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首页> 外文期刊>Analytical and bioanalytical chemistry >Determination of lead in sediments and sewage sludge by on-line hydride-generation axial-view inductively-coupled plasma optical-emission spectrometry using slurry sampling
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Determination of lead in sediments and sewage sludge by on-line hydride-generation axial-view inductively-coupled plasma optical-emission spectrometry using slurry sampling

机译:氢化物发生轴向视图电感耦合等离子体发射光谱在线检测泥浆中沉积物和污水污泥中的铅

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摘要

Among the "traditional" hydride-forming elements, lead is probably the most difficult, and its determination in this form has rarely been reported in the literature. In this paper a simple and rapid method, axial-view inductively-coupled plasma optical-emission spectrometry using on-line hydride generation (HG-ICP-OES) from samples prepared as slurry, is proposed for determination of lead in environmental samples. The samples (20-50 mg, particle size <= 120 mu m) were treated with 1 mL aqua regia in a 40-kHz ultrasonic bath for 60 min. The slurry was diluted to a final volume of 50 mL with a 10% m/v solution of (NH4)(2)S2O8. The concentrations of NaBH4, tartaric acid, and (NH4)(2)S2O8, used for on-line plumbane generation were optimized by means of a complete factorial analysis applied to an aqueous standard solution and to the slurry of a sediment certified reference material (CRM). External calibration against aqueous standards in the concentration range 10-100 mu g L-1 was used for analysis of six CRM-three marine sediments, one river sediment, and two sewage sludges. Analysis of the filtered slurry showed that Pb was only partially extracted into the liquid phase. Several major concomitants tested did not affect the Pb signal. The detection limit (3s, n = 10) for 20 mg sample in a final volume of 50 mL was 5.0 mu g g(-1). Tin was the only other hydride-forming analyte that could be determined satisfactorily with Pb; for tin the detection limit was 1.0 mu g g(-1). The values obtained for Pb and Sn were not significantly different from the certified concentrations, according to the t-test at the 95% confidence level. Nine river sediments collected locally were also analyzed and the concentrations were in agreement with results obtained after total digestion.
机译:在“传统的”氢化物形成元素中,铅可能是最困难的,而且以这种形式测定铅的文献很少报道。本文提出了一种简单,快速的方法,即使用在线氢化物发生法(HG-ICP-OES)从以浆液形式制备的样品中进行轴向观察电感耦合等离子体发射光谱法,用于测定环境样品中的铅。将样品(20-50 mg,粒度<= 120微米)在40 kHz超声浴中用1 mL王水处理60分钟。用(NH4)(2)S2O8的10%m / v溶液将浆液稀释至50 mL的最终体积。用于在线铅烷生成的NaBH4,酒石酸和(NH4)(2)S2O8的浓度通过对标准水溶液和经沉积物认证的参考物质的浆液进行的完全因子分析进行了优化( CRM)。使用浓度范围为10-100μgL-1的水性标准进行外部校准,用于分析六种CRM-三种海洋沉积物,一种河流沉积物和两种污水污泥。对过滤的浆液的分析表明,Pb仅部分萃取到液相中。测试的几个主要伴随物不影响Pb信号。最终体积为50 mL的20 mg样品的检出限(3s,n = 10)为5.0μg g(-1)。锡是唯一可以用Pb令人满意地确定的其他形成氢化物的分析物。对于锡,检出限为1.0μg g(-1)。根据在95%置信水平下的t检验,获得的Pb和Sn值与认证浓度无显着差异。还分析了当地收集的九种河流沉积物,其浓度与完全消化后获得的结果一致。

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