Human Exposure and Atmospheric Sciences Division, National Exposure Research Laboratory, US Environmental Protection Agency, Research Triangle Park, NC 27711, USA.
Chemosphere. 2012 Jan;86(3):252-7. doi: 10.1016/j.chemosphere.2011.09.036. Epub 2011 Nov 29.
A growing number of studies now indicate that perfluorinated compounds (PFCs) are globally distributed in the environment. Their widespread distribution and presence in remote locations has led to questions about the importance of atmospheric and oceanic transport. Describing their distribution in surface soils is also an essential but neglected element in developing a comprehensive understanding of their occurrence in the environment. Soils are the critical link between global atmospheric and hydrologic processes where both local and distant contaminants can accumulate and be released into aquatic and terrestrial communities. Because PFC concentrations in soils will influence ground and surface water, wildlife, and crops, methods to accurately measure PFCs in soil are clearly needed. To help answer this need, we developed a method for the analysis of nine perfluorinated carboxylic acids and four perfluorinated sulfonic acids in soil. Samples from six nations (n=10 per nation) were analyzed by LC-MS/MS to demonstrate the method performance parameters and to make preliminary observations about the occurrence of the PFCs in soils in different parts of the world. The resulting method shows acceptable performance characteristics for the target compounds in most soils while documenting the widespread occurrence of PFCs in surface soils.
越来越多的研究表明,全氟化合物(PFCs)在全球范围内广泛分布于环境中。这些化合物在偏远地区的广泛分布和存在引发了人们对大气和海洋传输重要性的关注。描述其在地表土壤中的分布也是全面了解其在环境中存在的重要但被忽视的环节。土壤是全球大气和水文过程的关键环节,本地和远距离的污染物都可以在其中积累并释放到水生和陆地生态系统中。由于土壤中的 PFC 浓度会影响地下水和地表水、野生动物和农作物,因此显然需要能够准确测量土壤中 PFC 的方法。为了满足这一需求,我们开发了一种用于分析土壤中 9 种全氟羧酸和 4 种全氟磺酸的方法。通过 LC-MS/MS 对来自 6 个国家(每个国家 10 个样本)的样本进行了分析,以展示该方法的性能参数,并对不同地区土壤中 PFCs 的存在情况进行初步观察。结果表明,该方法在大多数土壤中对目标化合物具有可接受的性能特征,同时记录了全氟化合物在地表土壤中的广泛存在。