Boulanger Bryan, Vargo John, Schnoor Jerald L, Hornbuckle Keri C
University of Iowa, Department of Civil and Environmental Engineering, SC 4105, Iowa City, Iowa 52240, USA.
Environ Sci Technol. 2004 Aug 1;38(15):4064-70. doi: 10.1021/es0496975.
Widespread use of perfluorooctane surfactants has led to ubiquitous presence of these chemicals in biological tissues. While perfluorooctane surfactants have been measured in blood and liver tissue samples of fish, birds, and mammals in the Great Lakes region, data for the aqueous concentrations of these compounds in the Great Lakes or other ambient waters is lacking. Sixteen Great Lakes water samples were analyzed for eight perfluorooctane surfactants. The monitored perfluorooctane surfactants were quantitatively determined using single quadrupole HPLC/MS and qualitatively confirmed using ion trap MS/MS. Additionally, PFOS was quantitatively confirmed using triple quadrupole LC/MS/MS. Concentrations of PFOS and PFOA in the two lakes ranged from 21-70 and 27-50 ng/L, respectively. Analysis also showed the presence of PFOS precursors, N-EtFOSAA (range of 4.2-11 ng/L) and FOSA (range of 0.6-1.3 ng/L), in all samples above the LOQ. PFOSulfinate, another precursor, was identified at six of eight locations with a concentration range, when present, of <2.2-17 ng/L. Other PFOS precursors, N-EtFOSE, PFOSAA, and N-EtFOSA were not observed at any of the sampling locations. These are the first reported concentrations of perfluorooctane surfactants in Great Lakes water and the first report of PFOS precursors in any water body.
全氟辛烷表面活性剂的广泛使用导致这些化学物质在生物组织中普遍存在。虽然在五大湖地区的鱼类、鸟类和哺乳动物的血液和肝脏组织样本中检测到了全氟辛烷表面活性剂,但缺乏关于这些化合物在五大湖或其他环境水体中的水相浓度数据。对16个五大湖水样进行了8种全氟辛烷表面活性剂的分析。使用单四极杆HPLC/MS对监测的全氟辛烷表面活性剂进行定量测定,并使用离子阱MS/MS进行定性确认。此外,使用三重四极杆LC/MS/MS对全氟辛烷磺酸进行定量确认。两个湖泊中全氟辛烷磺酸和全氟辛酸的浓度分别为21-70纳克/升和27-50纳克/升。分析还表明,所有高于定量限的样本中均存在全氟辛烷磺酸前体N-乙基全氟辛烷磺酸酰胺(范围为4.2-11纳克/升)和全氟辛烷磺酸(范围为0.6-1.3纳克/升)。在八个地点中的六个地点发现了另一种前体全氟辛烷亚磺酸盐,其浓度范围(如有)为<2.2-17纳克/升。在任何采样地点均未观察到其他全氟辛烷磺酸前体N-乙基全氟辛烷磺酸乙酯、全氟辛烷磺酸酰胺和N-乙基全氟辛烷磺酸酰胺。这些是首次报道的五大湖水中全氟辛烷表面活性剂的浓度,也是首次报道的任何水体中全氟辛烷磺酸前体的情况。