651
Views
44
CrossRef citations to date
0
Altmetric
Original Articles

Combination of QuEChERS and DLLME for GC-MS determination of pesticide residues in orange samples

, &
Pages 286-297 | Received 15 Aug 2012, Accepted 28 Sep 2012, Published online: 23 Oct 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (5)

Wen-Shuai Si, Shou-Ying Wang, Yao-Dan Zhang, Cong Kong & Bing Bai. (2021) Pesticides and risk assessment in Shanghai fruit and raw eaten vegetables. Food Additives & Contaminants: Part B 14:4, pages 245-255.
Read now
Friederike Habedank, Marion Abraham, Helmar Tardel, Frerk Feldhusen & Detlef E. Schulz-Bull. (2017) Determination of organophosphate pesticides in sea and surface water with ultrasound-assisted dispersive liquid–liquid micro-extraction coupled to GC-MS/MS analysis. International Journal of Environmental Analytical Chemistry 97:9, pages 819-830.
Read now
Natalia Campillo, Pilar Viñas, Jana Šandrejová & Vasil Andruch. (2017) Ten years of dispersive liquid–liquid microextraction and derived techniques. Applied Spectroscopy Reviews 52:4, pages 267-415.
Read now
Mária Andraščíková, Eva Matisová & Svetlana Hrouzková. (2015) Liquid Phase Microextraction Techniques as a Sample Preparation Step for Analysis of Pesticide Residues in Food. Separation & Purification Reviews 44:1, pages 1-18.
Read now

Articles from other publishers (39)

