Yazgan Mustafa S, Kinaci Cumali, Toroz Ismail
Environmental Engineering Department, Istanbul Technical University, Maslak, Istanbul, Turkey.
J Environ Sci Health B. 2003 Nov;38(6):843-53. doi: 10.1081/PFC-120025564.
Ozonation of alpha endosulfan and the effects of some parameters such as pH, temperature and partial pressure on ozonation were investigated and the kinetic constants were calculated in this study. Alpha endosulfan solutions were ozonated in a lab-scale semi-batch reactor under variable experimental conditions. Increase in dissolved ozone concentration had a positive effect on oxidation rate. Alpha endosulfan could be removed up to 94% at pH 4 for an ozonation time of 60 minutes. The oxidation reaction was found to be of second order and of first order with respect to both ozone and alpha endosulfan. The temperature dependent reaction expression of alpha endosulfan was obtained as kd = (1.889 exp(- 2.21 x 10(-3)/T). It was concluded that, although the rate of reaction was lower than the rate of other pesticide oxidation reported in the literature. alpha endosulfan presented an obvious reaction to ozonation.
本研究考察了α-硫丹的臭氧化过程以及pH、温度和分压等参数对臭氧化的影响,并计算了动力学常数。在实验室规模的半间歇反应器中,在可变实验条件下对α-硫丹溶液进行臭氧化。溶解臭氧浓度的增加对氧化速率有积极影响。在pH为4、臭氧化时间为60分钟时,α-硫丹的去除率可达94%。发现氧化反应对臭氧和α-硫丹均为二级反应且对两者均为一级反应。α-硫丹的温度依赖反应表达式为kd = (1.889 exp(- 2.21 x 10(-3)/T)。得出的结论是,尽管反应速率低于文献报道的其他农药氧化速率,但α-硫丹对臭氧化表现出明显的反应。