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普鲁卡因青霉素G制剂废水的臭氧化处理 第一部分:工艺优化与动力学

Ozonation of Procaine Penicillin G formulation effluent Part I: Process optimization and kinetics.

作者信息

Arslan-Alaton Idil, Caglayan Ali Efe

机构信息

Department of Environmental Engineering, Faculty of Civil Engineering, Istanbul Technical University, 34469/80626 Maslak, Istanbul, Turkey.

出版信息

Chemosphere. 2005 Mar;59(1):31-9. doi: 10.1016/j.chemosphere.2004.10.014.

Abstract

Ozonation characteristics of synthetic Procaine Penicillin G (PPG) formulation effluent were investigated in a semi-batch ozone reactor at different pH (3, 7 and 12), ozone feed rates (600-2600 mg h-1) and COD values (200-600 mg l-1). Ozonation of aqueous PPG effluent resulted in 37 (82)% COD removal after 60 (120) min ozonation when the reaction pH was kept constant at pH=7.900 mg l-1 (corresponding to 50% of the total introduced) ozone was absorbed during a reaction period of 1 h. The effects of increasing the applied ozone dose and the initial COD on the COD abatement rates of PPG effluent were also studied. Results have indicated that increasing the ozone dose and decreasing the COD content both have positive effects on COD removal rates. The significant contribution of the free radical (.OH) reaction pathway to PPG ozonation could be traced using tert-butyl alcohol as the .OH probe compound at varying concentrations. The bimolecular reaction rate constants for the direct reaction of PPG with ozone were found as 152 and 2404 M-1 h-1 at pH=3 and 7, respectively, using the gas phase ozone partial pressures determined from of the outlet gas stream analysis. It could be demonstrated that ozone decomposition to free radicals being triggered by increasing the pH from 3 to 7 is essential for the rate enhancement of PPG effluent ozonation.

摘要

在半间歇式臭氧反应器中,研究了不同pH值(3、7和12)、臭氧进料速率(600 - 2600 mg h⁻¹)和化学需氧量(COD)值(200 - 600 mg l⁻¹)下合成普鲁卡因青霉素G(PPG)制剂废水的臭氧化特性。当反应pH值保持恒定在pH = 7时,PPG废水的臭氧化在60(120)分钟的臭氧化后导致37(82)%的COD去除率。在1小时的反应期间,900 mg l⁻¹(相当于引入总量的50%)的臭氧被吸收。还研究了增加臭氧投加量和初始COD对PPG废水COD去除率的影响。结果表明,增加臭氧投加量和降低COD含量均对COD去除率有积极影响。使用不同浓度的叔丁醇作为·OH探针化合物,可以追踪自由基(·OH)反应途径对PPG臭氧化的显著贡献。根据出口气流分析确定的气相臭氧分压,PPG与臭氧直接反应的双分子反应速率常数在pH = 3和7时分别为152和2404 M⁻¹ h⁻¹。可以证明,将pH值从3提高到7引发臭氧分解为自由基对于提高PPG废水臭氧化速率至关重要。

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