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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Simultaneous determination of hydride (As, Bi, Ge, Sb, Se, Sn) and Hg and non-hydride forming (Ca, Fe, Mg, Mn, Zn) elements in sonicate slurries of analytical samples by microwave induced plasma optical emission spectrometry with dual-mode sample int
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Simultaneous determination of hydride (As, Bi, Ge, Sb, Se, Sn) and Hg and non-hydride forming (Ca, Fe, Mg, Mn, Zn) elements in sonicate slurries of analytical samples by microwave induced plasma optical emission spectrometry with dual-mode sample int

机译:微波诱导等离子体发射光谱法同时测定分析样品超声浆中的氢化物(As,Bi,Ge,Sb,Se,Sn)和Hg和非氢化物(Ca,Fe,Mg,Mn,Zn)元素双模样本整数

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摘要

A slurry sampling method for the simultaneous determination of hydride forming (As, Bi, Ge, Sb, Se, Sri) and Hg and non-hydride forming (Ca, Fe, Mg, Mn, Zn) elements, without total sample digestion has been developed using the commercial dual-mode sample introduction system (MSIS) coupled with microwave induced plasma optical emission spectrometry (MIP-OES) from biological and environmental reference materials and real samples. The main advantage of this system is its simultaneous determination of elements that form volatile vapor species and elements that do not, without any instrumental changes. Optimization of reaction, nebulization and instrumental conditions was performed to characterize the new system. Slurry concentration up to 4% m/v (particles < 100 mu m) prepared in 10% HNO3 containing 100 gL of decanol, by application of ultrasonic agitation, was used with calibration by the standard addition technique. An ultrasonic probe was used to homogenize the slurry in the quartz cup just before its introduction into the reactionebulization system; the multimode sample introduction system (MSIS) combines the benefits of nebulization and vapor generation in a single device. Detection limits (LOD, 3(sigma blank), peak area) of 0.07, 0.29, 0.25, 0.10, 0.12, 0.14, 0.11, 0.28, 0.42, 0.02, 0.21 and 0.34 mu g g(-1) were obtained for As, Bi, Ge, Sb, Se, Sri, Hg, Ca, Fe, Mg, Mn and Zn, respectively. The relative standard deviations were ca. 10%, adequate for slurry analysis. To test the accuracy, six certified reference materials were analyzed with the analyte concentrations mostly in the mu g g(-1) level. Measured concentrations are in satisfactory agreement with certified values for the biological reference materials (LUTS-1, DOLT-2) and environmental reference materials (PACS-1, GWB 07302, NIST 2710, NBS 1633b), all adequate for slurry sampling. The method was successfully applied to the determination of the elements in real samples (coal fly ash, lake sediment, sewage). The method requires small amounts of reagents and reduces contamination and losses. (C) 2007 Elsevier B.V. All rights reserved.
机译:一种无需同时进行样品消解即可同时测定氢化物形成(As,Bi,Ge,Sb,Se,Sri)和Hg和非氢化物形成(Ca,Fe,Mg,Mn,Zn)元素的浆液采样方法使用商业双模样品引入系统(MSIS)与微波诱导等离子体发射光谱法(MIP-OES)结合,从生物和环境参考材料以及真实样品中开发出该产品。该系统的主要优点是无需任何仪器更改即可同时测定形成挥发性蒸气物质的元素和不形成挥发性蒸气的元素。优化反应,雾化和仪器条件以表征新系统。通过超声搅拌,在含有100 gL癸醇的10%HNO3中制得的浆料浓度最高为4%m / v(颗粒<100μm),用于通过标准添加技术进行校准。在将石英杯引入反应/雾化系统之前,使用超声波探头将其均匀化。多模式样品引入系统(MSIS)在单个设备中结合了雾化和蒸汽产生的优点。对于As,Bi,检测限(LOD,3(σ空白),峰面积)分别为0.07、0.29、0.25、0.10、0.12、0.14、0.11、0.28、0.42、0.02、0.21和0.34 mu gg(-1) ,Ge,Sb,Se,Sri,Hg,Ca,Fe,Mg,Mn和Zn。相对标准偏差为。 10%,足以进行浆液分析。为了测试准确性,对六种经认证的参考物质进行了分析,分析物的浓度大部分处于μg g(-1)的水平。所测量的浓度与生物参考物质(LUTS-1,DOLT-2)和环境参考物质(PACS-1,GWB 07302,NIST 2710,NBS 1633b)的认证值令人满意,所有这些都足以进行浆液采样。该方法已成功应用于实际样品中的元素测定(粉煤灰,湖泊沉积物,污水)。该方法需要少量试剂并减少污染和损失。 (C)2007 Elsevier B.V.保留所有权利。

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