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On-line microextraction of metal traces for subsequent determination by plasma atomic emission spectrometry using pH peak focusing countercurrent chromatography

机译:在线痕量微量金属萃取,随后通过使用pH峰聚焦逆流色谱的等离子体原子发射光谱法测定

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Metal ions were highly efficiently enriched by pH peak focusing high-speed countercurrent chromatography. The peak intensity for a 10-mL standard sample in the effluent stream was increased over 100-fold compared to conventional plasma atomic emission spectrometry, Ca, Cd, Cu, Mg, Mn, Ni, and Zn are chromatographically extracted in a basic organic stationary phase containing a complex-forming reagent such as bis(2-ethylhexyl) phosphoric acid, After the sample solution is introduced into the column, metal ions remain around the sharp pH border formed between acidic and basic zones, moving toward the column outlet. Enriched metal ions are finally eluted with the sharp pH border as a highly concentrated peak into a volume of less than 100 mu L. We evaluated this method for concentration efficiency in trace determination in tap water using different column diameters. [References: 13]
机译:pH峰聚焦高速逆流色谱法可高效富集金属离子。与常规等离子体原子发射光谱法相比,废水中10毫升标准样品的峰强度提高了100倍以上,在碱性有机固定剂中通过色谱法提取了钙,镉,铜,镁,锰,镍和锌样品溶液引入色谱柱后,金属离子保留在酸性和碱性区域之间形成的尖锐pH边界周围,并向色谱柱出口移动。富集的金属离子最后以尖锐的pH边界作为高度浓缩的峰被洗脱到小于100μL的体积中。我们使用不同的色谱柱直径评估了该方法在自来水中痕量测定中的浓缩效率。 [参考:13]

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