环境水样及固相样品中全氟化合物分析方法研究进展

孙腾飞 向垒 陈雷 肖滔 莫测辉 李彦文 蔡全英 胡国成 贺德春

引用本文: 孙腾飞,  向垒,  陈雷,  肖滔,  莫测辉,  李彦文,  蔡全英,  胡国成,  贺德春. 环境水样及固相样品中全氟化合物分析方法研究进展[J]. 分析化学, 2017, 45(4): 601-610. doi: 10.11895/j.issn.0253-3820.160817 shu
Citation:  SUN Teng-Fei,  XIANG Lei,  CHEN Lei,  XIAO Tao,  MO Ce-Hui,  LI Yan-Wen,  CAI Quan-Ying,  HU Guo-Cheng,  HE De-Chun. Research Progresses of Determination of Perfluorinated Compounds in Environmental Water and Solid Samples[J]. Chinese Journal of Analytical Chemistry, 2017, 45(4): 601-610. doi: 10.11895/j.issn.0253-3820.160817 shu

环境水样及固相样品中全氟化合物分析方法研究进展

  • 基金项目:

    本文系国家自然科学基金项目(Nos.41573093,U1501233),广东省自然科学基金研究团队项目(No.2016A030312009),广东省应用型科技研发专项项目(Nos.2016B020242005,2015B020235008),广东省科技计划产学研合作项目(Nos.2015B090903070,2013B0906001)资助

摘要: 全氟化合物(Perfluorinated compounds,PFCs)是一类持久性有机污染物,在环境中普遍检出,严重危害人体健康,已成为环境科学和毒理学研究的热点之一。PFCs含有较多同系物及同分异构体,且在环境中通常为痕量水平(ng/g或μg/L),迫切需要建立灵敏可靠的样品前处理和检测技术。国内外已针对环境样品基质中痕量PFCs的检测开展了大量研究,但有关复杂环境样品中PFCs前处理方法、分析方法、基质效应等方面的系统评述还相对较少。本文综述了环境样品(水、沉积物/污泥、土壤、植物)中PFCs的前处理方法、检测方法(尤其是同分异构体)及环境样品基质效应对其检测的影响,以期为相关研究提供参考。

English

    1. [1]

      Ding G, Wouterse M, Baerselman R, Peijnenburg W J. Arch. Environ. Con. Toxicol., 2012, 62(1): 49-55

    2. [2]

      Theobald N, Caliebe C, Gerwinski W, Huhnerfuss H, Lepom P. Environ. Sci. Pollut. Res. Int., 2012, 19(2): 313-324

    3. [3]

      Arsenault G, Chittim B, McAlees A, McCrindle R, Riddell N, Yeo B. Chemosphere, 2008, 70(4): 616-625

    4. [4]

      Li F, Zhang C, Qu Y, Chen J, Chen L, Liu Y, Zhou Q. Sci. Total. Environ., 2010, 408(3): 617-623

    5. [5]

      Sepulvado J G, Blaine A C, Hundal L S, Higgins C P. Environ. Sci. Technol., 2011, 45(19): 8106-8112

    6. [6]

      Wang Y W, Fu J J, Wang T, Liang Y, Pan Y Y, Cai Y Q, Jiang G B. Environ. Sci. Technol., 2010, 44(21): 8062-8067

    7. [7]

      Zareitalabad P, Siemens J, Hamer M, Amelung W. Chemosphere, 2013, 91(6): 725-732

    8. [8]

      Zheng H, Li J L, Li H H, Hu G C, Li H S. J. Food. Sci, 2014, 79(6): 1123-1129

    9. [9]

      Pan C G, Zhao J L, Liu Y S, Zhang Q Q, Chen Z F, Lai H J, Peng F J, Liu S S, Ying G G. Ecotoxicol. Environ. Safe, 2014, 107(7): 192-199

    10. [10]

      Post G B, Cohn P D, Cooper K R. Environ. Res., 2012, 116(5): 93-117

    11. [11]

      Eschauzier C, Raat K J, Stuyfzand P J, de Voogt P. Sci. Total. Environ., 2013, 458-460(5): 477-485

    12. [12]

