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The Kinetics on the Removal of 2,4-Dichlorophenol Aqueous Solution by the Extraction-Ozonization Process

机译:萃取-臭氧化法去除2,4-二氯苯酚水溶液的动力学

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An innovative Extraction-Ozonization process was developed and studied for degradation of phenolic pollution in water. It basically includes the following features: (1) Designing an extraction unit for contacting of phenolic wastewater and highly ozone soluble fluorinated solvent(FC77) in order to remove the pollutants from aqueous to solvent phase, aiming to reduce the pollutants in water; (2) Designing an ozonization unit in connection with the extraction unit where the organic pollutants are oxidized and decomposed in the solvent, while recovering the extraction capability of the solvent for reusing; (3) Designing a solvent circulating system for repeated extraction and ozonization of the phenolic pollutants.In this paper, the kinetic models of the extraction-ozonization process were developed by using three equations to describe and predict the variation of 2, 4-dichlorophenol (2, 4-DCP) in each unit. Considering the models, we could then make forecasts of impacts of significant factors on the removal efficiency of 2,4-dichlorophenol in this process with access to the best operation conditions.
机译:开发并研究了一种创新的萃取-臭氧化工艺,用于降解水中的酚类污染物。它主要具有以下特点:(1)设计一种用于酚类废水与高臭氧溶解度的氟化溶剂(FC77)接触的萃取装置,以去除水相至溶剂相中的污染物,以减少水中的污染物; (2)设计与萃取单元有关的臭氧化单元,在该萃取单元中,有机污染物在溶剂中被氧化和分解,同时恢复溶剂的萃取能力以供再利用; (3)设计用于循环萃取和臭氧化酚类污染物的溶剂循环系统。 在本文中,通过使用三个方程式描述和预测每个单元中2,4-二氯苯酚(2,4-DCP)的变化,建立了萃取-臭氧化过程的动力学模型。考虑模型,我们可以在获得最佳操作条件的情况下,预测此过程中重要因素对2,4-二氯苯酚去除效率的影响。

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