Seyedeh Faezeh Taghizadeh, Ramin Rezaee & Gholamreza Karimi. (2024) Occurrence and dietary exposure to metals and pesticides in Citrus fruits: A probabilistic assessment of risk to health of Iranian consumers. Journal of Food Composition and Analysis 125, pages 105805.
Crossref
Mir Ali Farajzadeh, Zahra Fathipour, Mehri Bakhshizadeh Aghdam & Mohammad Reza Afshar Mogaddam. (2023) Evaluation of activated charcoal-infused dental floss combined with dispersive liquid–liquid microextraction for the solid phase extraction of pesticide residues in fruit juices. Journal of Food Composition and Analysis 121, pages 105389.
Crossref
Marília Cristina Oliveira Souza, Jonas Carneiro Cruz, Cibele Aparecida Cesila, Neus Gonzalez, Bruno Alves Rocha, Joseph A. Adeyemi, Marti Nadal, José L. Domingo & Fernando Barbosa. (2023) Recent trends in pesticides in crops: A critical review of the duality of risks-benefits and the Brazilian legislation issue. Environmental Research, pages 115811.
Crossref
Guijae Yoo, Tae‐Eun Kim, Min Hyeock Lee, Bum‐Keun Kim & Hae Won Jang. (2022) Determination of vitamin K encapsulated into lipid nanocarriers by dispersive liquid–liquid microextraction combined with liquid chromatography–atmospheric pressure chemical ionization–tandem mass spectrometry. Food Science & Nutrition 11:2, pages 688-695.
Crossref
Mir Ali Farajzadeh, Sanaz Barazandeh, Sakha Pezhhanfar & Mohammad Reza Afshar Mogaddam. (2022) Graphene-Modified Magnetic Nanoparticles for Analyzing Some Pesticides Through Magnetic Dispersive Solid Phase Extraction and Dispersive Liquid–Liquid Microextraction Followed by GC–MS Determination. Food Analytical Methods 16:1, pages 177-189.
Crossref
Areej Merhi, Rita Kordahi & Hussein F. Hassan. (2022) A review on the pesticides in coffee: Usage, health effects, detection, and mitigation. Frontiers in Public Health 10.
Crossref
Andrea Purdešová, Zuzana Kramplová & Jozef Sokol. (2022) Determination of selected pesticide residues in non-fatty fruits using GC–MS in combination with QuEChERS method. Monatshefte für Chemie - Chemical Monthly 153:11, pages 1049-1055.
Crossref
Sara C. Cunha, Ricardo Ferreira, Isa Marmelo, Luís R. Vieira, Patrícia Anacleto, Ana Maulvault, António Marques, Lúcia Guilhermino & José O. Fernandes. (2022) Occurrence and seasonal variation of several endocrine disruptor compounds (pesticides, bisphenols, musks and UV-filters) in water and sediments from the estuaries of Tagus and Douro Rivers (NE Atlantic Ocean coast). Science of The Total Environment 838, pages 155814.
Crossref
Zhixia Li, Yaohai Zhang, Qiyang Zhao, Yongliang Cui, Yue He, Jing Li, Qin Yang, Zhihao Lin, Chengqiu Wang, Guolu Liang & Bining Jiao. (2022) Determination, distribution and potential health risk assessment of insecticides and acaricides in citrus fruits of China. Journal of Food Composition and Analysis 111, pages 104645.
Crossref
Uzma Sulaiman, Faheem Shah & Rafaqat Ali Khan. (2022) QuEChERS sample preparation integrated to dispersive liquid-liquid microextraction based on solidified floating organic droplet for spectrometric determination of sudan dyes: A synergistic approach. Food and Chemical Toxicology 159, pages 112742.
Crossref
Eleftheria Bempelou, Christos Anagnostopoulos, Maroula Kiousi, Panagiota Malatou, Konstantinos Liapis, Nikos Kouloussis, Vassilis Mavraganis & Nikolaos T. Papadopoulos. (2021) Τemporal Variation in Pesticide Residues in Citrus Fruits from Chios, Greece, before and after the Development of an Integrated Pest Management Strategy (IPMS): A Five-Year Study (LIFE13 ENV GR/000414). Toxics 9:12, pages 323.
Crossref
Somia Qayyum, Touqeer Taj, Muhammad Tauseef, Muhammad Ishtiaq, Nazia Rafique, Karam Ahad, Muhammad Aslam Mirza, Muhammad Aziz Choudhary & Farrakh Mehboob. (2021) Determination of pesticide residues in dates using UHPLC-QqQ-MS/MS: method development and validation. Environmental Monitoring and Assessment 193:9.
Crossref
Xiangzi Jin, Han Yeong Kaw, Yunan Liu, Jinhua Zhao, Xiangfan Piao, Dongri Jin, Miao He, Xiu-Ping Yan, John L. Zhou & Donghao Li. (2021) One-step integrated sample pretreatment technique by Gas-Liquid Microextraction (GLME) to determine multi-class pesticide residues in plant-derived foods. Food Chemistry, pages 130774.
Crossref
Bezuayehu Tadesse Negussie, Simiso Dube & Mathew Muzi Nindi. (2021) Multiclass Pesticide Residue Analysis in Fruit and Vegetable Samples by Combining Acetone-Based Salting-Out Assisted Extraction with Dispersive Liquid-Liquid Microextraction. Journal of Chemistry 2021, pages 1-12.
Crossref
Marjan Koushkestani, Samira Abbasi-Moayed, Forough Ghasemi, Vahideh Mahdavi & M. Reza Hormozi-Nezhad. (2021) Simultaneous detection and identification of thiometon, phosalone, and prothioconazole pesticides using a nanoplasmonic sensor array. Food and Chemical Toxicology 151, pages 112109.
Crossref
Qin Zhao, Yi-Lian Zhou, Shi-Wen Yue, Yu-Jiao Lou & Yu-Qi Feng. (2021) Combination of Modified QuEChERS and Disposable Polyethylene Pipet Assisted DLLME Based on Low Density Solvent Extraction for Rapid and Sensitive Determination of Fipronil and Its Metabolites in Eggs by GC-MS. Food Analytical Methods 14:5, pages 1021-1032.
Crossref
Lamia Hejji, Abdelmonaim Azzouz, Laura Palacios Colón, Badredine Souhail & Evaristo Ballesteros. (2021) A multi-residue method for determining twenty-four endocrine disrupting chemicals in vegetables and fruits using ultrasound-assisted solid–liquid extraction and continuous solid-phase extraction. Chemosphere 263, pages 128158.
Crossref
