Semistable emulsion assisted dispersive liquid-liquid microextraction for the determination of fungicide residues via HPLC

被引:1
|
作者
Cheng, Xian [1 ]
Lu, Yan-Ju [2 ]
Li, Sheng-Nan [1 ]
Xu, Ya-Zhou [3 ]
Li, Pan-Pan [1 ]
Wang, Jing [1 ]
Xu, Shi-Chao [1 ]
Gu, Yan [1 ]
Bi, Liang-Wu [1 ]
Chen, Yu-Xiang [1 ]
机构
[1] Natl Forestry & Grassland Adm, Inst Chem Ind Forest Prod,CAF, Natl Engn Lab Biomass Chem Utilizat,Key Lab Biomas, Key Lab Chem Engn Forest Prod,Jiangsu Coinnovat Ct, Nanjing 210042, Peoples R China
[2] Nanjing Forestry Univ, Coll Chem Engn, Nanjing 210037, Peoples R China
[3] Jiangxi Agr Univ, Coll Forestry, Nanchang 330045, Peoples R China
基金
中国国家自然科学基金;
关键词
DLLME; Gum Acacia; HPLC; Fungicide residue; Fruit juice; PHASE MICROEXTRACTION; WATER SAMPLES; STABILITY; CHROMATOGRAPHY; EMULSIFIERS; PESTICIDES; PROTEINS;
D O I
10.1016/j.microc.2024.109921
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
Fungicide residues in food can pose serious hazards to humans. The aim of this study was to establish a new method of semistable emulsion assisted dispersive liquid-liquid microextraction (DLLME) for the preconcentration and determination of fungicide residues in juice samples. In this study, Gum Acacia (GA) was selected as the dispersive agent and decanoic acid was adopted as the extractant in aqueous sample. Based on that, a semistable emulsion was induced to facilitate the extraction of target analytes and automatic phase separation. The mechanistic analysis results revealed that the formation of the semistable emulsion was attributed to the mild emulsification of GA with a high molecular weight. Besides, the semistable emulsiont allowed the automatic phase separation in DLLME for the first time. Moreover, the novel method was optimized for detecting fungicide residues and exhibited good linearity (R2 >= 0.995), precision (<= 16.2 %), matrix effect (<= 9.8 %), method recovery (84.0-103.6 %), as well as a low limit of detection (0.5-2.5 mu g center dot L-1) and quantitation (1-5 mu g center dot L-1). In conclusion, this method can be employed to effectively measure fungicide residues in juice samples (orange, grape, carrot and peach). Furthermore, this method can be considered as an effective DLLME alternative for the automatic pretreatment of samples, exhibiting a promising application prospect in food safety.
引用
收藏
页数:9
相关论文
共 50 条
  • [31] A Dispersive Liquid-Liquid Microextraction Method for Determination of Metformin in Plasma
    Samini, Laleh
    Aberoomand Azar, Parviz
    Husain, Syed Waqif
    Jouyban, Abolghasem
    LATIN AMERICAN JOURNAL OF PHARMACY, 2020, 39 (02): : 263 - 268
  • [32] Dispersive Liquid-Liquid Microextraction for Preconcentration and Determination of Nickel in Water
    Lemos, Valfredo A.
    dos Santos Vieira, Emanuel V.
    Silva, Eldevan dos Santos
    dos Santos, Liz O.
    CLEAN-SOIL AIR WATER, 2012, 40 (03) : 268 - 271
  • [33] Utilizing ionic liquid-dispersive liquid-liquid microextraction coupled with HPLC for the determination of anthraquinones in Folium Sennae
    Cai, Yongchao
    Zheng, Nan
    Wang, Yao
    Wu, Yunlong
    Xv, Wenwen
    Jin, Zheng yu
    Xia, Xiaole
    JOURNAL OF FOOD COMPOSITION AND ANALYSIS, 2025, 142
  • [34] Surfactant-Based Ultrasound-Assisted Dispersive Liquid-Liquid Microextraction Determination of Corticosteroids Followed by HPLC-DAD
    Qin, Hui
    Yu, Shaoming
    Hu, Xujia
    Yang, Yaling
    ANALYTICAL LETTERS, 2013, 46 (04) : 589 - 604
  • [35] Determination of Triazole Fungicide Residues in Fruits by QuEChERS Combined with Ionic Liquid-Based Dispersive Liquid-Liquid Microextraction: Optimization Using Response Surface Methodology
    Yaohai Zhang
    Yan Zhang
    Jiyun Nie
    Bining Jiao
    Qiyang Zhao
    Food Analytical Methods, 2016, 9 : 3509 - 3519
  • [36] Salt-assisted liquid-liquid extraction coupled with reversed-phase dispersive liquid-liquid microextraction for sensitive HPLC determination of paraquat in environmental and food samples
    Rashidipour, Marzieh
    Heydari, Rouhollah
    Maleki, Afshin
    Mohammadi, Ebrahim
    Davari, Behroz
    JOURNAL OF FOOD MEASUREMENT AND CHARACTERIZATION, 2019, 13 (01) : 269 - 276
  • [37] Vortex-Assisted Dispersive Liquid-Liquid Microextraction Coupled with Deproteinization for Determination of Nateglinide in Human Plasma Using HPLC/UV
    Hammad, Mohamed A.
    Kamal, Amira H.
    Kannouma, Reham E.
    Mansour, Fotouh R.
    JOURNAL OF CHROMATOGRAPHIC SCIENCE, 2021, 59 (03) : 297 - 304
  • [38] Determination of Triazole Fungicide Residues in Fruits by QuEChERS Combined with Ionic Liquid-Based Dispersive Liquid-Liquid Microextraction: Optimization Using Response Surface Methodology
    Zhang, Yaohai
    Zhang, Yan
    Nie, Jiyun
    Jiao, Bining
    Zhao, Qiyang
    FOOD ANALYTICAL METHODS, 2016, 9 (12) : 3509 - 3519
  • [39] Vortex-assisted dispersive liquid-liquid microextraction trace amounts of melatonin prior to HPLC determination in fruit juice samples
    Afzali, Daryoush
    Azadmehr, Fatemeh
    Torkzadeh, Masoud
    SEPARATION SCIENCE AND TECHNOLOGY, 2016, 51 (09) : 1509 - 1514
  • [40] Dispersive liquid-liquid microextraction of parabens
    Prichodko, Aleksandra
    Sakociute, Vaida
    Vickackaite, Vida
    CHEMIJA, 2010, 21 (2-4): : 112 - 117