Separation and screening of short-chain chlorinated paraffins in environmental samples using comprehensive two-dimensional gas chromatography with micro electron capture detection
详细信息    查看全文
  • 作者:Dan Xia (1)
    Lirong Gao (1)
    Shuai Zhu (1)
    Minghui Zheng (1)
  • 关键词:Comprehensive two ; dimensional gas chromatography ; Micro electron capture detection ; Short chain chlorinated paraffins ; Environmental samples
  • 刊名:Analytical and Bioanalytical Chemistry
  • 出版年:2014
  • 出版时间:November 2014
  • 年:2014
  • 卷:406
  • 期:29
  • 页码:7561-7570
  • 全文大小:1,260 KB
  • 参考文献:1. Tomy GT, Stern GA, Lockhart WL, Muir DCG (1999) Environ Sci Technol 33:2858-863 CrossRef
    2. Zeng LX, Wang T, Han WY, Yuan B, Liu QA, Wang YW, Jiang GB (2011) Environ Sci Technol 45:2100-106 CrossRef
    3. Eljarrat E, Barcelo D (2006) Trends Anal Chem 25:421-34 CrossRef
    4. Marvin CH, Painter S, Tomy GT, Stern GA, Braekevelt E, Muir DCG (2003) Environ Sci Technol 37:4561-568 CrossRef
    5. Stockholm Convention on Persistent Organic Pollutants (2009). http://chm.pops.int. Accessed 30 Jun 2014
    6. Castells P, Parera J, Santos FJ, Galceran MT (2008) Chemosphere 70:1552-562 CrossRef
    7. Ma X, Chen C, Zhang H, Gao Y, Wang Z, Yao Z, Chen J, Chen J (2014) Mar Pollut Bull 79:299-04 CrossRef
    8. Wang T, Wang Y, Jiang G (2013) Environ Sci Technol 47:11924-1925 CrossRef
    9. Tomy GT, Stern GA, Muir DCG, Fisk AT, Cymbalisty CD, Westmore JB (1997) Anal Chem 69:2762-771 CrossRef
    10. Peters AJ, Tomy GT, Jones KC, Coleman P, Stern GA (1999) Atmos Environ 34:3085-090 CrossRef
    11. Reth M, Oehme M (2004) Anal Bioanal Chem 378:1741-747 CrossRef
    12. Xu X, van Stee LLP, Williams J, Beens J, Adahchour M, Vreuls RJJ, Brinkman UAT, Lelieveld J (2003) Atmos Chem Phys 3:665-82 CrossRef
    13. Harju M, Danielsson C, Haglund P (2003) J Chromatogr A 1019:111-26 CrossRef
    14. Kristenson EM, Korytár P, Danielsson C, Kallio M, Brandt M, M?kel? J, Vreuls RJJ, Beens J, Brinkman UAT (2003) J Chromatogr A 1019:65-7 CrossRef
    15. Korytár P, Leonards PEG, de Boer J, Brinkman UAT (2002) J Chromatogr A 958:203-18 CrossRef
    16. Korytár P, Danielsson C, Leonards PEG, Haglund P, de Boer J, Brinkman UAT (2004) J Chromatogr A 1038:189-99 CrossRef
    17. Haglund P, Korytár P, Danielsson C, Diaz J, Wiberg K, Leonards P, Brinkman UAT, de Boer J (2008) Anal Bioanal Chem 390:1815-827 CrossRef
    18. Muscalu AM, Reiner EJ, Liss SN, Chen T, Ladwig G, Morse D (2011) Anal Bioanal Chem 401:2403-413 CrossRef
    19. Zhang B, Zheng MH, Liu GR, Li C, Gao LR (2012) Chin J Anal Chem 40:1213-218
    20. Korytár P, Parera J, Leonards PEG, Santos FJ, de Boer J, Brinkman UAT (2005) J Chromatogr A 1086:71-2 CrossRef
    21. Gao Y, Zhang H, Chen J, Zhang Q, Tian Y, Qi P, Yu Z (2011) Anal Chim Acta 703:187-93 CrossRef
    22. Korytár P, Haglund P, de Boer J, Brinkman UAT (2006) Trends Anal Chem 25:373-96 CrossRef
    23. Omar J, Alonso I, Olivares M, Vallejo A, Etxebarria N (2012) Talanta 88:145-51
文摘
Short-chain chlorinated paraffins (SCCPs) are highly complex technical mixtures with thousands of isomers and numerous homologs. They are classified as priority candidate persistent organic pollutants under the Stockholm Convention for their persistence, bioaccumulation, and toxicity. Analyzing SCCPs is challenging because of the complexity of the mixtures. Chromatograms of SCCPs acquired using one-dimensional (1D) gas chromatography (GC) contain a large characteristic “peak-with a broad and unresolved profile. Comprehensive two-dimensional GC (GC×GC) shows excellent potential for separating complex mixtures. In this study, GC×GC coupled with micro electron capture detection (μECD) was used to separate and screen SCCPs. The chromatographic parameters, including the GC column types, oven temperature program, and modulation period, were systematically optimized. The SCCP congeners were separated into groups using a DM-1 column connected to a BPX-50 column. The SCCP congeners in technical mixtures were separated according to the number of chlorine substituents for a given carbon chain length and according to the number of carbon atoms plus chlorine atoms for different carbon chain lengths. A fish tissue sample was analyzed to illustrate the feasibility of the GC×GC–μECD method in analyzing biological samples. Over 1,500 compounds were identified in the fish extract, significantly more than were identified using 1D GC. The detection limits for five selected SCCP congeners were between 1 and 5?pg/L using the GC×GC method, and these were significantly lower than those achieved using 1D GC. This method is a good choice for analysis of SCCPs in environmental samples, exhibiting good separation and good sensitivity. Graphical Abstract Chromatograms of a technical C10–C13 SCCP mixture with a 55 % (w/w) chlorine content obtained using a gas chromatography–electron capture detection (ECD) and b GC×GC–μECD

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700