Le Moullec Sophie, Truong Lina, Montauban Cécile, Begos Arlette, Pichon Valérie, Bellier Bruno
Département Analyse Chimique, Centre d'Etudes du Bouchet, B.P. 3, 91710 Vert-le-Petit, France.
J Chromatogr A. 2007 Jan 19;1139(2):171-7. doi: 10.1016/j.chroma.2006.11.022. Epub 2006 Nov 28.
The analysis of alkyl methylphosphonic acids (AMPAs) constitutes an important subject for verifying the compliance to the Chemical Weapons Convention (CWC). Indeed, alkyl methylphosphonic acids are the degradation products of V and G nerve agents such as VX, sarin or soman. Lowering the limits of detection of analytical methods for complex aqueous matrices implies the introduction of concentration and clean-up steps in the whole analytical process. Therefore a molecular imprinted polymer (MIP) has been previously developed for the selective extraction and the concentration of the alkyl methylphosphonic acids. Unfortunately, the selective retention process on this MIP has involved the development of hydrogen bonds and so does not allow the direct percolation of aqueous samples. A change of solvent is then necessary and can be performed using solid-phase extraction (SPE) with conventional non selective hydrophobic sorbents. Two polymeric sorbents, Oasis HLB and HR-P resins, were selected for their high specific surface area. The extraction recoveries obtained on both sorbents were compared and the Oasis HLB sorbent was further selected and used for the percolation of acidified aqueous samples. An optimised SPE procedure was then applied to concentrate an aqueous soil extract spiked with isobutyl methylphosphonic acid (iBMPA) and cyclopentyl methylphosphonic acid (cPMPA) that was further cleaned-up by passing through the MIP. The resulting LC-MS full scan chromatograms highlight the clean-up effect of the SPE-MIP association by the removal of the matrix substances and the preservation of 95% of the compounds of interest.
烷基甲基膦酸(AMPA)的分析是核查是否符合《化学武器公约》(CWC)的一个重要课题。事实上,烷基甲基膦酸是VX、沙林或梭曼等V类和G类神经毒剂的降解产物。降低复杂水性基质分析方法的检测限意味着在整个分析过程中要引入浓缩和净化步骤。因此,之前已开发出一种分子印迹聚合物(MIP)用于选择性萃取和浓缩烷基甲基膦酸。不幸的是,这种MIP上的选择性保留过程涉及氢键的形成,因此不允许水性样品直接渗滤。那么就需要更换溶剂,可使用具有常规非选择性疏水吸附剂的固相萃取(SPE)来进行。选择了两种聚合物吸附剂,Oasis HLB和HR-P树脂,因其具有较高的比表面积。比较了两种吸附剂上获得的萃取回收率,进一步选择了Oasis HLB吸附剂用于酸化水性样品的渗滤。然后应用优化的SPE程序浓缩加标了异丁基甲基膦酸(iBMPA)和环戊基甲基膦酸(cPMPA)的土壤水提取物,该提取物再通过MIP进一步净化。所得的液相色谱-质谱全扫描色谱图突出了SPE-MIP联用通过去除基质物质以及保留95%的目标化合物所产生的净化效果。