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水为洗脱剂的静电离子色谱-增强电导检测法测定常见的无机阴离子(英文)
引用本文:Kozaki D,Shi CH,Tanaka K,Nakatani N. 水为洗脱剂的静电离子色谱-增强电导检测法测定常见的无机阴离子(英文)[J]. 色谱, 2012, 30(4): 361-364. DOI: 10.3724/SP.J.1123.2011.12049
作者姓名:Kozaki D  Shi CH  Tanaka K  Nakatani N
作者单位:1International Development and Cooperation, Hiroshima University, Higashi-hiroshima 739-8529, Japan 2Department of Chemistry, Tsinghua University Beijing, 100084 China 3Faculty of Environmental Systems, Rakuno Gakuen University, 582, Bunkyodai-Midorimachi, Ebetsu, Hokkaido 069-8501, Japan
基金项目:supported from Fellow ships Program for Young Scientists of the Japan Society for the Promotion of Scienceon FY2011
摘    要:To enhance the conductivity detection sensitivity of common anions(Na-anions) in electrostatic ion chromatography(EIC) by elution with water,a conductivity enhancement column packed with strong acid cation exchange resin in the H-form was inserted between an octadecyl silane(ODS)-silica separation column modified with zwitterionic surfactant(CHAPS: 3-{(3-cholamidopropyl)-dimethylammonio}propanesulfonate) and a conductivity detector.Specifically,the Na-anion pairing is converted to H-anion pairing after the EIC separation and then detected sensitively by the conductivity detector.The effects of conductivity enhancement and suppression in the EIC by the enhanced conductivity detection were characterized for the common strong acid anions such as SO2-4,Cl-,NO-3,I-and ClO-4 and weak acid anions such as F-,NO-2,HCOO-,CH3COO-and HCO-3.For the conductivity enhancement effect in the EIC,it is found that the conductivity of measured for all strong acid anions(Na-anions) was enhanced according to the theoretical conductivity predicted for H-anions and that of the measured for weak acid anions was suppressed depending on their pKa of H-anions.For the calibration linearity in the EIC,the strong acid anions were linear(r2=0.99-1.00) because the degree of dissociation is almost 1.0 over all the concentration range and that of the weak acid anions was non-linear because the degree of dissociation decreased by increasing the concentration of the weak acid anions.In conclusion,the EIC by enhanced conductivity detection was recognized to be useful only for the strong acid anions in terms of conductivity detection and calibration linearity.

关 键 词:electrostatic ion chromatography(EIC)  common anions  conductivity enhancement  water eluent
收稿时间:2011-12-19

Enhanced conductivity detection of common inorganic anions in electrostatic ion chromatography using water eluent
Kozaki Daisuke,Shi Chao-Hong,Tanaka Kazuhiko,Nakatani Nobutake. Enhanced conductivity detection of common inorganic anions in electrostatic ion chromatography using water eluent[J]. Chinese journal of chromatography, 2012, 30(4): 361-364. DOI: 10.3724/SP.J.1123.2011.12049
Authors:Kozaki Daisuke  Shi Chao-Hong  Tanaka Kazuhiko  Nakatani Nobutake
Affiliation:1International Development and Cooperation, Hiroshima University, Higashi-hiroshima 739-8529, Japan 2Department of Chemistry, Tsinghua University Beijing, 100084 China 3Faculty of Environmental Systems, Rakuno Gakuen University, 582, Bunkyodai-Midorimachi, Ebetsu, Hokkaido 069-8501, Japan
Abstract:To enhance the conductivity detection sensitivity of common anions (Na-anions) in electrostatic ion chromatography (EIC) by elution with water, a conductivity enhancement column packed with strong acid cation exchange resin in the H-form was inserted between an octadecyl silane (ODS)-silica separation column modified with zwitterionic surfactant (CHAPS: 3-{(3-cholamidopropyl)-dimethylammonio} propanesulfonate) and a conductivity detector. Specifically, the Na-anion pairing is converted to H-anion pairing after the EIC separation and then detected sensitively by the conductivity detector. The effects of conductivity enhancement and suppression in the EIC by the enhanced conductivity detection were characterized for the common strong acid anions such as SO4(2-), Cl(-), NO3(-), I(-) and ClO4(-) and weak acid anions such as F(-), NO2(-), HCOO(-), CH3COO(-) and HCO3(-). For the conductivity enhancement effect in the EIC, it is found that the conductivity of measured for all strong acid anions (Na-anions) was enhanced according to the theoretical conductivity predicted for H-anions and that of the measured for weak acid anions was suppressed depending on their pKa of H-anions. For the calibration linearity in the EIC, the strong acid anions were linear (r2 = 0.99 - 1.00) because the degree of dissociation is almost 1.0 over all the concentration range and that of the weak acid anions was non-linear because the degree of dissociation decreased by increasing the concentration of the weak acid anions. In conclusion, the EIC by enhanced conductivity detection was recognized to be useful only for the strong acid anions in terms of conductivity detection and calibration linearity.
Keywords:electrostatic ion chromatography(EIC)  common anions  conductivity enhancement  water eluent
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