首页> 外文期刊>Analytical methods >A simple and rapid microwave-assisted extraction method using polypropylene tubes for the determination of total mercury in environmental samples by flow injection chemical vapour generation inductively coupled plasma mass spectrometry (FI-CVG-ICP-MS)
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A simple and rapid microwave-assisted extraction method using polypropylene tubes for the determination of total mercury in environmental samples by flow injection chemical vapour generation inductively coupled plasma mass spectrometry (FI-CVG-ICP-MS)

机译:一种简单,快速的微波辅助萃取方法,采用聚丙烯管,通过流动注射化学蒸汽发生电感耦合等离子体质谱法(FI-CVG-ICP-MS)测定环境样品中的总汞

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摘要

Presented here is the development of a simple, rapid and cost-effective microwave-assisted extraction (MAE) method using closed polypropylene tubes (PP) and a domestic microwave oven for the determination of total mercury in a wide variety of environmental samples (coal, coal-fly ash, sediments and sludges). Extraction of mercury was achieved using microwave energy with a mixture of HNO3-thiourea as extractant for subsequent determination by flow injection chemical vapour generation inductively coupled plasma mass spectrometry (FI-CVG-ICP-MS). Two types of reference materials certified for mercury; Coal fly ash NIST-1633b and estuarine sediment ERM-CC-580 were taken to optimize extraction parameters such as microwave power, extraction time and sample amount for the quantitative recovery of mercury. The supernatant obtained upon centrifugation was used for analysis. Quantitative recoveries of mercury were obtained using 30% HNO3-0.02% thio-urea mixture with 30 s irradiation time at a microwave power of >640 W for 500 mg sample weight. The results obtained here were in good agreement with the certified values with an overall precision of better than 5% in all the cases. The limit of detection of the proposed method in conjunction with FI-CVG-ICP-MS was obtained to be 0.9 ng g~(-1). A closed-microwave extraction procedure based on US EPA method (3051A) was used for the determination of mercury for comparison purposes. The optimized MAE procedure was successfully applied to real samples.
机译:本文介绍了一种简单,快速且经济高效的微波辅助萃取(MAE)方法的开发,该方法使用密闭聚丙烯管(PP)和家用微波炉来测定各种环境样品(煤,粉煤灰,沉积物和淤泥)。使用微波能与HNO3-硫脲的混合物作为萃取剂进行汞的萃取,然后通过流动注射化学蒸汽产生感应耦合等离子体质谱(FI-CVG-ICP-MS)进行测定。两种标准的汞标准参考物质;采用粉煤灰NIST-1633b和河口沉积物ERM-CC-580来优化提取参数,例如微波功率,提取时间和样品量,以便定量回收汞。离心获得的上清液用于分析。对于500 mg的样品重量,使用30%的HNO3-0.02%的硫脲混合物,照射时间为30 s,微波功率> 640 W时,可以定量回收汞。在所有情况下,此处获得的结果均与认证值高度吻合,总体精度优于5%。所提出的方法与FI-CVG-ICP-MS结合的检测限为0.9 ng g〜(-1)。为了进行比较,使用了基于US EPA方法(3051A)的封闭微波萃取程序测定汞。优化的MAE程序已成功应用于实际样品。

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