• Title of article

    Developed and Rapid Extraction of Melamine in Infant Formulae by Combined Electromembrane with Nano Graphene Oxide Reinforced Hollow Fiber

  • Author/Authors

    Rezaee ، Maryam Department of Chemistry - Islamic Azad University, Mashhad Branch , Ebrahimi ، Mahmoud Department of Chemistry - Islamic Azad University, Mashhad Branch , Shoeibi ، Shahram Food and Drug Laboratory Research Center, Iran Food and Drug Administration (IFDA) - Ministry of Health and Medical Education (MOH)

  • From page
    1835
  • To page
    1843
  • Abstract
    Melamine is a high nitrogen compound used as an adulteration to high protein foods such as infant formulae. There are many different methods for extraction and analysis of melamine which are time-consuming, complex, and need large volumes of organic solvents. A validated method for extraction and cleanup of melamine (MEL) in infant formulae, water, and powdered coffee creamer was developed using a NanoGraphene Oxide (NGO) assisted with Electro Membrane Extraction (NGO/EME) followed by HPLC-UV detection. Supported Liquid Membrane (SLM) with NGO was used as the adsorbent interface in this study. Synthesized NGO was characterized by Fourier Transform InfraRed (FT-IR) spectroscopy and Scanning Electron Microscope (SEM). Effective parameters such as voltage magnitude, SLM solvent, pH of acceptor and donor phases, extraction time, and stirring rate were optimized. The method provided the LOD and LOQ 0.03, and 0.1µg/kg in infant formula, respectively. The accuracy was in the satisfaction recovery rate between 106-109% with RSD 4.83-5.31 for infant formulae as well as the other tested matrices. The developed method based on NGO/EME extraction presents a reliable and rapid analysis of melamine in infant formula.
  • Keywords
    Analysis , SLM , NGO , EME , powder coffee creamer , Microextraction
  • Journal title
    Iranian Journal of Chemistry and Chemical Engineering (IJCCE)
  • Journal title
    Iranian Journal of Chemistry and Chemical Engineering (IJCCE)
  • Record number

    2743168