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水中臭氧与苯并噻唑反应的动力学研究

Kinetic study of reactions between ozone and benzothiazole in water.

作者信息

Valdés H, Zaror C A, Jekel M

机构信息

Chemical Engineering Department, University of Concepción, P.O. Box: 160-C, Correo 3, Concepción, Chile.

出版信息

Water Sci Technol. 2003;48(11-12):505-10.

Abstract

Benzothiazoles are frequently present in wastewater from rubber related applications, and may be found in surface and underground water bodies causing significant environmental impact. Cost effective treatment processes to deal with such contaminants are needed in both small and large-scale applications. These compounds are poorly biodegradable and could be removed by ozone oxidation before discharge to recipient water courses. Unfortunately, there is limited experimental data reported in the literature on such processes involving benzothiazoles. This article presents experimental data on ozone treatment of benzothiazole (BT), with a view to process design. The effects of pH and radical scavengers on process rate and removal efficiency were assessed at bench scale. Experimental results show that BT could be effectively removed using ozonisation, particularly at pH above 4. The presence of free radical scavengers drastically reduced the BT removal rate even at very low concentrations. Both direct and indirect reactions between ozone and BT were adequately described by second order kinetic schemes, with rate constants estimated at 20 degrees C: kD = 2.3 mol l(-1) s(-1) and kI = 6 x 10(9) mol l(-1) s(-1), respectively. The free radical mechanism accounted for 83-96% of BT removal rate within the pH range 2-9, at 20 degrees C.

摘要

苯并噻唑经常存在于橡胶相关应用产生的废水中,并且可能在地表水和地下水体中被发现,从而造成重大的环境影响。无论是小规模还是大规模应用,都需要具有成本效益的处理工艺来处理此类污染物。这些化合物的生物降解性很差,可以在排放到受纳水体之前通过臭氧氧化去除。不幸的是,文献中报道的关于涉及苯并噻唑的此类工艺的实验数据有限。本文给出了苯并噻唑(BT)臭氧处理的实验数据,旨在进行工艺设计。在实验室规模下评估了pH值和自由基清除剂对处理速率和去除效率的影响。实验结果表明,使用臭氧化可以有效去除BT,特别是在pH值高于4时。即使自由基清除剂浓度很低,其存在也会大幅降低BT的去除率。臭氧与BT之间的直接和间接反应均可用二级动力学模型充分描述,在20℃下估算的速率常数分别为:kD = 2.3 mol l(-1) s(-1)和kI = 6 x 10(9) mol l(-1) s(-1)。在20℃下,在pH值2 - 9范围内,自由基反应机制占BT去除率的83 - 96%。

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