High accuracy analysis of low level sulfur in diesel fuel by isotope dilution high resolution ICP-MS, using silicon for mass bias correction of natural isotope ratios

被引:41
作者
Evans, P [1 ]
Wolff-Briche, C [1 ]
Fairman, B [1 ]
机构
[1] LGC Teddington Ltd, Teddington TW11 0LY, Middx, England
关键词
D O I
10.1039/b102288c
中图分类号
O65 [分析化学];
学科分类号
070302 ; 081704 ;
摘要
A novel isotope dilution mass spectrometry method using ICP-MS is presented for establishing high accuracy reference values for sulfur in fossil fuels. The European community Plans to reduce the permitted content of sulfur in fossil fuels. In the case of diesel fuel the 1993 limit of 2000 mug g(-1) is to be reduced to 50 mug g(-1) by the year 2003. The new approach will readily meet the needs set by these new legal limits. Samples were prepared by closed vessel microwave digestion to ensure retention of the volatile sulfur compounds in solution and spike equilibration. The natural and spiked isotopic ratios or S-32/S-34 were then measured using a Finnigan MAT Element magnetic sector ICP-MS operating in medium resolution (R=3000) mode to avoid the spectral interference of O-2 on the sulfur isotopes. The natural isotopic composition Of Sulfur varies in nature and so must be measured in each sample. Here, we demonstrate a novel method in which silicon is used to correct for the effects or mass bias. The isotopic composition of silicon is well characterised and has minimal natural variation. The combined uncertainty of natural ratio measurements in sulfur Solutions and sample digests is about 0.4%. The new ICP-IDMS method shows excellent agreement with the certified values for NIST SRM (SRM2724b) of 427 +/-7 mug g(-1) compared to reference values of 428 +/-4 mug g(-1). There is also good agreement with industry standard methods of analyses for low sulfur diesel. The combined uncertainty Or the new method is 1-2% at <50 <mu>g g(-1). Samples taken from UK retail outlets sold as low sulfur diesel (<50 <mu>g g(-1)) differ from the target sulfur content by up to 15 mug g(-1). This deviation is comparable to the range ill results for recognised routine methods and highlights how improved reference values at these concentrations will aid both the producer and legislator.
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收藏
页码:964 / 969
页数:6
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