Department of Chemical Engineering and Environmental Technology, University of Oviedo, E-33071 Oviedo, Spain.
J Hazard Mater. 2010 May 15;177(1-3):183-9. doi: 10.1016/j.jhazmat.2009.12.015. Epub 2009 Dec 5.
The wet oxidation of thiocyanate has been investigated in a semi-batch reactor at temperatures between 423 and 473 K and pressures between 6.1 x 10(3) and 1.0 x 10(4)kPa in the presence of copper(II) sulphate as catalyst. The effects of copper concentration, initial thiocyanate concentration, pressure and temperature on the reaction rate were analyzed and the main products of reaction were identified. A kinetic model for the Cu-catalyzed reaction is here proposed, including temperature, oxygen concentration, and the reduction of Cu(2+) to Cu(+) that gives an accurate prediction of the oxidation process under the assayed conditions. A mechanistic model based on the formation of a transition complex between a copper cation and two thiocyanate anions has been proposed for the catalytic wet oxidation.
在半分批反应器中,研究了硫氰酸盐在 423 到 473 K 之间的温度和 6.1 x 10(3) 到 1.0 x 10(4)kPa 之间的压力下的湿式氧化,在硫酸铜作为催化剂的存在下。分析了铜浓度、初始硫氰酸盐浓度、压力和温度对反应速率的影响,并确定了反应的主要产物。这里提出了一个用于 Cu 催化反应的动力学模型,包括温度、氧浓度以及 Cu(2+)还原为 Cu(+),这为在测试条件下的氧化过程提供了准确的预测。基于铜阳离子和两个硫氰酸根阴离子之间形成过渡络合物的机理模型,提出了用于催化湿式氧化的模型。