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Liquid marbles as microreactors for qualitative and quantitative inorganic analyses

机译:液体大理石作为微反应器,用于定性和定量无机分析

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Conventional qualitative analysis of ions from inorganic salts and acid–base and redox titrations require relatively large volumes of solution and hence require more reagent and generate relatively large amount of waste. Liquid marbles can be used to cut down the volume of solution and by extension the amount of reagent and volume of waste generated. Liquid marbles were used for qualitative analysis of ions from inorganic salt solutions and acid–base and redox titrations. This was compared with the conventional methods which require milliliters of solution. Fumed silica or fluorinated sericite clay particles of varying degrees of hydrophobicity were used to prepare the marbles. A drop of a test reagent was then placed on the marble, merging with it and initiating a chemical reaction. The characteristic reactions between a salt solution and a test reagent in the marbles were observed provided the reaction was clearly marked by a color change. Concentrations, calculated from the volume at the end-point, compared closely (p ≤ 0.05) with the known ones as well as those calculated from the bulk titration method that requires milliliters of solution. This indicates that the liquid marble method which rather requires microliters of solutions is reliable. These findings are especially important in microfluidics which utilizes microliters of solutions.
机译:对无机盐,酸碱和氧化还原滴定中的离子进行常规定性分析需要相对大量的溶液,因此需要更多的试剂并产生相对大量的废物。液体大理石可用于减少溶液量,并通过扩展试剂量和产生的废物量来减少。液态大理石用于定性分析无机盐溶液中的离子以及酸碱和氧化还原滴定法。将其与需要毫升溶液的常规方法进行比较。使用疏水度不同的气相二氧化硅或氟化绢云母粘土颗粒制备大理石。然后将一滴测试试剂放在大理石上,与大理石融合并引发化学反应。观察到大理石中盐溶液和测试试剂之间的特征性反应,只要该反应通过颜色变化清楚地标记即可。从终点的体积计算得出的浓度与已知浓度以及通过需要溶液的毫升数的滴定法计算得出的浓度(p≤0.05)进行了比较。这表明液体大理石方法是可靠的,它需要微升溶液。这些发现在利用微升溶液的微流控中尤其重要。

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