首页> 外文会议>International Conference on Bioinformatics and Biomedical Engineering >Combination with Gas Flotation Preconcentration Based on Ternary Association Complexes and Flame Atomic Absorption Spectrometry Detection for Trace Heavy Metals in Complicated Water Samples
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Combination with Gas Flotation Preconcentration Based on Ternary Association Complexes and Flame Atomic Absorption Spectrometry Detection for Trace Heavy Metals in Complicated Water Samples

机译:基于三元关联复合物的气浮预浓缩的组合,并对复杂水样中的痕量重金属进行火焰原子吸收光谱检测

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A ternary association complex [MI{sub}(n+1)][MB]{sup}+, which were formed by metals (M{sup}(n+)), iodine anion (I) and basic dye methylene blue (C{sub}16H{sub}18ClN{sub}3S·3H{sub}2O, MB), was applied in the preconcentration of trace heavy methylene blue (Ag, Cu, Cd, Pb) in complicated water samples, such as high salty solution, by gas flotation. The ternary association complexes was floated and absorbed into 5mL of toluene, and the toluene phase was directly determined by the flame atomic absorption spectrometry (FAAS). Several parameters, including flotation pH, volume of KI and methylene blue solution, and selection of organic solvent were studied. Under the optimum conditions, the enrichment factor for 200ng/mL interest elements almost equal to the ratio of the aqueous solution volume to organic solvent volume. The detection limits for Cu, Pb, Cd and Ag were 0.9, 0.8, 0.5 and 0.4ng/mL, respectively. The interference of coexist elements to the determination were also studied. The developed method was applied in the determination of trace Cu, Pb, Cd and Ag in artificial seawater, the average recoveries of interested metals were about 89.1%-92.9%.
机译:三元缔合物[MI {子}(N + 1)] [MB] {SUP} +,这是由金属形成的(M {SUP}(N +)),碘阴离子(I)和碱性染料色亚甲基蓝(C {子} 16H {子} 18ClN {子} 3S·3H {子} 2O,MB),在微量重亚甲蓝的富集(银,铜,镉,铅)复杂的水样,如高盐在施加溶液中,通过气体浮选。三元缔合物漂浮并吸收到5ml甲苯和甲苯相直接通过火焰原子吸收光谱法测定。几个参数,包括pH值浮选,KI的体积和亚甲基蓝溶液,和有机溶剂的选择进行了研究。在最佳条件下,为将200ng富集因子/ mL的感兴趣的元素几乎等于水溶液体积与有机溶剂的体积的比率。对于铜,铅,镉和银的检出限为0.9,0.8,0.5和0.4ng / mL时,分别。共存元素测定的干扰进行了研究。所提出的方法是在微量铜,铅,镉和银的在人工海水中测定施加,感兴趣的金属的平均回收率为约89.1%-92.9%。

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