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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Novel extraction induced by emulsion breaking as a tool for the determination of trace concentrations of Cu, Mn and Ni in biodiesel by electrothermal atomic absorption spectrometry
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Novel extraction induced by emulsion breaking as a tool for the determination of trace concentrations of Cu, Mn and Ni in biodiesel by electrothermal atomic absorption spectrometry

机译:破乳诱导的新型萃取作为工具通过电热原子吸收光谱法测定生物柴油中的痕量铜,锰和镍

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摘要

This work proposes a novel method for the determination of trace concentrations of Cu, Mn and Ni in biodiesel samples by electrothermal atomic absorption spectrometry. In order to overcome problems related to the organic matrix in the direct introduction of the samples, a new extraction approach was investigated. The method was based on the extraction induced by emulsion breaking, in which metals were transferred from the biodiesel to an acid aqueous phase after formation and breaking of a water-in-oil emulsion prepared by mixing the biodiesel sample with an aqueous solution containing surfactant and nitric acid. Several parameters that could influence the performance of the system were evaluated. Quantitative extractions of the analytes were obtained when the extraction was performed using an emulsifier solution containing 2.1 mol L~(-1) of HNO_3 and 7% m/v of Triton X-100. The extraction time had remarkable influence on the efficiency of the process, being necessary an agitation time of 60 min to achieve maximum extraction. The limits of quantification were below 1 μg L~(-1) for the three analytes under study. The accuracy of the method was tested by application of a recovery test (recovery percentages between 89% and 109% were observed) and by comparison with a well-established method, taken as reference.
机译:这项工作提出了一种通过电热原子吸收光谱法测定生物柴油样品中痕量铜,锰和镍的新方法。为了克服直接引入样品中与有机基质有关的问题,研究了一种新的提取方法。该方法基于通过破乳诱导的提取,其中在形成和破乳后将金属从生物柴油转移到酸性水相,然后破油,该油包水乳通过将生物柴油样品与含有表面活性剂和硝酸。评估了可能影响系统性能的几个参数。当使用含有2.1 mol L〜(-1)的HNO_3和7%m / v的Triton X-100的乳化剂溶液进行萃取时,可以对分析物进行定量萃取。萃取时间对工艺效率有显着影响,需要60分钟的搅拌时间才能达到最大萃取率。三种被分析物的定量限均低于1μgL〜(-1)。通过应用恢复测试(观察到的恢复百分比介于89%和109%之间)并与公认的方法进行比较来测试该方法的准确性。

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