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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Analytical evaluation of a cup-horn sonoreactor used for ultrasound-assisted extraction of trace metals from troublesome matrices
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Analytical evaluation of a cup-horn sonoreactor used for ultrasound-assisted extraction of trace metals from troublesome matrices

机译:杯形超声反应器的分析评估,该超声反应器用于从麻烦的基质中超声提取痕量金属

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In this work, a sample preparation method based on ultrasound-assisted extraction of trace metals from a variety of biological and environmental matrices using a cup-horn sonoreactor is described. Diluted acids (HNO3, HCl and HF) and oxidants (H2O2) were tried for extraction, the extracts being directly analyzed by electrothermal-atomic absorption spectrometry. The cup-horn sonoreactor combines the advantages of probe and bath sonicators, allowing a variety of conditions to be used for metal extraction from troublesome matrices. This system facilitates the use of HF to destroy the silicate lattice, application of simultaneous treatments of up to six samples and short treatment times. Quantitative metal recoveries are achieved from different matrices (animal and vegetal tissues, soil, sediment, fly ash, sewage sludge) under a set of extraction conditions ranging from the use of 3 min sonication time and 3% volume/volume HNO3 for some animal tissues to 40 min sonication time along with 5% volume/volume HNO3 + 20% volume/volume HF for sediment. Vegetal matter required the use of 5% volume/volume HNO3 + 5% volume/volume HF for extraction of some elements.Ultrasound-assisted extraction of Cd, Mn, Pb, Ni and Cr from 16 certified reference materials representing a variety of biological and environmental matrices using the cup-horn sonoreactor is evaluated. Cd, Pb and Mn are more easily extracted from most certified reference materials (CRMs) than Cr and Ni and less stringent conditions can be chosen for the former metals. Metal extractability follows the order of difficulty: animal tissue < vegetal tissue < soil, fly ash, sewage sludge < sediment.
机译:在这项工作中,描述了一种样品制备方法,该方法基于使用杯状声反应器从多种生物和环境基质中超声辅助提取痕量金属。尝试了稀酸(HNO3,HCl和HF)和氧化剂(H2O2)的提取,提取物通过电热原子吸收光谱法直接分析。杯形角超声反应器结合了探头和浴超声仪的优点,允许使用各种条件从麻烦的基质中提取金属。该系统有助于使用HF破坏硅酸盐晶格,同时处理多达六个样品并缩短处理时间。在一组提取条件下,从不同的基质(动物和植物组织,土壤,沉积物,粉煤灰,污水污泥)中获得定量的金属回收率,这些条件包括对某些动物组织使用3分钟超声处理时间和3%体积/体积HNO3至40分钟的超声处理时间,以及5%(体积/体积)的HNO3 + 20%(体积/体积)的HF沉淀物。植物物质需要使用5%体积/体积的HNO3 + 5%体积/体积的HF来萃取某些元素。超声辅助从16种经认证的参比物质中萃取Cd,Mn,Pb,Ni和Cr代表多种生物和生物使用杯状角声反应器评估环境矩阵。从大多数认证参考材料(CRM)中提取Cd,Pb和Mn的可能性要比Cr和Ni的提取容易,对于前一种金属,可以选择不太严格的条件。金属的可提取性遵循困难的顺序:动物组织<植物组织<土壤,粉煤灰,污水污泥<沉积物。

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