Yenisoy-Karakaş Serpil, Gaga Eftade O, Cankur Oktay, Karakaş Duran
University of Abant Izzet Baysal, Faculty of Art and Sciences, Department of Chemistry, 14280 Bolu, Turkey. yenisoykarakas
Talanta. 2009 Oct 15;79(5):1298-305. doi: 10.1016/j.talanta.2009.05.044. Epub 2009 Jun 6.
Simultaneous and multi-elemental method was optimized to determine 35 elements in 274 coarse and fine aerosol samples by using HR-ICP-MS. The procedures were validated. Measurement uncertainties of all elements including sampling uncertainties were calculated by applying bottom-up approach. The average recoveries obtained for each element ranged between 79% and 129% using NIST SRM 1648, urban dust. The calculated uncertainties of the analytical methods were between 2.9% and 18% for both sample types. The major contributions to the uncertainty budget come from the calibration curves, repeatability and volume of air.
采用高分辨率电感耦合等离子体质谱(HR-ICP-MS)对同时多元素分析法进行了优化,以测定274个粗、细气溶胶样品中的35种元素。对该方法进行了验证。采用自下而上的方法计算了包括采样不确定度在内的所有元素的测量不确定度。使用NIST SRM 1648城市灰尘,各元素的平均回收率在79%至129%之间。两种样品类型的分析方法计算不确定度在2.9%至18%之间。不确定度预算的主要贡献来自校准曲线、重复性和空气体积。