Development of ion chromatography in Ukraine.

O. Zui
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Abstract

The ways of development of ion chromatography in Ukraine from the eighties of the last century to the present time are shown. The achievements of research institutes, in particular, the Dumansky Institute of Colloid Chemistry and Water Chemistry of the National Academy of Sciences of Ukraine, in the development of ion chromatographic methods for the analysis of organic and inorganic anions in various objects, including natural and drinking waters, are highlighted. Scientists of Ukraine (A.T. Pilipenko, O.V. Zuy, A.V. Terletskaya) compared commercially available sorbents for ion chromatography – HIKS-1, ANIEKS-N and KANK ASt for their use in water analysis. The studies were carried out on an ion chromatograph "Tsvet-3006" with a conductometric detector. It has been shown that ANIEKS-N with a borate eluent is the best sorbent for the determination of organic monocarboxylic acid ions, and KANK ASt with a carbonate-hydrocarbonate eluent – for the determination of inorganic anions. Ion chromatography has been used to solve a number of practical problems: for the separation of oxoanions  iodate, chlorate and bromate in waters, to control the results in the development of chemiluminescent methods for the determination of chloride, nitrite and nitrate, to establish the mechanism of destruction of anionic surfactants under the action of vacuum ultraviolet radiation and corona discharge. The method was applied to the analysis of iodine-containing bottled waters for bromide ions due to the absence of the interference from iodides. The accumulated experience has contributed to the adoption in Ukraine of four state standards for water quality, based on the use of the ion chromatographic method. It is shown that the method of ion chromatography at the present stage is widely used in various sectors of the national economy: to determine the traces of anions in steam condensate of power plants, to control the anionic composition of water at nuclear power plants, to correct water treatment processes at waterworks, in particular, when analyzing chlorite ions in tap water obtained with the use of chlorine dioxide as a disinfectant.
离子色谱法在乌克兰的发展。
介绍了乌克兰离子色谱法从上世纪八十年代到现在的发展情况。重点介绍了研究机构,特别是乌克兰国家科学院杜曼斯基胶体化学和水化学研究所在开发用于分析各种物体(包括天然和饮用水)中的有机和无机阴离子的离子色谱方法方面取得的成就。乌克兰科学家(A.T. Pilipenko, O.V. Zuy, A.V. Terletskaya)比较了市售离子色谱吸附剂- HIKS-1, ANIEKS-N和KANK ASt在水分析中的应用。研究是在带有电导检测器的“Tsvet-3006”离子色谱仪上进行的。结果表明,硼酸盐洗脱液的ANIEKS-N是测定有机单羧酸离子的最佳吸附剂,碳酸盐-碳酸盐洗脱液的KANK - ASt是测定无机阴离子的最佳吸附剂。离子色谱法已被用于解决许多实际问题:用于水中氧阴离子的分离,用于控制氯、亚硝酸盐和硝酸盐的化学发光测定方法的结果,用于建立真空紫外线辐射和电晕放电作用下阴离子表面活性剂的破坏机理。由于没有碘离子的干扰,本方法应用于含碘瓶装水中溴化物离子的分析。积累的经验有助于乌克兰在使用离子色谱法的基础上通过四项国家水质标准。结果表明,现阶段离子色谱法已广泛应用于国民经济的各个部门:测定电厂蒸汽冷凝水中阴离子的痕量,控制核电站水的阴离子组成,纠正自来水厂的水处理工艺,特别是分析用二氧化氯作为消毒剂获得的自来水中的亚氯酸盐离子。
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