Heilmann Jens, Boulyga Sergei F, Heumann Klaus G
Institute of Inorganic Chemistry and Analytical Chemistry, Johannes Gutenberg-University, Duesbergweg 10-14, 55099 Mainz, Germany.
Anal Bioanal Chem. 2004 Sep;380(2):190-7. doi: 10.1007/s00216-004-2658-2. Epub 2004 Jun 30.
Inductively coupled plasma isotope-dilution mass spectrometry (ICP-IDMS) with direct injection of isotope-diluted samples into the plasma, using a direct injection high-efficiency nebulizer (DIHEN), was applied for accurate sulfur determinations in sulfur-free premium gasoline, gas oil, diesel fuel, and heating oil. For direct injection a micro-emulsion consisting of the corresponding organic sample and an aqueous 34S-enriched spike solution with additions of tetrahydronaphthalene and Triton X-100, was prepared. The ICP-MS parameters were optimized with respect to high sulfur ion intensities, low mass-bias values, and high precision of 32S/34S ratio measurements. For validation of the DIHEN-ICP-IDMS method two certified gas oil reference materials (BCR 107 and BCR 672) were analyzed. For comparison a wet-chemical ICP-IDMS method was applied with microwave-assisted digestion using decomposition of samples in a closed quartz vessel inserted into a normal microwave system. The results from both ICP-IDMS methods agree well with the certified values of the reference materials and also with each other for analyses of other samples. However, the standard deviation of DIHEN-ICP-IDMS was about a factor of two higher (5-6% RSD at concentration levels above 100 mircog g(-1)) compared with those of wet-chemical ICP-IDMS, mainly due to inhomogeneities of the micro-emulsion, which causes additional plasma instabilities. Detection limits of 4 and 18 microg g(-1) were obtained for ICP-IDMS in connection with microwave-assisted digestion and DIHEN-ICP-IDMS, respectively, with a sulfur background of the used Milli-Q water as the main limiting factor for both methods.
采用直接进样高效雾化器(DIHEN)将同位素稀释后的样品直接注入等离子体的电感耦合等离子体质谱同位素稀释法(ICP-IDMS),被应用于测定无硫优质汽油、瓦斯油、柴油和取暖油中的硫含量。为了实现直接进样,制备了一种微乳液,该微乳液由相应的有机样品和添加了四氢萘及 Triton X-100 的富含 34S 的水相内标溶液组成。针对高硫离子强度、低质量偏倚值以及 32S/34S 比值测量的高精度,对 ICP-MS 参数进行了优化。为验证 DIHEN-ICP-IDMS 方法,分析了两种有证瓦斯油标准物质(BCR 107 和 BCR 672)。作为比较,采用了一种湿化学 ICP-IDMS 方法,该方法通过将样品置于插入常规微波系统的密闭石英容器中进行微波辅助消解。两种 ICP-IDMS 方法的结果与标准物质的认定值以及其他样品分析结果之间均吻合良好。然而,DIHEN-ICP-IDMS 的标准偏差比湿化学 ICP-IDMS 约高两倍(在浓度高于 100 μg g⁻¹ 时相对标准偏差为 5 - 6%),主要原因是微乳液的不均匀性导致了额外的等离子体不稳定性。对于与微波辅助消解联用的 ICP-IDMS 和 DIHEN-ICP-IDMS,分别获得了 4 μg g⁻¹ 和 18 μg g⁻¹ 的检测限,所使用的超纯水的硫背景是这两种方法的主要限制因素。