Sarrion MN, Santos FJ, Galceran MT
Departament de Quimica Analitica, Facultat de Quimica, Universitat de Barcelona, Spain.
Anal Chem. 2000 Oct 15;72(20):4865-73. doi: 10.1021/ac000479d.
An in situ derivatization solid-phase microextraction method has been developed for the determination of haloacetic acids (HAAs) in water. The analytical procedure involves derivatization of HAAs to their methyl esters with dimethyl sulfate, headspace sampling using solid-phase microextraction (SPME), and gas chromatography-ion trap mass spectrometry (GC/ITMS) determination. Parameters affecting both derivatization efficiency and head-space SPME procedure, such as the selection of the SPME coating, derivatization-extraction time and temperature, and ionic strength, were optimized. The commercially available Carboxen-poly(dimethylsiloxane) (CAR-PDMS) fiber appears to be the most suitable for the determination of HAAs. Moreover, the formation of HAA methyl esters was dramatically improved (up to 90-fold) by the addition of tetrabutylammonium hydrogen sulfate (4.7 micromol) to the sample as ion-pairing agent in the derivatization step. The precision of the in situ derivatization/HS-SPME/GC/ITMS method evaluated using an internal standard gave relative standard deviations (RSDs) between 6.3 and 11.4%. The method was linear over 2 orders of magnitude, and detection limits were compound-dependent, but ranged from 10 to 450 ng/L. The method was compared with the EPA method 552.2 for the analysis of HAAs in various water samples, and good agreement was obtained. Consequently, in situ derivatization/HS-SPME/GC/ITMS is proposed for the analysis of HAAs in water.
已开发出一种原位衍生化固相微萃取方法用于测定水中的卤乙酸(HAAs)。分析程序包括用硫酸二甲酯将HAAs衍生化为其甲酯、使用固相微萃取(SPME)进行顶空采样以及气相色谱 - 离子阱质谱(GC/ITMS)测定。对影响衍生化效率和顶空SPME程序的参数,如SPME涂层的选择、衍生化 - 萃取时间和温度以及离子强度进行了优化。市售的碳分子筛 - 聚二甲基硅氧烷(CAR - PDMS)纤维似乎最适合用于测定HAAs。此外,在衍生化步骤中向样品中加入硫酸氢四丁铵(4.7 μmol)作为离子对试剂,可显著提高HAA甲酯的形成(高达90倍)。使用内标评估的原位衍生化/顶空固相微萃取/气相色谱/离子阱质谱法的精密度给出的相对标准偏差(RSD)在6.3%至11.4%之间。该方法在2个数量级上呈线性,检测限因化合物而异,但范围为10至450 ng/L。将该方法与美国环保署(EPA)方法552.2用于分析各种水样中的HAAs进行了比较,结果吻合良好。因此,建议采用原位衍生化/顶空固相微萃取/气相色谱/离子阱质谱法分析水中的HAAs。