首页> 外文期刊>International Research Journal of Pure and Applied Chemistry >Two-Steps Cloud Point Extraction-Spectrophotomtric Method for Separation, Preconcentrationand Determination of V (IV) and V (V)Ions in Real Samples Using Laboratory-MadeOrganic Reagents
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Two-Steps Cloud Point Extraction-Spectrophotomtric Method for Separation, Preconcentrationand Determination of V (IV) and V (V)Ions in Real Samples Using Laboratory-MadeOrganic Reagents

机译:两步浊点萃取-分光光度法使用实验室制造的有机试剂分离,富集和测定实际样品中的V(IV)和V(V)离子

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Aims: To establish a new analytical method for the extraction and pre-concentration of V (IV) and V (V) species in real samples by cloud point extraction (CPE) coupled with spectrophotometry using two newly laboratory-made chelating reagents.Study Design: All factors affecting the extraction and determination of V (IV) and V (V) ions using micelle-mediation extraction were executed via a classical optimization. In addition the interferences study is also considered.Place and Duration of Study: Department of Chemistry, College of Science for Women, University of Baghdad, Baghdad, Iraq in cooperation with Department of Chemistry, College of Science, University of Al-Qadisiya, Diwanya, Al-Qadisiya, Iraq between April 2014 and November 2014.Methodology: The approach is based on sequential separation of two vanadium species in the same solution. First, the complexation of vanadium (IV) with 2-[(Benzo imidazolyl) azo]-4-benzyl phenol (BIABP) at pH 3.0 and then extracted into micelle phase. Second, the vanadium (V) remaining in aqueous phase after the separation of (IV) is complexed with 2-[2-(5-Nitro thiazolyl) azo]-8 hydroxyquinoline (5-NTA8HQ) and H2O2 in acidic medium to form a ternary complex (V(V)-H2O2-NTA8HQ) which being re-extracted into micelle phase of Triton X-114. The extracted complexes in cloud point layer are dissolved in a minimum amount of ethanolic 0.1 M HNO3, then V (IV) and V (V) are determined spectrophotometrically at their respective absorption maxima. The proposed method was applied to the estimation of the two vanadium species in various real samples with satisfactory results where the method detection limit in these matrices was of 0.120 and 0.037 μg g-1 for V (IV) and V (V) respectively. Results: At established optimized conditions, a 159 and 99 fold enrichment factors and linear range of 10-100 and 1-70 ng mL-1, leading the limits of detection of 1.78 and 0.75 ng mL-1 for V (IV) and V (V) ions respectively to be achieved in aqueous solution. The average percent recovery of 98.3±0.7 and 97.6±0.4 and a precision (RSD%, n=8) of 0.67% and 0.46%, at 40 and 30 ng mL-1 for V (IV) and V (V) are obtained.Conclusion: The described method is sensitive, easy to apply and interferences-free and in that way the determination of vanadium species in different samples was easily achieved. The results of the established method were compared statistically with ETA-AAS using t-paired test showing no significant difference at 95% confidence interval and the proposed method gave comparable analytical figures of merit compared with other sophisticated techniques.
机译:目的:建立一种新的分析方法,通过浊点萃取(CPE)结合分光光度法使用两种新的实验室制得的螯合剂对真实样品中的V(IV)和V(V)物种进行萃取和预富集。研究设计:所有影响通过胶束介导萃取和测定V(IV)和V(V)离子的因素均通过经典优化执行。此外,还考虑了干扰研究。研究的地点和期限:伊拉克巴格达大学女科学学院化学系与伊拉克卡迪亚大学迪瓦尼亚大学理学院化学系合作(2014年4月至2014年11月)。方法:该方法基于在同一溶液中顺序分离两种钒的方法。首先,钒(IV)与2-[((苯并咪唑基)偶氮] -4-苄基苯酚(BIABP))的pH 3.0络合,然后萃取到胶束相中。其次,分离(IV)后残留在水相中的钒(V)与2- [2-(5-硝基噻唑基)偶氮] -8羟基喹啉(5-NTA8HQ)和H2O2在酸性介质中络合三元复合物(V(V)-H2O2-NTA8HQ),将其重新提取为Triton X-114的胶束相。将提取的浊点层中的络合物溶于最少量的0.1 M HNO3乙醇溶液中,然后以分光光度法在各自的吸收最大值处测定V(IV)和V(V)。所提出的方法用于各种实际样品中两种钒的估计,结果令人满意,其中这些基质中的V(IV)和V(V)的方法检出限分别为0.120和0.037μgg-1。结果:在确定的优化条件下,富集因子为159和99倍,线性范围为10-100和1-70 ng mL-1,从而导致V(IV)和V的检出限为1.78和0.75 ng mL-1 (V)离子分别在水溶液中获得。 V(IV)和V(V)在40和30 ng mL-1下的平均回收率分别为98.3±0.7和97.6±0.4,精密度(RSD %,n = 8)为0.67 %和0.46 %结论:所描述的方法灵敏,易于应用且无干扰,因此可轻松实现不同样品中钒种类的测定。建立的方法的结果与ETA-AAS进行了统计比较,采用t配对检验,在95%的置信区间内无显着差异,并且与其他复杂技术相比,所提出的方法具有可比的品质因数。

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