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Preconcentration of selenium by living bacteria immobilized on silica for microwave induced plasma optical emission spectrometry with continuous powder introduction

机译:固定在二氧化硅上的活菌对硒的富集,用于连续引入粉末的微波诱导等离子体发射光谱法

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摘要

The analytical potential of living bacteria Lactobacillus plantarum for the preconcentration of selenium from mineral water and beer samples followed by the selenium determination by continuous powder introduction microwave induced plasma-optical emission spectrometry (CPI-MIP-OES) has been investigated. The use of the bacteria immobilized on silica permits on-column preconcentration of selenium with minimum sample pretreatment by the pH adjustment. Experimental conditions for the preconcentration were optimized and the mechanism of the biosorption was investigated. Results showed that the use of the preconcentration stage leads to the substantial lowering of the detection limit of selenium by OES. The detection limit of 52 ng g~(-1) by the CPI-MIP-OES was achieved which corresponds to 0.06 ng mL~(-1) in the sample solution regarding the preconcentration factor of 1000. Precision of 5 replicate measurements expressed as relative standard deviation was about 3%. The utility of the method was demonstrated in the determination of selenium in hard drinking water ERM-CA011a as well as in mineral water and beer samples.
机译:已经研究了活细菌植物乳杆菌对从矿泉水和啤酒样品中富集硒,然后通过连续粉末引入微波诱导等离子体发射光谱法(CPI-MIP-OES)测定硒的分析潜力。固定在二氧化硅上的细菌的使用可以对硒进行柱上预富集,并通过调节pH值进行最少的样品预处理。优化了预浓缩的实验条件,并研究了生物吸附的机理。结果表明,使用预浓缩阶段会导致OES显着降低硒的检出限。 CPI-MIP-OES的检出限为52 ng g〜(-1),对应于1000的预浓缩因子,相当于样品溶液中的0.06 ng mL〜(-1)。5次重复测量的精度表示为相对标准偏差约为3%。该方法的实用性在测定硬质饮用水ERM-CA011a以及矿泉水和啤酒样品中的硒时得到了证明。

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