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Science Letters: Structure relationship of nitrochlorobenzene catalytic degradation process in water over palladium-iron bimetallic catalyst

机译:科学快报:钯-铁双金属催化剂上水中硝基氯苯催化降解过程的结构关系

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摘要

Two isomers of nitrochlorobenzene (o-, and p-NCB) were treated by a Pd/Fe catalyst in aqueous solutions through catalytic amination and dechlorination. Nitrochlorobenzenes are rapidly converted to form chloroanilines (CAN) first through an amination process, and then rapidly dechlorinated to become aniline (AN) and Cl, without the involvement of any other intermediate reaction products. The amination and dechlorination reaction are believed to take place predominantly on the surface site of the Pd/Fe catalysts. The dechlorination rate of the reductive degradation of the two isomers of nitrochlorobenzene (o-, and p-NCB) in the presence of Pd/Fe as a catalyst was measured experimentally. In all cases, the reaction rate constants were found to increase with the decrease in the Gibbs free energy (correlation with the activation energy) of NCBs formation; the activation energy of each dechlorination reaction was measured to be 95.83 and 77.05 kJ/mol, respectively for o- and p-NCB. The results demonstrated that p-NCBs were reduced more easily than o-NCBs.
机译:硝基氯苯的两种异构体(邻位和对位NCB)通过Pd / Fe催化剂在水溶液中通过催化胺化和脱氯处理。硝基氯苯首先通过胺化过程迅速转化为氯苯胺(CAN),然后迅速脱氯成为苯胺(AN)和Cl -,而没有任何其他中间反应产物的参与。认为胺化和脱氯反应主要在Pd / Fe催化剂的表面上发生。实验地测量了在Pd / Fe作为催化剂存在下硝基氯苯的两种异构体(邻-和对-NCB)的还原降解的脱氯速率。在所有情况下,发现反应速率常数随NCBs形成的吉布斯自由能(与活化能相关)的降低而增加;对于o-和p-NCB,每个脱氯反应的活化能分别为95.83和77.05 kJ / mol。结果表明,p-NCBs比o-NCBs更容易还原。

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