Jorge Moreda-Piñeiro & Antonio Moreda-Piñeiro. 2021. Comprehensive Foodomics. Comprehensive Foodomics 581 608 .
M. Reza Mirghafouri, Samira Abbasi-Moayed, Forough Ghasemi & M. Reza Hormozi-Nezhad. (2020) Nanoplasmonic sensor array for the detection and discrimination of pesticide residues in citrus fruits. Analytical Methods 12:48, pages 5877-5884.
Crossref
Zhixia Li, Yaohai Zhang, Qiyang Zhao, Chengqiu Wang, Yongliang Cui, Jing Li, Aihua Chen, Guolu Liang & Bining Jiao. (2020) Occurrence, temporal variation, quality and safety assessment of pesticide residues on citrus fruits in China. Chemosphere 258, pages 127381.
Crossref
Sara C. Cunha & José O. Fernandes. 2020. Liquid-Phase Extraction. Liquid-Phase Extraction 643 665 .
Heng Qian, Chaoran Liu, Qian Yang, Xinya Liu, Haixiang Gao & Wenfeng Zhou. (2019) The extraction of pyrethroid insecticides in juice and tea beverages by liquid-phase microextraction using deep eutectic solvents. Analytical Methods 11:38, pages 4923-4930.
Crossref
Jorge Moreda-Piñeiro & Antonio Moreda-Piñeiro. (2019) Combined assisted extraction techniques as green sample pre-treatments in food analysis. TrAC Trends in Analytical Chemistry 118, pages 1-18.
Crossref
Sherif B. Abdel Ghani, Saleh S. Alhewairini & Svetlana Hrouzková. (2018) A Fast and Easy QuEChERS-DLLME Method Combined with GC-MS for Ethion and Bifenthrin Residues Determination and Study of Their Dissipation Dynamics in Palm Dates. Food Analytical Methods 11:12, pages 3542-3550.
Crossref
M. Castro, J.O. Fernandes, A. Pena & S.C. Cunha. (2018) Occurrence, profile and spatial distribution of UV-filters and musk fragrances in mussels from Portuguese coastline. Marine Environmental Research 138, pages 110-118.
Crossref
Yune Bai, Shaoping Wang & Xiaohong Bai. (2017) Determination of Fatty Acids in Zanthoxyli Semen Based on Solidification of Floating Organic Drop Liquid Phase Microextraction with Gas Chromatography. Chromatographia 80:12, pages 1813-1818.
Crossref
Amirhassan Amiri & Ferial Ghaemi. (2017) Microextraction in packed syringe by using a three-dimensional carbon nanotube/carbon nanofiber–graphene nanostructure coupled to dispersive liquid-liquid microextraction for the determination of phthalate esters in water samples. Microchimica Acta 184:10, pages 3851-3858.
Crossref
Natalia Besil, Verónica Cesio, Horacio Heinzen & Amadeo R. Fernandez-Alba. (2017) Matrix Effects and Interferences of Different Citrus Fruit Coextractives in Pesticide Residue Analysis Using Ultrahigh-Performance Liquid Chromatography–High-Resolution Mass Spectrometry. Journal of Agricultural and Food Chemistry 65:23, pages 4819-4829.
Crossref
Xiaojing Li, Hong Yu, Rongfei Peng & Pingsheng Gan. (2017) Determination of 19 sulfonamides residues in pork samples by combining QuEChERS with dispersive liquid-liquid microextraction followed by UHPLC-MS/MS. Journal of Separation Science 40:6, pages 1377-1384.
Crossref
S. Hrouzková. 2016. Food Safety. Food Safety 221 269 .
Jordana Alves Ferreira, Joana Maria Santos Ferreira, Viviane Talamini, Janice de Fátima Facco, Tiele Medianeira Rizzetti, Osmar Damian Prestes, Martha Bohrer Adaime, Renato Zanella & Carla Beatriz Grespan Bottoli. (2016) Determination of pesticides in coconut ( Cocos nucifera Linn.) water and pulp using modified QuEChERS and LC–MS/MS. Food Chemistry 213, pages 616-624.
Crossref
Mateus H. Petrarca, José O. Fernandes, Helena T. Godoy & Sara C. Cunha. (2016) Multiclass pesticide analysis in fruit-based baby food: A comparative study of sample preparation techniques previous to gas chromatography–mass spectrometry. Food Chemistry 212, pages 528-536.
Crossref
Satyajeet Rai, Abhishek Kumar Singh, Anshuman Srivastava, Sapna Yadav, Mohammed Haris Siddiqui & Mohana Krishna Reddy Mudiam. (2016) Comparative Evaluation of QuEChERS Method Coupled to DLLME Extraction for the Analysis of Multiresidue Pesticides in Vegetables and Fruits by Gas Chromatography-Mass Spectrometry. Food Analytical Methods 9:9, pages 2656-2669.
Crossref
M. Andra???kov?S. Hrouzkov?. (2016) Fast Preconcentration of Pesticide Residues in Oilseeds by Combination of QuEChERS with Dispersive Liquid?Liquid Microextraction Followed by Gas Chromatography-Mass Spectrometry. Food Analytical Methods 9:8, pages 2182-2193.
Crossref
Yaru Wang, Xuexue Miao, Haifeng Wei, Deyun Liu, Gaofeng Xia & Xiaoyun Yang. (2016) Dispersive Liquid-Liquid Microextraction Combined with Gas Chromatography-Mass Spectrometry for the Determination of Multiple Pesticides in Celery. Food Analytical Methods 9:8, pages 2133-2141.
Crossref
C. Christia, E. Bizani, C. Christophoridis & K. Fytianos. (2015) Pesticide residues in fruit samples: comparison of different QuEChERS methods using liquid chromatography?tandem mass spectrometry. Environmental Science and Pollution Research 22:17, pages 13167-13178.
Crossref
Xiaochu Chen, Xiangwei You, Fengmao Liu, Fan Hou & Xu Zhang. (2015) Ionic-liquid-based, manual-shaking- and ultrasound-assisted, surfactant-enhanced emulsification microextraction for the determination of three fungicide residues in juice samples. Journal of Separation Science 38:1, pages 93-99.
Crossref
Pilar Viñas, Natalia Campillo, Ignacio López-García & Manuel Hernández-Córdoba. (2013) Dispersive liquid–liquid microextraction in food analysis. A critical review. Analytical and Bioanalytical Chemistry 406:8, pages 2067-2099.
Crossref
Cui Yang, Juan Wang & Donghao Li. (2013) Microextraction techniques for the determination of volatile and semivolatile organic compounds from plants: A review. Analytica Chimica Acta 799, pages 8-22.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.