4.6 Article

Ultrasound-assisted emulsification microextraction coupled with salt-induced demulsification based on solidified floating organic drop prior to HPLC determination of Sudan dyes in chili products

期刊

ARABIAN JOURNAL OF CHEMISTRY
卷 12, 期 8, 页码 5223-5233

出版社

ELSEVIER
DOI: 10.1016/j.arabjc.2016.12.020

关键词

Ultrasound; Emulsification; Demulsification; Solidified floating organic drop microextraction; Sudan dyes; Chili products

资金

  1. Higher Education Research Promotion and National Research University Project of Thailand
  2. Office of the Higher Education Commission, through the Food and Functional Food Research Cluster of Khon Kaen University, Materials Chemistry Research Center, Department of Chemistry and Center of Excellence for Innovation in Chemistry (PERCH-CIC), Thailan

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This study aimed to analyze the presence of Sudan I-IV in chili products using high performance liquid chromatography and summarized the data performance after ultrasound-assisted emulsification microextraction and salt-induced demulsification with solidified floating organic drop (UAEME-SID-SFOD). After demulsification, the low density solvent was floating instantaneously solidified in an ice-bath; any remaining liquid phase was removed. The solidified part was quickly melted at room temperature and used for analysis. Parameters such as linearity (0.5-2500 ng mL(-1), R-2 >= 0.999), limits of detection (0.16-0.24 ng mL(-1)), and limits of quantification (0.53-0.80 ng mL(-1)) were used to validate this method. The pre-concentration factor for the 5 mL sample solution was 62. Under optimum conditions, the recoveries ranged between 91% and 107%, with relative standard deviations ranging from 1.8% to 3.5% for intra-day (n = 7) and 4.8% to 6.3% for inter-day (n = 5 x 3) analyses. This novel proposed method has great potential applications in most analytical laboratories that use general instrumentation. This method is easy, rapid, and environmentally friendly. In addition, it does not use any disperser solvent and can eliminate the centrifugation step for aqueous and organic phase separation. Therefore, it isexpected that the UAEME-SID-SFOD would be a useful method for various analytical sample extraction purposes. (C) 2017 The Authors. Production and hosting by Elsevier B.V. on behalf of King Saud University.

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