首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Extraction of arsenic(III) in aqueous two-phase systems: A new methodology for determination and speciation analysis of inorganic arsenic
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Extraction of arsenic(III) in aqueous two-phase systems: A new methodology for determination and speciation analysis of inorganic arsenic

机译:氧化砷(III)的水性两相系统:无机砷测定和形态分析的新方法

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This work utilizes the liquid-liquid extraction technique of aqueous two-phase systems (ATPS) formed by a polymer and electrolyte to develop a novel methodology for the extraction, determination, and speciation analysis of inorganic arsenic. To optimize the methodology, the following parameters were studied: pH of the system, nature of the ATPS-forming electrolyte and the polymer, tie-line length (TLL) of the system, type and concentration of extractants, and the mass ratio of the top and bottom phases. The highest extraction (% E = 98%) was obtained for an ATPS composed of L64 + Na2SO4 + H2O, at pH = 6.00, TLL = 33.55% w/w using the ammonium pyrrolidine dithiocarbamate (APDC) extractant in a molar ratio (APDC/As(III)) of 960, and with a mass ratio of 1/4. In these same conditions, As(V) was not extracted satisfactorily (%E = 18%) to ATPS top phase, with a separation factor equal to 530 after three extractions, showing the great potential of the system for the speciation analysis of inorganic arsenic. Moreover, the method was validated employing HG-ICP OES with a coefficient of determination of 0.9957 and limits of detection and quantification equal to 0.20 mu g kg(-1) and 0.66 mu g kg(-1), respectively, proving that the method is capable of detecting the low concentrations required by legislation. The relative standard deviation (RSD) values varied between 4.88 and 9.45%, and the RSD in inter-day precision was 11.07%, which are in accordance with the limits of the validation guide used by the National Institute of Metrology, Quality and Technology, COD-CGCRE-008. Furthermore, relative error rates ranged from - 7.44 to 9.90% and recovery percentages were between 92.6 and 110% for the accuracy studies. This method was also applied in a spiked tap water sample, presenting a recovery value equal to 87.10%.
机译:该作品利用由聚合物和电解质形成的水性两相系统(ATP)的液 - 液提取技术,以开发一种新的无机砷的提取,测定和形态分析的新方法。为了优化方法,研究了以下参数:系统的pH,ATPS形成电解质的性质和聚合物,萃取剂的系,型和浓度的系列和浓度,以及质量比顶部和底部阶段。获得由L64 + Na 2 SO 4 + H 2 O组成的ATP,在pH = 6.00,TLL = 33.55%w / w以摩尔比以摩尔比(APDC / As(iii))960,质量比为1/4。在这些相同的条件下,由于(v)未令人满意地(%e = 18%)至ATPS顶相,在三次提取后的分离因子等于530,显示出系统的巨大潜力,用于无机砷的形态分析。此外,验证了使用0.9957的测定系数的HG-ICP OE的方法,并分别等于0.20μg(-1)和0.66μg(-1)的检测和定量的限制证明了该方法能够检测立法所需的低浓度。相对标准偏差(RSD)值在4.88%和9.45%之间变化,日内的RSD精度为11.07%,这是符合国家计量和技术研究所使用的验证指南的限制, COD-CGCRE-008。此外,对于准确性研究,从-7.44至9.90%的相对误差率范围为-7.44至9.90%,恢复百分比为92.6至110%。该方法还应用于尖刺的自来水样品中,呈现出等于87.10%的回收值。

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