SORPTION OF ERYTHROSINE ONTO SILICA GEL MODIFIED BY CETYLPYRIDINIUM BROMIDE

O. Guzenko, O. Zhukovetska, D. M. Mukienko, V. V. Shopovalenko, A. Chebotarev, D. Snigur
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Abstract

In the current paper, adsorbent based on silica gel L 40/100 modified with cetylpyridinium bromide was obtained. The presence of cetylpyridinium cations on the silica gel surface was confirmed by the diffuse reflectance infrared fourier transform spectroscopy method. The sorption conditions of erythrosine from dilute aqueous solutions with the proposed sorbent were studied and optimized. It is shown that the use of modified silica gel allows efficient (>95%) extraction of erythrosine from aqueous solutions. Under optimal sorption conditions (pH 7, sorbent dosage 0.1 g and sorption time is 15 min), the sorption capacity of modified erythrosine sorbents was determined. It is shown that, with increasing temperature, a change in the isotherm type from the H‑type to the L‑type is observed. This change can be explained by the aggregation of erythrosin in solution, which is a competitive sorption process. It was shown that adsorption isotherms were well described by the Langmuir equation. Thermodynamic studies have made it possible to establish the spontaneous sorption. The desorption of erythrosine from the surface of silica gel modified with cetylpyridinium bromide was studied. It is shown that when using solutions of sulfuric acid, sodium hydroxide and distilled water, desorption does not occur. It was shown that the most effective eluent is solution of sodium dodecylsulfate in alkaline medium, and desorption of erythrosine occurs due to the destruction of ion pairs of dye anions with cetylpyridinium cations fixed on the surface. The data obtained can then be used to develop a test system for determination of erythrosine via corresponding colorimetric scales or for quantitative solid phase extraction and adsorption-spectroscopic quantification of erythrosine in some real samples.
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十六烷基溴化吡啶改性硅胶对红血球的吸附
本文制备了以十六烷基溴化吡啶改性的硅胶l40 /100为吸附剂。用漫反射红外傅立叶变换光谱法证实了十六烷基吡啶阳离子在硅胶表面的存在。研究并优化了该吸附剂对稀水溶液中红外光的吸附条件。结果表明,改性硅胶可有效地(>95%)从水溶液中提取红红素。在最佳吸附条件(pH 7、吸附剂用量0.1 g、吸附时间15 min)下,测定了改性红霉素吸附剂的吸附量。结果表明,随着温度的升高,等温线型由H型转变为L型。这种变化可以解释为红细胞在溶液中的聚集,这是一个竞争性的吸附过程。结果表明,吸附等温线可以用Langmuir方程很好地描述。热力学研究使建立自发吸附成为可能。研究了十六烷基溴化吡啶改性硅胶表面对红外光的解吸。结果表明,当使用硫酸、氢氧化钠和蒸馏水溶液时,不发生脱附。结果表明,碱性介质中十二烷基硫酸钠溶液是最有效的洗脱液,并且由于表面固定有十六烷基吡啶阳离子的染料阴离子离子对被破坏而发生红血球的脱附。所获得的数据可用于开发一套测试系统,通过相应的比色尺度或定量固相萃取和吸附光谱定量的一些实际样品中的红素。
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