions and complexing agents has been studied at 1 microg ml(-1) of V(v). The method was successfully used in the determination of vanadium in several standard reference materials (alloys and steels), environmental waters (potable and polluted), biological samples (human blood and urine), soil samples, solution containing both vanadium (V) and vanadium (IV) and complex synthetic mixtures. The method has high precision and accuracy (s=+/-0.01 for 0.5 microg ml(-1)).

摘要

已开发出一种非常灵敏、选择性相当好的直接分光光度法,用于用1,5 - 二苯甲酰肼(1,5 - 二苯卡巴肼)测定痕量钒(V)。1,5 - 二苯甲酰肼(DPCH)在微酸性(0.0001 - 0.001 M硫酸或pH 4.0 - 5.5)的50%丙酮介质中与钒(V)反应,生成一种红紫色螯合物,其在531 nm处有最大吸收。平均摩尔吸收系数和桑德尔灵敏度分别为4.23×10⁴ l mol⁻¹ cm⁻¹和10 ng cm⁻²的V(v)。对于0.1 - 30 μg ml⁻¹的V(v)获得了线性校准曲线:螯合物的化学计量组成为1:3(V:DPCH)。反应瞬间完成,吸光度在48小时内保持稳定。在1 μg ml⁻¹的V(v)下研究了50多种阳离子、阴离子和络合剂的干扰。该方法已成功用于测定多种标准参考物质(合金和钢)、环境水(饮用水和污染水)、生物样品(人体血液和尿液)、土壤样品、同时含有钒(V)和钒(IV)的溶液以及复杂合成混合物中的钒。该方法具有高精确度和准确度(对于0.5 μg ml⁻¹,s = ±0.01)。

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