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A new sensitive photometric procedure for the determination of sulfate in fuel ethanol without sample preparation exploiting a flow-batch strategy

机译:一种新的敏感性光度法,用于测定燃料乙醇中的硫酸盐,无需样品制备利用流动批量策略

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摘要

A simple, accurate, and fast flow-batch procedure employing photometric detection for the determination of sulfate in fuel ethanol was developed. After the formation of soluble barium sulfate in alcoholic medium, the remaining barium forms a product with dimethylsulfonazo III (DMS), the absorbance of which was monitored at 655 nm directly in the reaction chamber. The proposed procedure does not require any sample treatment such as dilution. Under the optimized conditions, the technique offers the advantages of low waste generation ( 5 mL), sampling throughput of 35 h(-1), linear response from 0.1-1.5 mg L-1 sulfate, and a limit of detection (95%) and coefficient of variation (n = 6) of 48 mu g L-1 and 1%, respectively. The accuracy was assessed by comparison of results with those obtained by ion-chromatography; no significant difference was observed at the 95% confidence level.
机译:开发了一种简单,准确,快速的流动批量生产,用于测定燃料乙醇中硫酸盐的测定。 在含酒精介质中形成可溶性硫酸钡后,剩余的钡形成具有二甲基硫磺唑III(DMS)的产物,其吸光度直接在反应室中以655nm监测。 所提出的方法不需要任何样品处理,例如稀释。 在优化的条件下,该技术提供了低垃圾发电(< 5 mL)的优点,从0.1-1.5mg l-1硫酸盐的线性响应,线性响应和检测极限(95 %)和变异系数分别为48μg1-1和1%的变异系数(n = 6)。 通过将结果与离子色谱法获得的结果进行比较来评估所述准确度; 在95%的置信水平下观察到没有显着差异。

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