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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Speciation analysis of inorganic arsenic by magnetic solid phase extraction on-line with inductively coupled mass spectrometry determination
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Speciation analysis of inorganic arsenic by magnetic solid phase extraction on-line with inductively coupled mass spectrometry determination

机译:电感耦合质谱法测定磁固相萃取磁固相萃取的无机砷形式分析

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Arsenic, one of the main environmental pollutants and potent natural poison, is a chemical element that is spread throughout the Earth's crust. It is well known that the toxicity of arsenic is highly dependent on its chemical forms. Generally, the inorganic species are more toxic than its organics forms, and As(III) is 60 times more toxic than As(V). In environmental waters, arsenic exists predominantly in two chemical forms: As(III) and As(V). In view of these facts, fast, sensitive, accurate and simple analytical methods for the speciation of inorganic arsenic in environmental waters are required. In this work, a new magnetic solid phase extraction with a hydride generation system was coupled on line with inductively coupled plasma mass spectrometry (MSPE-HGICP-MS). The new system was based on the retention of As(III) and As(V) in two knotted reactors filled with (Fe3O4) magnetic nanoparticles functionalized with [1,5-bis (2-pyridyl) 3-sulfophenylmethylene] thiocarbonohydrazide (PSTH-MNPs). As(III) and total inorganic As were sequentially eluted in different reduction conditions. The concentration of As(V) was obtained by subtracting As(III) from total As. The system runs in a fully automated way and the method has proved to have a wide linear range and to be precise, sensitive and fast. The detection limits found were 2.7 and 3.2 ng/L for As(III) and total As, respectively; with relative standard deviations (RSDs) of 2.5% and 2.7% and a sample throughput of 14.4 h(-1). In order to validate the developed method, several certified reference samples of environmental waters including sea water, were analyzed and the determined values were in good agreement with the certified values. The proposed method was successfully applied to the speciation analysis of inorganic arsenic in well-water and sea water.
机译:砷是主要的环境污染物和有效的自然毒药之一,是一种在地壳中蔓延的化学元素。众所周知,砷的毒性高度依赖于其化学形式。通常,无机物种比其有机体形式更大毒性,并且(III)毒性的60倍,而不是(v)。在环境水域中,砷主要以两种化学形式存在:As(iii)和(v)。鉴于这些事实,需要在环境水域中无机砷的形态进行快速,敏感,准确和简单的分析方法。在这项工作中,用氢化物产生系统的新磁性相萃取在线与电感耦合等离子体质谱(MSPE-HGICP-MS)偶联。新系统基于填充有(Fe3O4)磁性纳米颗粒的两个打结反应器中的(v)的保留基于(iii)和(v)的含有[1,5-双(2-吡啶基)3-硫苯基甲基]硫代羰基肼(PSTH- mnps)。如(iii)和总无机,如在不同的还原条件下依次洗脱。通过从总量减去作为(III)获得的浓度(v)。系统以完全自动化的方式运行,并证明该方法具有宽的线性范围,精确,灵敏和快速。发现的检测限为2.7和3.2ng / l,分别为(III)和总数;具有2.5%和2.7%的相对标准偏差(RSD)和14.4小时的样品吞吐量(-1)。为了验证开发的方法,分析了几种环境水域的认证参考样本,并分析了与经过认证价值观的达成良好的价值观。所提出的方法已成功应用于水和海水中无机砷的形态分析。

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