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Mechanism of 5-amino-2-formylbenzene sulfonic acid formation during reduction of 4,4'-dinitrostilbene-2,2'-disulfonic acid by Zero-Valent Iron

机译:零价铁还原4,4'-二硝基苯乙烯-2,2'-二磺酸过程中5-氨基-2-甲酰基苯磺酸形成的机理

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摘要

5-Amino-2-formylbenzene sulfonic acid(ABAS)as a by-product during reduction of 4,4'-dinitrostilbene-2,2'-disulfonic acid(DNS)by Zero-Valent Iron has been detected.Experiments show that the pH and temperature are the most important factors controlling the formation of ABAS.In addition,diluted solution of DNS(<0.001 mol/L)favors me formation of ABAS other than 4,4'-diaminostilbene-2,2'-disulfonic acid(DSD).Competitive oxidative reactions in dark with the cleavage of C=C double bond by Fe(OH)~(2+)between DNS and DSD may occur during the reduction process.In addition,we provide mechanistic explanations for the pH,temperature and initial concentration dependences of ABAS formation.Optimized conditions with pH being 5.5 and rapid cooling following incubation have been applied to yield DSD with purity of more than 99.0%.
机译:零价铁还原4,4'-二硝基苯乙烯-2,2'-二磺酸(DNS)过程中的副产物5-氨基-2-甲酰基苯磺酸(ABAS)已被检测到。 pH和温度是控制ABAS形成的最重要因素。此外,DNS(<0.001 mol / L)的稀释溶液有利于ABAS的形成,而不是4,4'-二氨基lb-2,2'-二磺酸(在还原过程中,DNS和DSD之间可能发生Fe(OH)〜(2+)之间的Fe(OH)〜(2+)裂解C = C双键的情况下,在黑暗中发生竞争性氧化反应。此外,我们提供了有关pH,温度的机理解释pH值为5.5并在孵育后迅速冷却的最佳条件已应用于生产DSD,其纯度超过99.0%。

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