Mercury(1+), ethyl-

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CAS: 21687-36-5
MF: C2H5Hg+
MW: 229.6511
Synonyms: Mercury(1+), ethyl-

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Bin Hu

Wuhan University
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Man He

Wuhan University
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Qiu-Quan WANG

Xiamen University
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Xiandeng Hou

Sichuan University
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Chengbin Zheng

Sichuan University
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Co-reporter: Yao Lin, Yuan Yang, Yuxuan Li, Lu Yang, Xiandeng Hou, Xinbin Feng, and Chengbin Zheng
pp: 2468
Publication Date(Web):February 1, 2016
DOI: 10.1021/acs.est.5b04328
Rice consumption is a primary pathway for human methylmercury (MeHg) exposure in inland mercury mining areas of Asia. In addition, the use of iodomethane, a common fumigant that significantly accelerates the methylation of mercury in soil under sunlight, could increase the MeHg exposure from rice. Conventional hyphenated techniques used for mercury speciation analysis are usually too costly for most developing countries. Consequently, there is an increased interest in the development of sensitive and inexpensive methods for the speciation of mercury in rice. In this work, gas chromatography (GC) coupled to dielectric barrier discharge optical emission spectrometry (DBD-OES) was developed for the speciation analysis of mercury in rice. Prior to GC-DBD-OES analysis, mercury species were derivatized to their volatile species with NaBPh4 and preconcentrated by headspace solid phase microextraction using porous carbons. Limits of detection of 0.5 μg kg–1 (0.16 ng), 0.75 μg kg–1 (0.24 ng), and 1.0 μg kg–1 (0.34 ng) were obtained for Hg2+, CH3Hg+, and CH3CH2Hg+, respectively, with relative standard deviations (RSDs) better than 5.2% and 6.8% for one fiber or fiber-to-fiber mode, respectively. Recoveries of 90–105% were obtained for the rice samples, demonstrating the applicability of the proposed technique. Owing to the small size, low power, and low gas consumption of DBD-OES as well as efficient extraction of mercury species by porous carbons headspace solid phase micro-extraction, the proposed technique provides several advantages including compactness, cost-effectiveness, and potential to couple with miniature GC to accomplish the field speciation of mercury in rice compared to conventional hyphenated techniques.

Yong Cai

Florida International University
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Kelvin Sze-Yin Leung

Hong Kong Baptist University
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Jinhua Li

Yantai Institute of Coastal Zone Research
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Yu Li

Jilin University
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Jinhua Liu

Hangzhou Normal University
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