Sini Karima, Idouhar Madjid, Ahmia Aida-Cherifa, Ferradj Abdelhak, Tazerouti Ammal
ICSM, Institut de Chimie Séparative de Marcoule UMR 5257, CEA, CNRS, ENSCM, UM, Bat 426, BP 17171, 30207, Bagnols-sur-Cèze Cedex, France.
Laboratory of Applied Organic Chemistry, Faculty of Chemistry, University of Sciences and Technology Houari Boumediene (USTHB), BP 32, El Alia, Bab Ezzouar, 16111, Algiers, Algeria.
Environ Monit Assess. 2017 Nov 23;189(12):646. doi: 10.1007/s10661-017-6359-7.
A simple analytical method for quantitative determination of an anionic surfactant in aqueous solutions without liquid-liquid extraction is described. The method is based on the formation of a green-colored ion associate between sodium dodecylbenzenesulfonate (SDBS) and cationic dye, Brilliant Green (BG) in acidic medium. Spectral changes of the dye by addition of SDBS are studied by visible spectrophotometry at maximum wave length of 627 nm. The interactions and micellar properties of SDBS and cationic dye are also investigated using surface tension method. The pH, the molar ratio ([BG]/[SDBS]), and the shaking time of the solutions are considered as the main parameters which affect the formation of the ion pair. Determination of AS in distilled water gives a significant detection limit up to 3 × 10 M. The response surface methodology (RSM) is applied to study the absorbance. A Box-Behnken is a model designed to the establishment of responses given by parameters with great probability. This model is set up by using the three main parameters at three levels. Analysis of variance shows that only two parameters affect the absorbance of the ion pair. The statistical results obtained are interesting and give us real possibility to reach optimum conditions for the formation of the ion pair. As the proposed method is free from interferences from major constituents of water, it has been successfully applied to the determination of anionic surfactant contents in wastewaters samples collected from Algiers bay.
描述了一种无需液-液萃取即可定量测定水溶液中阴离子表面活性剂的简单分析方法。该方法基于在酸性介质中十二烷基苯磺酸钠(SDBS)与阳离子染料灿烂绿(BG)形成绿色离子缔合物。通过可见分光光度法在627 nm的最大波长下研究了添加SDBS后染料的光谱变化。还使用表面张力法研究了SDBS与阳离子染料的相互作用和胶束性质。溶液的pH值、摩尔比([BG]/[SDBS])和振荡时间被视为影响离子对形成的主要参数。在蒸馏水中测定阴离子表面活性剂的检测限高达3×10⁻⁶ M。应用响应面法(RSM)研究吸光度。Box-Behnken模型旨在以高概率建立由参数给出的响应。该模型通过使用三个水平的三个主要参数建立。方差分析表明只有两个参数影响离子对的吸光度。获得的统计结果很有趣,为我们提供了实现离子对形成最佳条件的实际可能性。由于所提出的方法不受水中主要成分的干扰,已成功应用于测定从阿尔及尔湾采集的废水样品中的阴离子表面活性剂含量。