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GC-MS 分析大气气溶胶中的水溶性有机物:用于优化硅烷衍生化以同时分析羧酸和糖的响应面方法。

GC-MS analysis of water-soluble organics in atmospheric aerosol: response surface methodology for optimizing silyl-derivatization for simultaneous analysis of carboxylic acids and sugars.

机构信息

Department of Chemistry, University of Ferrara, Italy.

出版信息

Anal Chim Acta. 2011 Mar 18;689(2):257-64. doi: 10.1016/j.aca.2011.01.047. Epub 2011 Jan 31.

Abstract

This paper describes the development of a derivatization procedure - silylation using N,O-bis(trimethylsilyl)-trifluoroacetamide (BSTFA) - for the simultaneous GC-MS analysis of a wide range of water-soluble organics in atmospheric aerosols. The reaction operating conditions were optimized using the response surface methodology (RSM) including central composite design (CCD) in order to achieve the highest response for a large number of dicarboxylic acids and sugars. The factors considered were: (i) reaction temperature (50-90°C), (ii) the reaction duration (60-120 min), (iii) reagent concentrations (10-100% of the total solution volume) and (iv) pyridine concentration (0-50% of the derivatization reagent). On the basis of RSM and experimental evidence, the optimum derivatization conditions were defined as reaction temperature of 75°C, reaction duration of 70 min, BSTFA reagent concentration of 55% and pyridine concentration of 35%. The optimized protocol was extended to a broader range of 22 target analytes that are relevant chemical markers, i.e., 15 carboxylic acids and 7 sugars. In addition, the applicability of the optimized procedure was verified in environmental matrices from PM filters collected under different conditions, i.e., different seasons (summer vs. winter), different sampling sites (urban vs. rural), different particle size dimensions (PM(2.5) vs. PM(1)).

摘要

本文描述了一种衍生化程序的开发 - 使用 N,O-双(三甲基硅基)-三氟乙酰胺 (BSTFA) 的硅烷化反应 - 用于大气气溶胶中多种水溶性有机物的同时 GC-MS 分析。反应操作条件使用响应面法 (RSM) 进行了优化,包括中心复合设计 (CCD),以实现大量二羧酸和糖的最高响应。考虑的因素包括:(i)反应温度 (50-90°C),(ii)反应时间 (60-120 分钟),(iii)试剂浓度 (总溶液体积的 10-100%) 和 (iv)吡啶浓度 (衍生化试剂的 0-50%)。基于 RSM 和实验证据,确定了最佳衍生化条件为反应温度 75°C、反应时间 70 分钟、BSTFA 试剂浓度 55%和吡啶浓度 35%。优化后的方案扩展到更广泛的 22 种目标分析物,即 15 种羧酸和 7 种糖,这些分析物都是相关的化学标志物。此外,还验证了优化程序在不同条件下收集的 PM 过滤器中的环境基质中的适用性,即不同季节 (夏季与冬季)、不同采样地点 (城市与农村)、不同粒径尺寸 (PM(2.5) 与 PM(1))。

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