首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Eco-scale non-chromatographic method for mercury speciation in fish using formic acid extraction and UV-Vis photochemical vapor generation capacitively coupled plasma microtorch optical emission spectrometry
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Eco-scale non-chromatographic method for mercury speciation in fish using formic acid extraction and UV-Vis photochemical vapor generation capacitively coupled plasma microtorch optical emission spectrometry

机译:使用甲酸萃取和UV-VIS光化学蒸汽产生电容耦合等离子体微电流光发射光谱法的eCO级非色谱法

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摘要

An eco-scale method based on UV-Vis photochemical vapor generation and detection in a capacitively coupled plasma microtorch by optical emission measurement with a low resolution microspectrometer was developed for Hg speciation as Hg2+ and CH3Hg+ in seafood. Our proposal provides a simpler, greener analytical method in terms of sample preparation and derivatization, and use of small-scale instrumentation. Coupling of UV-Vis photo-reactor with plasma microtorch is a very promising approach to develop eco-scale methods for Hg speciation in seafood with major advantages to classical methods. The most distinctive characteristic of the method is the use of a single reagent, formic acid, for the extraction of Hg species from solid sample and as medium for the photo-induced cold vapor generation. An amount of 0.2 g lyophilized sample was subjected to ultrasound assisted extraction in 10 ml HCOOH 98-100% at 50 degrees C for 3 h then on line UV-Vis photo-induced derivatization in 0.6 mol1(-1) HCOOH was achieved. Total Hg and Hg2+ species were quantified against Hg2+ external standard solutions by measuring emission at 253.652 nm in a low power/low Ar consumption (15 W/100 ml min(-1)) plasma source with Maya2000 Pro (Ocean Optics) microspectrometer. Under UV exposure both Hg2+ and CH3Hg+ species were converted with same efficiency to cold vapor, while natural room light (Vis) achieved selectively derivatization of Hg2+. Concentration of CH3Hg+ was obtained by subtracting Hg2+ amount from total. The proposed method was compared with Thermal Decomposition Atomic Absorption Spectrometry ecoscale method developed for the determination of total Hg from solid sample and CH3Hg+ according to the procedure recommended by the European Commission. The limits of detection/quantification provided by the proposed method were 9/27 kg(-1) total Hg and 4.8/14.4 lig kg(-1) Hg2+. Study of accuracy against certified reference materials gave recovery of 99 +/- 6% total Hg, 99 +/- 9% Hg2+ and 99
机译:基于UV-VIS光化学蒸气产生和通过具有低分辨率微旋光器的电容耦合等离子体微冲击器检测的ECO级法,以HG2 +和海鲜CH3HG +开发了具有低分辨率微光谱的光学发射测量。我们的提案在样品制备和衍生化方面提供了更简单,更环保的方法,以及使用小规模仪器。 UV-Vis光电反应器与等离子体微冲击器的偶联是一种非常有希望的方法,可以为古典方法具有主要优势的海产地区的HG形态的生态级方法。该方法的最独特特征是使用单个试剂,甲酸,用于从固体样品中提取Hg物种,作为光致冷蒸气产生的培养基。在10mL HCOOH 98-100%的50℃下进行0.2g冻干样品的量,在50℃下进行超声辅助萃取,然后在0.6mol1(-1)HCOOH中的线UV-Vis光诱导的衍生化。通过测量低功率/低AR消耗量(15W / 100mL min(-1))等离子体源,通过Maya2000 Pro(Ocean Optics)微侦探,通过测量253.652nm的发射来定量Hg2 +外标溶液的总Hg和Hg2 +物种。在紫外线暴露下,HG2 +和CH3HG +物种以相同的效率转化为冷蒸气,而自然房间光(VI)达到HG2 +的选择性衍生化。通过从总量减去Hg2 +量获得CH 3 HG +的浓度。将所提出的方法与热分解原子吸收光谱法,其根据欧盟委员会推荐的程序测定来自固体样品和CH3HG +的总Hg。所提出的方法提供的检测/定量的限制为9/27千克(-1)总Hg和4.8 / 14.4 lig kg(-1)hg2 +。针对认证参考资料的准确性的研究得到了99 +/- 6%的回收率,99 +/- 9%HG2 +和99

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