      YAO Yao, DENG Jie-Wei, YANG Yun-Yun, FANG Ling, ZHOU Hai-Yun, LIU Hong-Tao, WANG Xiao-Wei, LUAN Tian-Gang. Chinese J. Anal. Chem., 2015, 43(7): 1053-1057 姚 瑶, 邓洁薇, 杨运云, 方 玲, 周海云, 刘洪涛, 王晓玮, 栾天罡. 分析化学, 2015, 43(7): 1053-1057

    13. [13]

      Lu Z, Song L, Zhao Z, Ma Y, Wang J, Yang H, Ma H, Cai M, Codling G, Ebinghaus R, Xie Z, Giesy J P. Chemosphere, 2015, 119(9): 820-827

    14. [14]

      Yao Y, Zhu H, Li B, Hu H, Zhang T, Yamazaki E, Taniyasu S, Yamashita N, Sun H. Ecotoxicol. Environ. Safe, 2014, 108(8): 318-328

    15. [15]

      SHI Ya-Li, PAN Yuan-Yuan, WANG Jie-Ming, CAI Ya-Qi. Prog. Chem., 2009, 21(2/3): 369-376 史亚利, 潘媛媛, 王杰明, 蔡亚歧. 化学进展, 2009, 21(2/3): 369-376

    16. [16]

      Zheng H, Hu G, Xu Z, Li H, Zhang L, Zheng J, Chen L, He D B. Environ. Contam.Toxicol., 2015, 94(4): 503-510

    17. [17]

      HU Guo-Cheng, ZHENG Hai, ZHANG Li-Juan, XU Zheng-Cheng, CHEN Lai-Guo, HE De-Chun, LI Hua-Shou. J. Environ. Sci-China, 2013, 33(S1): 37-42 胡国成, 郑 海, 张丽娟, 许振成, 陈来国, 贺德春, 黎华寿. 中国环境科学, 2013, 33(S1): 37-42

    18. [18]

      Liu J, Mejia Avendano S. Environ. Int., 2013, 61(10) : 98-114

    19. [19]

      Stahl T, Riebe R A, Falk S, Failing K, Brunn H. J. Agric. Food. Chem., 2013, 61(8): 1784-1793

    20. [20]

      SHI Ya-Li, CAI Ya-Qi. Prog. Chem., 2014, 26(4): 665-68史亚利, 蔡亚岐. 化学进展, 2014, 26(4): 665-681

    21. [21]

      Noorlander C W, van Leeuwen S P, te Biesebeek J D, Mengelers M J, Zeilmaker M J. J. Agric. Food. Chem., 2011, 59(13): 7496-7505

    22. [22]

      Müller C E, De Silva A O, Small J, Williamson M, Wang X, Morris A, Katz S, Gamberg M, Muir D C. Environ. Sci. Technol., 2011, 45(20): 8665-8673

    23. [23]

      Barbarossa A, Masetti R, Gazzotti T, Zama D, Astolfi A, Veyrand B, Pession A, Pagliuca G. Environ. Int., 2013, 51(11): 27-30

    24. [24]

      Antignac J P, Veyrand B, Kadar H, Marchand P, Oleko A, Le Bizec B, Vandentorren S. Chemosphere, 2013, 91(6): 802-808

    25. [25]

      Karrman A, Domingo J L, Llebaria X, Nadal M, Bigas E, van Bavel B, Lindstrom G. Environ. Sci. Pollut. Res. Int., 2010, 17(3): 750-758

    26. [26]

      Perez F, Llorca M, Kock-Schulmeyer M, Skrbic B, Oliveira L S, da Boit Martinello K, Al-Dhabi N A, Antic I, Farre M, Barcelo D. Environ. Res., 2014, 135(10): 181-189

    27. [27]

      Cornelis C, D'Hollander W, Roosens L, Covaci A, Smolders R, van den Heuvel R, Govarts E, van Campenhout K, Reynders H, Bervoets L. Chemosphere, 2012, 86(3): 308-314

    28. [28]

      Qu B C, Zhao H X, Zhou J T. Chemosphere, 2010, 79(5): 555-560

    29. [29]

      Wang T, Wang Y T, Liao C Y, Cai Y Q, Jiang G B. Environ. Sci. Technol., 2009, 43(14): 5171-5175

    30. [30]

      Clarke B O, Smith S R. Environ. Int., 2011, 37(1): 226-247

    31. [31]

