首页> 外文期刊>Spectroscopy Letters >Method development for simultaneous determination of transition (Au, Ag, Cd, Cu, Mn, Ni, Pb, Zn) and noble (Pd, Pt, Rh) metal volatile species by microwave- induced plasma spectrometry using ultrasonic micronebulizer dual capillary sample introduction system
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Method development for simultaneous determination of transition (Au, Ag, Cd, Cu, Mn, Ni, Pb, Zn) and noble (Pd, Pt, Rh) metal volatile species by microwave- induced plasma spectrometry using ultrasonic micronebulizer dual capillary sample introduction system

机译:利用超声微雾化器双毛细管样品引入系统通过微波诱导等离子体光谱法同时测定过渡金属(Au,Ag,Cd,Cu,Mn,Ni,Pb,Zn)和贵金属(Pd,Pt,Rh)挥发性物质的方法开发

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摘要

The commercial ultrasonic nebulizer NOVA-DUO (Optolab, Warsaw, Poland) has been evaluated for the simultaneous determination of transition (Au, Ag, Cd, Cu, Mn, Ni, Pb, Zn) and noble (Pd, Pt, Rh) volatile metal species by microwave induced plasma-optical emission spectrometry (MIP-OES). Simultaneous mixing and nebulization of the two solutions (acidified sample and reductant) on the piezoelectric transducer, with the possibility of flow rate adjustment, permits a wide variation of sensitivity. The vapor-phase species were rapidly transported via a stream of Ar carrier to an MIP-OES for simultaneous multi-element determination. A univariate approach and simplex optimization procedure was used to achieve optimized conditions and derive analytical figures of merit. Analytical performance of the ultrasonic nebulization system was characterized by determination of the limits of detection (LODs) and precision (RSDs) with the ultrasonic nebulizer/dual capillary system (USN/DCS) observed at 15μL min ~(-1) flow rate. An improvement in detection limits was achieved compared with pneumatic nebulization. Detection limits are superior to conventional pneumatic nebulization of elements. The experimental concentration detection limits for simultaneous determination, calculated as the concentration giving a signal equal to three times of standard deviation of the blank (LOD, 3σ_(blank) criterion, peak height), were 2.49, 1.75,3.39, 2.13, 4.80, 6.21, 4.26, 2.01, 7.65, 3.92, and 4.65ng mL ~(-1) for Au, Ag, Cd, Cu, Mn, Ni, Pb, Pd, Pt, Rh, and Zn, respectively. The method offers relatively good precision (RSD ranged from 8 to 12%) for liquid analysis and microsampling capability. The accuracy of the method was verified by the use of digested certified reference materials (NRCC TORT-1, NIES CRM-13, NIST SRM 2710, INCT SBF-4) and by aqueous standard calibration technique. The measured elements content in reference materials was in satisfactory agreement with the certified values.
机译:已对商用超声雾化器NOVA-DUO(波兰华沙的Optolab)进行了评估,以同时测定过渡态(Au,Ag,Cd,Cu,Mn,Ni,Pb,Zn)和稀有(Pd,Pt,Rh)挥发性物质微波诱导等离子体发射光谱法(MIP-OES)分析金属物种。在压电换能器上同时混合和雾化两种溶液(酸化的样品和还原剂),并可能进行流量调节,从而允许灵敏度的广泛变化。气相物质通过Ar载体流快速传输到MIP-OES,用于同时进行多元素测定。使用单变量方法和单纯形优化程序来实现优化条件并得出品质因数分析。超声雾化系统的分析性能通过使用超声雾化器/双毛细管系统(USN / DCS)在15μLmin〜(-1)流量下确定检测限(LOD)和精密度(RSD)来表征。与气动雾化相比,检测限得到了改善。检测极限优于传统的气动雾化元件。用于同时测定的实验浓度检测下限为2.49、1.75、3.39、2.13、4.80,计算得出的信号浓度等于空白标准偏差(LOD,3σ_(空白)标准,峰高)的三倍,对于Au,Ag,Cd,Cu,Mn,Ni,Pb,Pd,Pt,Rh和Zn分别为6.21、4.26、2.01、7.65、3.92和4.65ng mL〜(-1)。该方法为液体分析和微量采样提供了相对较好的精度(RSD范围为8%至12%)。该方法的准确性通过使用经过消解的认证参考材料(NRCC TORT-1,NIES CRM-13,NIST SRM 2710,INCT SBF-4)和水标准校准技术来验证。标准物质中的测得元素含量与认证值相符。

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