首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Combination of extraction induced by microemulsion-breaking and pre-concentration using magnetic nanoparticles for multi-element determination of Cd, Cr, Cu and Pb in gasoline samples using energy dispersive X-ray fluorescence spectrometry
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Combination of extraction induced by microemulsion-breaking and pre-concentration using magnetic nanoparticles for multi-element determination of Cd, Cr, Cu and Pb in gasoline samples using energy dispersive X-ray fluorescence spectrometry

机译:使用能量分散X射线荧光光谱法使用磁性纳米粒子使用磁性纳米粒子进行微乳液 - 断裂和预浓度诱导的微乳液和预浓度的组合使用能量分散X射线荧光光谱法测定汽油样品中的CD,Cr,Cu和Pb

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The combination of the extraction induced by microemulsion-breaking (EIMB) and preconcentration using the solid-phase extraction (SPE) using magnetic nanoparticles (MNP) for determination of Cd, Cr, Cu and Pb in gasoline samples by energy dispersive X-ray fluorescence spectrometry (EDXRF) is proposed. The procedure was based in the formation of a three components microemulsion: gasoline as organic phase, n-propyl alcohol as an emulsifier and 0.01 mol L-1 HNO3 as aqueous phase. After formation of the microemulsion, Iris/nitric acid buffer (0.1 mol L-1, pH 8.5) was used for the microemulsion breaking and adjust the pH simultaneously. Subsequently, an amount of CoFe2O4 nanoferrite was added to the medium for the retention and preconcentration of the species of interest present in the aqueous phase of the broken emulsion. After a contact time between the nanoparticle and the mixture, the solid phase was separated from the supernatant with the aid of a magnet and, after drying, the determination of the analytes was performed directly on the solid support (nanoferrite) by EDXRF. To guarantee the better extraction conditions, some experimental variables were investigated. The recommended proportion for the microemulsion formation was 65% (v v(-1)) n-propyl alcohol, 20% (v v(-1)) gasoline, and 15% (v v(-1)) nitric acid solution. For the solid phase extraction, 100 mg of nanoferrite and a contact time of 10 min were recommended. Enrichment factors between 10 and 470 times were found for the analytes. The limits of detection obtained by the proposed method were 24, 2.8, 16 and 9.7 mu g L-1 for Cd, Cr, Cu and Pb, respectively. The precisions for determination of each element were expressed as relative standard deviations (RSD) using standard solutions containing 0.2 and 0.4 mg L-1 of each analyte and were between 2.0 and 8.1%. The developed method was applied in the determination of Cd, Cr, Cu and Pb in gasoline samples.
机译:通过使用磁性纳米粒子(MNP)的微乳液 - 破碎(EIMB)和前浓缩的萃取的组合使用磁性纳米粒子(MNP)通过能量分散X射线荧光测定汽油样品中Cd,Cr,Cu和Pb的Cd,Cr,Cu和Pb提出了光谱法(EDXRF)。该方法是基于三种组分微乳液的形成:汽油作为有机相,N-丙醇作为乳化剂和0.01mol L-1 HNO 3作为水相。在形成微乳液后,使用虹膜/硝酸缓冲液(0.1mol L-1,pH8.5)用于微乳液分解并同时调节pH。随后,向培养基中加入一定量的COFE 2 O 4纳米丙铁,用于保留残留乳液水相中的感兴趣物种的保留和前浓缩。在纳米粒子和混合物之间的接触时间之后,通过磁铁从上清液中分离固相,并且在干燥后,通过EDXRF直接在固体载体(NaNOferrite)上进行分析物的测定。为了保证更好的提取条件,研究了一些实验变量。微乳液形成的推荐比例为65%(V(-1))N-丙醇,20%(V V(-1))汽油和15%(V(-1))硝酸溶液。对于固相萃取,建议使用100mg纳米铁矿和10分钟的接触时间。发现分析物的10至470次之间的富集因子。通过所提出的方法获得的检测限为CD,Cr,Cu和Pb的24,2.8,16和9.7μg1-1。使用含有0.2和0.4mg L-1的标准溶液,将每个元素测定的精度表示为相对标准偏差(RSD),所述标准溶液在每个分析物中含有0.2和0.4mg L-1,均为2.0-8.1%。在汽油样品中的Cd,Cr,Cu和Pb的测定中施加开发方法。

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