      Wang P, Wang T, Giesy J P, Lu Y. Chemosphere, 2013, 91(6): 751-757

    32. [32]

      Valsecchi S, Rusconi M, Polesello S. Anal. Bioanal. Chem., 2013, 405(1): 143-157

    33. [33]

      Ullah S, Alsberg T, Vestergren R, Berger U. Anal. Bioanal. Chem., 2012, 404(8): 2193-2201

    34. [34]

      YU Yu-Cheng, XU Dun-Ming, LUO Chao, ZHOU Yu, PENG Tao, YUE Zhen-Feng. J. Food Safe Qual., 2014, (8): 2550-2559 余宇成, 徐敦明, 罗 超, 周 昱, 彭 涛, 岳振峰. 食品安全质量检测学报, 2014, (8): 2550-2559

    35. [35]

      González-Barreiro C, Martínez-Carballo E, Sitka A, Scharf S, Gans O. Anal. Bioanal. Chem., 2006, 386(7-8): 2123-2132

    36. [36]

      Boone J S, Guan B, Vigo C, Boone T, Byrne C, Ferrario J. J. Chromatogr. A, 2014, 1345(4): 68-77

    37. [37]

      WANG Chao, LYU Yi-Bing, CHEN Hai-Jun, TAN Li, TENG En-Jiang. Chinese Journal of Chromatography, 2014, 32(9): 919-925 王 超, 吕怡兵, 陈海君, 谭 丽, 滕恩江. 色谱, 2014, 32(9): 919-925

    38. [38]

      Yamashita N, Kannan K, Taniyasu S, Horii Y, Okazawa T, Petrick G, Gamo T. Environ. Sci. Technol., 2004, 38(21): 5522-5528

    39. [39]

      Li X J, Gan P S, Peng R F, Huang C, Yu H. J. Chromatogr. Sci., 2010, 48(3): 183-187

    40. [40]

      Monteleone M, Naccarato A, Sindona G, Tagarelli A. J. Chromatogr. A, 2012, 1251(6): 160-168

    41. [41]

      Li Y W, Zhan X J, Xiang L, Deng Z S, Huang B H, Wen H F, Sun T F, Cai Q Y, Li H, Mo C H. J. Agric. Food Chem., 2014, 62(49): 11831-11839

    42. [42]

      WANG Yi, KONG De-Yang, SHAN Zheng-Jun, TAN Li-Chao. Environ. Chem., 2012, 31(1): 113-119 王 懿, 孔德洋, 单正军, 谭丽超. 环境化学, 2012, 31(1): 113-119

    43. [43]

      Higgins C P, Field J A, Criddle C S, Luthy R G. Environ. Sci. Technol., 2005, 39(11): 3946-3956

    44. [44]

      Esparza X, Moyano E, de Boer J, Galceran M T, van Leeuwen S P. Talanta, 2011, 86(9): 329-336

    45. [45]

      PAN Yuan-Yuan, SHI Ya-Li, CAI Ya-Qi. Environ. Chem., 2010, 29(3): 519-523 潘媛媛, 史亚利, 蔡亚岐. 环境化学, 2010, 29(3): 519-523

    46. [46]

      Ballesteros-Gómez A, Rubio S, van Leeuwen S. J. Chromatogr. A, 2010, 1217(38): 5913-5921

    47. [47]

      Blaine A C, Rich C D, Hundal L S, Lau C, Mills M A, Harris K M, Higgins C P. Environ. Sci. Technol., 2013, 47(24): 14062-14069

    48. [48]

      Vestergren R, Ullah S, Cousins I T, Berger U. J. Chromatogr. A, 2012, 1237(3): 64-71

    49. [49]

      Felizeter S, McLachlan M S, de Voogt P. Environ. Sci. Technol., 2012, 46(21): 11735-11743

    50. [50]

      Felizeter S, McLachlan M S, De Voogt P. J. Agric. Food. Chem., 2014, 62(15): 3334-3342

    51. [51]

      Portoles T, Rosales L E, Sancho J V, Santos F J, Moyanol E. J. Chromatogr. A, 2015, 1413(9): 107-116

    52. [52]

      LIU Qing, HE De-Chun, XU Zhen-Cheng, LI Jie, ZHANG Su-Kun, PAN Lang. Envionmental Monitoring in China, 2014, 30(4): 134-139 刘 庆, 贺德春, 许振成, 李 杰, 张素坤, 潘 浪. 中国环境监测, 2014, 30(4): 134-139

