首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >Technical Note: Fast two-dimensional GC-MS with thermal extraction for anhydro-sugars in fine aerosols
【24h】

Technical Note: Fast two-dimensional GC-MS with thermal extraction for anhydro-sugars in fine aerosols

机译:技术说明:快速二维GC-MS,具有精细气溶胶中的糖糖热萃取

获取原文
       

摘要

A fast two-dimensional gas chromatography (GC-MS) method that uses heart-cutting and thermal extraction (TE) and requires no chemical derivatization was developed for the determination of anhydro-sugars in fine aerosols. Evaluation of the TE-GC-GC-MS method shows high average relative accuracy (90%), reproducibility (10% relative standard deviation), detection limits of less than 3 ng/L, and negligible carryover for levoglucosan, mannosan, and galactosan markers. TE-GC-GC-MS- and solvent extraction (SE)-GC-MS-measured levoglucosan concentrations correlate across several diverse types of biomass burning aerosols. Because the SE-GC-MS measurements were taken 8 years prior to the TE-GC-GC-MS ones, the stability of levoglucosan is established for quartz filter-collected biomass burning aerosol samples stored at ultra-low temperature (50 C). Levoglucosan concentrations (w/w) in aerosols collected following atmospheric dilution near open fires of varying intensity are similar to those in biomass burning aerosols produced in a laboratory enclosure. An average levoglucosan-mannosan-galactosan ratio of 15:2:1 is observed for these two aerosol sets. TE-GC-GC-MS analysis of atmospheric aerosols from the US and Africa produced levoglucosan concentrations (0.01–1.6 g/m3) well within those reported for aerosols collected globally and examined using different analytical techniques (0.004–7.6 g/m3). Further comparisons among techniques suggest that fast TE-GC-GC-MS is among the most sensitive, accurate, and precise methods for compound-specific quantification of anhydro-sugars. In addition, an approximately twofold increase in anhydro-sugar determination may be realized when combining TE with fast chromatography.
机译:一种快速的二维气相色谱(GC-MS)方法,用于使用心脏切割和热萃取(TE),并且不需要进行化学衍生化,用于测定细气溶胶中的胆糖。 TE-GC-GC-MS方法的评价显示出高平均相对精度(90%),再现性(相对标准偏差10%),少于3 ng / L的检测限,左葡聚糖,甘露甘松植物和半乳糖的携带可忽略不计标记。 TE-GC-GC-MS-和溶剂萃取(SE)-GC-MS测量的左葡聚糖浓度呈含有几种不同类型的生物质燃烧气溶胶相关。因为在TE-GC-GC-MS-MS中的8年之前进行SE-GC-MS测量,所以为石英过滤器收集的生物质燃烧气溶胶样品进行左葡聚糖的稳定性,以储存在超低温度(50℃)。在不同强度的开口燃烧附近的大气稀释后收集的气溶胶中的左葡萄糖浓度(w / w)类似于在实验室外壳中产生的生物质燃烧气溶胶的气溶胶。对于这两个气溶胶套,观察到平均左葡聚糖 - 甘露烷 - 半乳糖比例为15:2:1。来自美国和非洲的大气气溶胶的TE-GC-GC-MS分析,在全球收集的气溶胶中均匀地产生左葡聚糖浓度(0.01-1.6g / m 3),并使用不同的分析技术检查(0.004-7.6g / m 3)。技术之间的进一步比较表明,快速的TE-GC-GC-MS是含有苯二糖的复合特异性定量的最敏感,准确,精确的方法。此外,在结合TE时结合快速色谱时,可以实现大致两倍的糖糖的增加。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号