Metal applications of liquid-phase microextraction

被引:49
作者
Angel Aguirre, Miguel [1 ]
Baile, Paola
Vidal, Lorena [1 ]
Canals, Antonio
机构
[1] Univ Alicante, Dept Analyt Chem & Food Sci, Fac Sci, POB 99, E-03080 Alicante, Spain
关键词
Sample preparation; Preconcentration; Liquid-phase microextraction; Single drop microextraction; Hollow fiber liquid-phase microextraction; Dispersive liquid-liquid microextraction; Trace element analysis; Elemental detectors; ATOMIC-ABSORPTION-SPECTROMETRY; INDUCED BREAKDOWN SPECTROMETRY; DROP MICROEXTRACTION; IONIC LIQUIDS; ULTRA-TRACE; EXTRACTION; CADMIUM; SOLVENT; SAMPLES; SYSTEM;
D O I
10.1016/j.trac.2018.11.032
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
This review focuses on the combination of elemental detection techniques with liquid-phase microextraction (LPME), namely, single drop microextraction, hollow fiber based liquid-phase microextraction, dispersive liquid-liquid microextraction, and related techniques. General features of different microextraction procedures, historical overview and automation of LPME are described and compared, along with examples of new developments and applications presented to demonstrate its potential for trace and ultra-trace metal analysis. Furthermore, potential applications and an outlook on the combination of LPME and elemental detection techniques for inorganic analysis are presented. (C) 2018 Elsevier B.V. All rights reserved.
引用
收藏
页码:241 / 247
页数:7
相关论文
共 47 条
[21]  
Gaubeur I, 2015, J ANAL ATOM SPECTROM, V30, P2541, DOI [10.1039/c5ja00325c, 10.1039/C5JA00325C]
[22]   Developments in hollow fiber based liquid-phase microextraction: principles and applications [J].
Ghambarian, Mahnaz ;
Yamini, Yadollah ;
Esrafili, Ali .
MICROCHIMICA ACTA, 2012, 177 (3-4) :271-294
[23]   An automatic stirring-assisted liquid-liquid microextraction system based on lab-in-syringe platform for on-line atomic spectrometric determination of trace metals [J].
Giakisikli, Georgia ;
Anthemidis, Aristidis N. .
TALANTA, 2017, 166 :364-368
[24]   Automatic determination of copper by in-syringe dispersive liquid-liquid microextraction of its bathocuproine-complex using long path-length spectrophotometric detection [J].
Horstkotte, Burkhard ;
Alexovic, Michal ;
Maya, Fernando ;
Duarte, Carlos M. ;
Andruch, Vasil ;
Cerda, Victor .
TALANTA, 2012, 99 :349-356
[25]   Supramolecular-based dispersive liquid-liquid microextraction: determination of cadmium in water and vegetable samples [J].
Jafarvand, Sanaz ;
Shemirani, Farzaneh .
ANALYTICAL METHODS, 2011, 3 (07) :1552-1559
[26]   Supramolecular-based dispersive liquid-liquid microextraction: A novel sample preparation technique for determination of inorganic species [J].
Jafarvand, Sanaz ;
Shemirani, Farzaneh .
MICROCHIMICA ACTA, 2011, 173 (3-4) :353-359
[27]   Dispersive liquid-liquid microextraction combined with graphite furnace atomic absorption spectrometry - Ultra trace determination of cadmium in water samples [J].
Jahromi, Elham Zeini ;
Bidari, Araz ;
Assadi, Yaghoub ;
Hosseini, Mohammad Reza Milani ;
Jamali, Mohammad Reza .
ANALYTICA CHIMICA ACTA, 2007, 585 (02) :305-311
[28]   Deep eutectic liquid organic salt as a new solvent for liquid-phase microextraction and its application in ligandless extraction and pre-concentraion of lead and cadmium in edible oils [J].
Karimi, Mehdi ;
Dadfarnia, Shayessteh ;
Shabani, Ali Mohammad Haji ;
Tamaddon, Fatemeh ;
Azadi, Davood .
TALANTA, 2015, 144 :648-654
[29]   Advances in solvent-microextraction techniques [J].
Kokosa, John M. .
TRAC-TRENDS IN ANALYTICAL CHEMISTRY, 2013, 43 :2-13
[30]   Screening the extractability of some typical environmental pollutants by ionic liquids in liquid-phase microextraction [J].
Liu, JF ;
Chi, YG ;
Jiang, GB .
JOURNAL OF SEPARATION SCIENCE, 2005, 28 (01) :87-91