    53. [53]

      SHAN Guo-Qiang, SUN Huai-Hua, HOU Zheng, ZHU Ling-Yan. Prog. Chem., 2012, 24(10): 2019-2027 单国强, 孙怀华, 侯 征, 祝凌燕. 化学进展, 2012, 24(10): 2019-2027

    54. [54]

      Yoo H, Washington J W, Jenkins T M, Ellington J J. Environ. Sci. Technol., 2011, 45(19): 7985-7990

    55. [55]

      Xiang L, Wang X K, Li Y W, Huang X P, Wu X L, Zhao H M, Li H, Cai Q Y, Mo C H. J. Agric. Food Chem., 2015, 63(30): 6689-6697

    56. [56]

      Xiang L, Sun T F, Chen Lei, Xiao T, Cai Q Y, Li H, He D C, Mong M H, Li Y W, Mo C H. Food Anal. Method, 2017(accepted DOI: 10.1007/s12161-017-0807-4) 57 Powley C R, George S W, Ryan T W, Buck R C. Anal. Chem., 2005, 77(19): 6353-6358

    57. [57]

      Takino M, Daishima S, Nakahara T. Rapid. Commun. Mass. Spectrom., 2003, 17(5): 383-390

    58. [58]

      Jahnke A, Berger U. J. Chromatogr. A, 2009, 1216(3): 410-421

    59. [59]

      Onghena M, Moliner-Martinez Y, Picó Y, Campíns-Falcó P, Barceló D. J. Chromatogr. A, 2012, 1244(5): 88-97

    60. [60]

      Ellington J J, Washington J W, Evans J J, Jenkins T M, Hafner S C, Neill M P. J. Chromatogr. A, 2009, 1216(28): 5347-5354

    61. [61]

      Alzaga R, Salgado-Petinal C, Jover E, Bayona J. J. Chromatogr. Sci., 2005, 1083(1): 1-6

    62. [62]

      Benskin J P, Ahrens L, Muir D C, Scott B F, Spencer C, Rosenberg B, Tomy G, Kylin H, Lohmann R, Martin J W. Environ. Sci. Technol., 2011, 46(2): 677-685

    63. [63]

      Scott B F, Moody C A, Spencer C, Small J M, Muir D C, Mabury S A. Environ. Sci. Technol., 2006, 40(20): 6405-6410

    64. [64]

      Trojanowicz M, Koc M. Microchim. Acta, 2013, 180(11-12): 957-971

    65. [65]

      Beesoon S, Webster G M, Shoeib M, Harner T, Benskin J P, Wartin J W. Environ. Health. Persp., 2011, 119(11): 1659-1664

    66. [66]

      Houde M, Czub G, Small J M, Backus S, Wang X, Alaee M, Muir D C. Environ. Sci. Technol., 2008, 42(24): 9397-9403

    67. [67]

      Chen X W, Zhu L Y, Pan X Y, Fang S H, Zhang Y F, Yang L P. Water Res., 2015, 80(5): 235-244

    68. [68]

      NIU Xia-Meng, SHI Ya-Li, ZHANG Chun-Hui, CAI Ya-Qi. Environ. Chem., 2015, 34(8): 1453-1459 牛夏梦, 史亚利, 张春晖, 蔡亚岐. 环境化学, 2015, 34(8): 1453-1459

    69. [69]

      Langlois I, Oehme M. Rapid. Commun. Mass. Spectrom., 2006, 20(5): 844-850

    70. [70]

      de Silva A O, Muir D C, Mabury S A. Environ. Toxicol. Chem., 2009, 28(9): 1801-1814

    71. [71]

      Naile J E, Garrison A W, Avants J K, Washington J W. Chemosphere, 2016, 144(11): 1722-1728

    72. [72]

      Benskin J P, Ikonomou M G, Woudneh M B, Cosgrove J R. J. Chromatogr. A, 2012(5), 1247: 165-170

    73. [73]

      Kärrman A, Elgh-Dalgren K, Lafossas C, Møskeland T. Environ. Chem., 2011, 8(4): 372-380

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  • 收稿日期:  2016-11-10
  • 修回日期:  2017-02-12
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