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Reduction of o-nitroanisole to o-anisidine by H2S-rich aqueous diethanolamine: A novel process for utilization of H2S-laden gas streams

机译:富含H2S的二乙醇胺水溶液将邻硝基茴香醚还原为邻茴香胺:一种利用富含H2S的气流的新方法

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摘要

H2S-rich aqueous diethanolamine (DEA) solution, which could be obtained from an-fine treatment units (ATUs) of refineries, was utilized to prepare a value-added chemical, o-anisidine from o-nitroanisole (ONA) with co-production of elemental sulfur. The reduction of ONA was carried out under liquid-liquid mode in presence of phase transfer catalyst (PTC), tetrabutyl ammonium bromide (TBAB). The effects of DEA concentration and elemental sulfur loading on the conversion of ONA were suitably utilized to establish the stoichiometry and mechanism of the so-called Zinin reduction using H2S-rich aqueous DEA. The reaction was found to be kinetically controlled with apparent activation energy of 63.6 kJ/mol. The rate of reaction of ONA was also found to be proportional to the concentration of catalyst, to the cube of the concentration of ONA, and to the 1.63 power of the concentration of sulfide. An empirical kinetic model based on experimental observations was developed to correlate the experimentally obtained conversion versus time data. The present work has very high commercial importance as it can replace the conventional Claus process, which gives elemental sulfur as the only product. (c) 2006 Elsevier Ltd. All rights reserved.
机译:可从炼油厂的精细处理单元(ATU)获得的富含H2S的二乙醇胺(DEA)水溶液被用于与邻硝基苯甲醚(ONA)联产制备增值化学品邻氨基苯甲醚元素硫。在相转移催化剂(PTC),四丁基溴化铵(TBAB)的存在下,在液-液模式下进行ONA的还原。 DEA浓度和元素硫负载量对ONA转化率的影响被适当地用于建立化学计算和使用富含H2S的含水DEA进行所谓的Zinin还原的机理。发现该反应是动力学控制的,表观活化能为63.6 kJ / mol。还发现ONA的反应速率与催化剂的浓度,ONA的浓度的立方,和硫化物的浓度的1.63次方成正比。建立了基于实验观察的经验动力学模型,以将实验获得的转化率与时间数据关联起来。目前的工作具有非常高的商业重要性,因为它可以代替传统的克劳斯工艺,该工艺使元素硫成为唯一的产品。 (c)2006 Elsevier Ltd.保留所有权利。

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