HKUST-1 metal-organic framework for dispersive solid phase extraction of 2-methyl-4-chlorophenoxyacetic acid (MCPA) prior to its determination by ion mobility spectrometry

被引:20
|
作者
Mohammadnejad, Masoumeh [1 ]
Gudarzi, Zahra [1 ]
Geranmayeh, Shokoofeh [1 ]
Mahdavi, Vahideh [2 ]
机构
[1] Alzahra Univ, Dept Chem, POB 1993891176, Tehran, Iran
[2] Iranian Res Inst Plant Protect, Pesticide Res Dept, POB 1475744741, Tehran, Iran
关键词
2-Methyl-4-chlorophenoxyacetic acid; MCPA; Ion mobility spectrometry; Metal organic framework; MOF; Dispersive solid phase extraction; Central composite design; Porous material; Water analysis; Agriculture products; MOLECULAR IMPRINTED POLYMER; TANDEM MASS-SPECTROMETRY; RHONE RIVER DELTA; LIQUID-CHROMATOGRAPHY; VEGETABLE SAMPLES; WATER; PESTICIDES; HERBICIDES; DISSIPATION; PRECONCENTRATION;
D O I
10.1007/s00604-018-3014-0
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
The authors describe a method for the extraction of the herbicide 2-methyl-4-chlorophenoxyacetic acid (MCPA) from agricultural products. The metal organic framework (MOF) HKUST-1 (acopper(II) benzene-1,3,5-tricarboxylate) was used as a sorbent for efficient clean-up and preconcentration of MCPA. The effects of pH value, stirring time, amount of sorbent on extraction were optimized by central composite design. Ultrasonic waves were used for desorption procedure and its advantage was demonstrated for an increase in extraction recovery. Corona discharge ion mobility spectrometry (IMS) was then applied for fast and sensitive determination of MCPA. The method was validated in terms of sensitivity, recovery and reproducibility. Under the optimum conditions the calibration plot is linear between 0.035-0.200 mu g. L-1. The detection limit is 10 ng L-1, with relative standard deviations of <5%. Real samples (water, soil and agricultural product) were spiked and then analyzed by this method, and the results revealed efficient solid phase extraction and recovery.
引用
收藏
页数:8
相关论文
共 50 条
  • [31] UiO-66-based metal-organic framework for dispersive solid-phase extraction of vanillylmandelic acid from urine before analysis by capillary electrophoresis
    Hassanpour-Sabet, Roghayeh
    Seyfinejad, Behruoz
    Khosrowshahi, Elnaz Marzi
    Nemati, Mahboob
    Mogaddam, Mohammad Reza Afshar
    Jouyban, Abolghasem
    RSC ADVANCES, 2022, 12 (44) : 28728 - 28737
  • [32] Determination of Bongkrekic Acid in Food by Dispersive Solid Phase Extraction-High Performance Liquid Chromatography-Tandem Mass Spectrometry Using Nitro Modified Zirconium Metal Organic Framework
    Fang, Lan-Yun
    Jiang, Yan-Hua
    Li, Ji-Ge
    Qiu, Qiao-Li
    Jin, Mi-Cong
    Zhang, Dan-Dan
    Zhang, Yu-Mei
    CHINESE JOURNAL OF ANALYTICAL CHEMISTRY, 2023, 51 (06) : 1024 - 1032
  • [33] Zriv metal-organic framework based on terephthalic acid and 1,10-phenanthroline as an adsorbent for solid phase extraction of tetracycline antibiotics
    Kharissova, Oxana V.
    Zhinzhilo, Vladimir A.
    Bryantseva, Julia D.
    Uflyand, Igor E.
    Kharisov, Boris I.
    MENDELEEV COMMUNICATIONS, 2022, 32 (05) : 661 - 663
  • [34] Determination of chlorophenoxy acid herbicides by using a zirconium-based metal-organic framework as special sorbent for dispersive micro-solid-phase extraction and high-performance liquid chromatography
    Xia, Lian
    Liu, Lijie
    Xu, Xianli
    Zhu, Fenfen
    Wang, Xiuli
    Zhang, Keyun
    Yang, Xuncheng
    You, Jinmao
    NEW JOURNAL OF CHEMISTRY, 2017, 41 (06) : 2241 - 2248
  • [35] Dispersive solid-phase extraction of buprenorphine from biological fluids using metal-organic frameworks and its determination by ultra-performance liquid chromatography
    Mohammadi, Farzaneh
    Shabani, Ali Mohammad Haji
    Dadfarnia, Shayessteh
    Ansari, Mehdi
    Asgharinezhad, Ali Akbar
    JOURNAL OF SEPARATION SCIENCE, 2020, 43 (15) : 3045 - 3052
  • [36] Moisture-sensitive metal-organic framework constructed from cobalt and 4-(4-pyridyl) benzoic acid for dispersive solid-phase extraction of polycyclic aromatic hydrocarbons in apple
    Peng, Fan
    Tan, Yuyan
    Zhang, Shanshan
    Yu, Xiaofang
    Chen, Huaixia
    Dang, Xueping
    Liu, Xiaolan
    JOURNAL OF SEPARATION SCIENCE, 2021, 44 (08) : 1706 - 1715
  • [37] Determination of seven phenoxy carboxylic acid herbicides in water using dispersive solid phase extraction coupled with ultra-high performance liquid chromatography-tandem mass spectrometry based on metal-organic framework composite aerogel
    Zhang, Xin
    Wu, Gege
    Cui, Wenlian
    Li, Shuang
    Ma, Jiping
    CHINESE JOURNAL OF CHROMATOGRAPHY, 2024, 42 (11) : 1042 - 1051
  • [38] Dispersive Miniaturized Solid-Phase Extraction Using the CIM-81 Metal-Organic Framework and Gas Chromatography-Mass Spectrometry to Determine Personal Care Products in Waters
    Gonzalez-Hernandez, Providencia
    Lago, Ana B.
    Pasan, Jorge
    Ayala, Juan H.
    Afonso, Ana M.
    Pino, Veronica
    LC GC NORTH AMERICA, 2019, 37 (04) : 8 - 15
  • [39] Determination of five nonsteroidal anti-inflammatory drugs in water by dispersive solid phase extraction-ultra performance liquid chromatography-tandem mass spectrometry based on metal-organic framework composite aerogel
    Ling Huijuan
    Wu Gege
    Li Shuang
    Zhou Qian
    Li Chunxin
    Ma Jiping
    CHINESE JOURNAL OF CHROMATOGRAPHY, 2022, 40 (04) : 323 - 332
  • [40] Determination of color additive tartrazine (E 102) in food samples after dispersive solid phase extraction with a zirconium-based metal-organic framework (UiO-66(Zr)-(COOH)2)
    Oymak, Tulay
    Tokalioglu, Serife
    Cam, Safak
    Demir, Selcuk
    FOOD ADDITIVES AND CONTAMINANTS PART A-CHEMISTRY ANALYSIS CONTROL EXPOSURE & RISK ASSESSMENT, 2020, 37 (05): : 731 - 741