Analytical and Bioanalytical Chemistry 2007-04-01

Certification of butyltins and phenyltins in marine sediment certified reference material by species-specific isotope-dilution mass spectrometric analysis using synthesized 118Sn-enriched organotin compounds.

Kazumi Inagaki, Akiko Takatsu, Takuro Watanabe, Yoshie Aoyagi, Takashi Yarita, Kensaku Okamoto, Koichi Chiba

Index: Anal. Bioanal. Chem 387 , 2325-34, (2007)

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Abstract

A new marine sediment certified reference material, NMIJ CRM 7306-a, for butyltin and phenyltin analysis has been prepared and certified by the National Metrological Institute of Japan at the National Institute of Advanced Industrial Science and Technology (NMIJ/AIST). Candidate sediment material was collected at a bay near industrial activity in Japan. After air-drying, sieving, and mixing the material was sterilized with gamma-ray irradiation. The material was re-mixed and packaged into 250 glass bottles (15 g each) and these were stored in a freezer at -30 degrees C. Certification was performed by use of three different types of species-specific isotope-dilution mass spectrometry (SSID-MS)-SSID-GC-ICP-MS, SSID-GC-MS, and SSID-LC-ICP-MS, with 118Sn-enriched organotin compounds synthesized from 118Sn-enriched metal used as a spike. The 118Sn-enriched mono-butyltin (MBT), dibutyltin (DBT), and tributyltin (TBT) were synthesized as a mixture whereas the 118Sn-enriched di-phenyltin (DPhT) and triphenyltin (TPhT) were synthesized individually. Four different extraction methods, mechanical shaking, ultrasonic, microwave-assisted, and pressurized liquid extraction, were adopted to avoid possible analytical bias caused by non-quantitative extraction and degradation or inter-conversion of analytes in sample preparations. Tropolone was used as chelating agent in all the extraction methods. Certified values are given for TBT 44+/-3 microg kg(-1) as Sn, DBT 51 +/- 2 microg kg(-1) as Sn, MBT 67 +/- 3 microg kg(-1) as Sn, TPhT 6.9 +/- 1.2 microg kg(-1) as Sn, and DPhT 3.4 +/- 1.2 microg kg(-1) as Sn. These levels are lower than in other sediment CRMs currently available for analysis of organotin compounds.


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