Methylmercury Determination in Fish by Direct Mercury Analyzer

Author:

Kim Tae-Hun12,Cho Min-Ja1,Lee Yongmin1,Kim Ji Hui1,Hwang Jeong-Yun1,Lee Hye-Eun1,Kim Sheen-Hee1,Choi Jang-Duck1,Kang Gil-Jin1

Affiliation:

1. Ministry of Food and Drug Safety, National Food and Drug Safety Evaluation, Food Safety Evaluation Department, Food Contaminants Division, Osong, Cheongju 28159, Republic of Korea

2. Daejeon Metropolitan City Institute of Health and Environment, Noeun Inspection Office for Agricultural, Fishery and Livestock Products, Yuseong-gu, Daejeon 34146, Republic of Korea

Abstract

Abstract Background: There are two methods for quantifying methylmercury (MeHg) in fish using GC–electron capture detection (ECD): AOAC INTERNATIONAL Official Method 988.11 and the Korean Food Code (KFC) method. Both of these methods consume a large amount of chemicals and require long pretreatment times because of several complicated MeHg extraction steps. Objective: In this study, a new method for the simple and rapid determination of MeHg in fish has been developed. The method is based on the investigation of oxygen combustion–gold amalgamation using a direct mercury analyzer (DMA) after the complete removal of MeHg by organic extraction and back-extraction to an aqueous medium. Methods: The DMA is suitable for the analysis of both solid and liquid materials and has a good detection limit. The developed method was validated by comparing the MeHg recoveries (%) of both certified reference materials and the market-purchased fish samples with the MeHg concentration obtained using the KFC method. Results: The following parameters pertaining to the developed method were established: detection limit, 1.02 μg/kg; LOQ, 3.09 μg/kg; linearity (r), 0.9998; range, 0.1–300 μg/kg; and recovery, 95–97%. Conclusions: Our method is a promising alternative by virtue of its much simpler and faster sample pretreatment procedure, with a MeHg recovery as high as that of the KFC method. Highlights: The developed method enables the simultaneous analysis of total Hg and MeHg with only DMA equipment.

Funder

Ministry of Food and Drug Safety of South Korea

Publisher

Oxford University Press (OUP)

Subject

Pharmacology,Agronomy and Crop Science,Environmental Chemistry,Food Science,Analytical Chemistry

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