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中试规模鼓泡塔反应器中葡萄酒厂废水的臭氧化动力学

Ozonation kinetics of winery wastewater in a pilot-scale bubble column reactor.

作者信息

Lucas Marco S, Peres José A, Lan Bing Yan, Li Puma Gianluca

机构信息

Centro de Química, Universidade de Trás-os-Montes e Alto Douro, Apartado 1013, 5001-801 Vila Real, Portugal.

出版信息

Water Res. 2009 Apr;43(6):1523-32. doi: 10.1016/j.watres.2008.12.036. Epub 2009 Jan 3.

Abstract

The degradation of organic substances present in winery wastewater was studied in a pilot-scale, bubble column ozonation reactor. A steady reduction of chemical oxygen demand (COD) was observed under the action of ozone at the natural pH of the wastewater (pH 4). At alkaline and neutral pH the degradation rate was accelerated by the formation of radical species from the decomposition of ozone. Furthermore, the reaction of hydrogen peroxide (formed from natural organic matter in the wastewater) and ozone enhances the oxidation capacity of the ozonation process. The monitoring of pH, redox potential (ORP), UV absorbance (254 nm), polyphenol content and ozone consumption was correlated with the oxidation of the organic species in the water. The ozonation of winery wastewater in the bubble column was analysed in terms of a mole balance coupled with ozonation kinetics modeled by the two-film theory of mass transfer and chemical reaction. It was determined that the ozonation reaction can develop both in and across different kinetic regimes: fast, moderate and slow, depending on the experimental conditions. The dynamic change of the rate coefficient estimated by the model was correlated with changes in the water composition and oxidant species.

摘要

在中试规模的鼓泡塔臭氧氧化反应器中研究了酒厂废水中有机物质的降解情况。在废水的自然pH值(pH 4)下,臭氧作用下化学需氧量(COD)稳步降低。在碱性和中性pH值条件下,臭氧分解形成的自由基物种加速了降解速率。此外,废水(由天然有机物形成)中的过氧化氢与臭氧的反应增强了臭氧氧化过程的氧化能力。对pH值、氧化还原电位(ORP)、紫外线吸光度(254 nm)、多酚含量和臭氧消耗量的监测与水中有机物种的氧化相关。根据传质和化学反应的双膜理论建立的臭氧氧化动力学模型,结合摩尔平衡分析了鼓泡塔中酒厂废水的臭氧氧化过程。结果表明,根据实验条件,臭氧氧化反应可以在不同的动力学区域内和跨区域发展:快速、中等和缓慢。模型估算的速率系数的动态变化与水的组成和氧化剂种类的变化相关。

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