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Coprecipitation of Naphthol Azosulfonates with Organic Coprecipitants and Its Use in Flow-Injection Analysis

机译:萘酚氮磺酸盐与有机共沉淀剂的共沉淀及其在流动注射分析中的应用

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摘要

The coprecipitation of azo compounds based on 4-nitrophenyl- and 4-sulfophenyldiazonium naphthol sulfonates as their diphenylguanidinium ion-pair complexes with analogous compounds of naphthalene-2-sulfonic acid and 4-phenylsulfodiazonium is investigated. The optimization of the coprecipitation is considered based on the notions of the driving force of the cocrystallization of impurities. The optical characteristics ofcolored ion-pair complexes are measured. It is found that the water solubility is decreased most substantially for azosulfonates with hydrophobic nitro groups and with no more than two sulfo groups in different aromatic nuclei, which can lead to a decrease in the detection limit due to reconcentration by coprecipitation, which stimulates the thermodynamic flux of concentrate elution. Coprecipitation is combined with flow-injection analysis in the on-line mode, and new procedures are developed for determining naphthol sulfonates and related azo compounds with the detection limit equal to 0.003 - 0.006 mg/50 mL.
机译:研究了以4-硝基苯基-和4-磺基苯基重氮萘酚磺酸盐为偶氮化合物的二苯基胍鎓离子对络合物与萘-2-磺酸和4-苯基磺基重氮鎓的类似化合物的共沉淀。基于杂质的共结晶的驱动力的概念来考虑共沉淀的最优化。测量了有色离子对络合物的光学特性。已发现,具有疏水性硝基且在不同芳族核中具有不超过两个磺基的偶氮磺酸盐,其水溶性最大程度降低,这可能由于共沉淀再浓缩而导致检测限的降低,从而刺激了热力学。浓缩液洗脱通量。在线模式将共沉淀与流动注射分析相结合,并开发了新的方法来测定萘酚磺酸盐和相关的偶氮化合物,其检出限为0.003-0.006 mg / 50 mL。

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