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首页> 外文期刊>Journal of separation science. >Use of tube radial distribution of ternary mixed carrier solvents for introduction of absorption reagent for metal ion separation and online detection into capillary
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Use of tube radial distribution of ternary mixed carrier solvents for introduction of absorption reagent for metal ion separation and online detection into capillary

机译:利用管径向分布的三元混合载体溶剂引入吸收剂以分离金属离子并在线检测毛细管

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When ternary mixed solvents consisting of water-hydrophilic/hydrophobic organic solvents are fed into a micro-space under laminar flow conditions, the solvent molecules are radially distributed in the micro-space. The specific fluidic behavior of the solvents is called the "tube radial distribution phenomenon (TRDP)". A novel capillary chromatography method was developed based on the TRDP that creates the inner major and outer minor phases in a tube, where the outer phase acts as a pseudo-stationary phase. This is called "tube radial distribution chromatography (TRDC)". In this study, Chrome Azurol S as an absorption reagent was introduced into the TRDC system for metal ion separation and online detection. The fused-silica capillary tube (75 μm id and 110 cm length) and water-acetonitrile-ethyl acetate mixture (3:8:4 volume ratio) including 20 mM Chrome Azurol S as a carrier solution were used. Metal ions, i.e. Co(II), Cu(II), Ni(II), Al(III), and Fe(III), as models were injected into the present TRDC system. Characteristic individual absorption characteristics and elution times were obtained as the result of complex formation between the metal ions and Chrome Azurol S in the water-acetonitrile- ethyl acetate mixture solution. The elution times of the metal ions were examined based on their absorption behavior; Co(II), Ni(II), Al(III), Fe(III), and Cu(II) were eluted in this order over the elution times of 4.7-6.8 min. The elution orders were determined from the molar ratios of metal ion to Chrome Azurol S and Irving-Williams series for bivalent metal ions.
机译:当在层流条件下将由亲水/疏水性有机溶剂组成的三元混合溶剂供入微空间时,溶剂分子径向分布在微空间中。溶剂的特定流体行为称为“管子径向分布现象(TRDP)”。开发了一种基于TRDP的新型毛细管色谱方法,该方法在管中创建内部主要相和外部次要相,其中外部相充当假固定相。这称为“管径向分布色谱法(TRDC)”。在这项研究中,作为吸收剂的铬Azurol S被引入TRDC系统中,用于金属离子分离和在线检测。使用的熔融石英毛细管(内径为75μm,长度为110 cm)和水-乙腈-乙酸乙酯的混合物(体积比为3:8:4)包含20 mM的Chrome Azurol S作为载体溶液。作为模型的金属离子,即Co(II),Cu(II),Ni(II),Al(III)和Fe(III),被注入到当前的TRDC系统中。在水-乙腈-乙酸乙酯混合物溶液中金属离子与铬天青S之间形成络合物,从而获得了独特的吸收特性和洗脱时间。根据金属离子的吸收行为检查其洗脱时间; Co(II),Ni(II),Al(III),Fe(III)和Cu(II)的洗脱时间为4.7-6.8分钟。根据二价金属离子的金属离子与Chrome Azurol S和Irving-Williams系列的摩尔比确定洗脱顺序。

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