利用原位生成过氧化氢处理炼油废水的索诺Fenton法研究

Marwa M. Jiad, A. Abbar
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引用次数: 3

摘要

采用响应面法(RSM)结合中心复合设计(CCD),将超声辐照与Fenton工艺结合为sono-Fenton工艺,成功地去除了炼油废水中的化学需氧量(COD)。探讨了两个主要影响操作参数(铁投加量和反应时间)对伊拉克某炼油厂废水COD去除率的影响。在浓度0.289 mM、时间21 min的条件下,去除率为85.81%。此外,结果表明,浓度对COD去除的影响最大,其次是反应时间。较高的R2值(96.40%)验证了模型方程的强拟合性和采用RSM处理炼油厂废水的成功。此外,通过对sono-Fenton、外部添加的sono-Fenton、经典Fenton和声溶工艺的比较,表明sono-Fenton组合工艺优于单个工艺和外部添加的sono-Fenton。
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Treatment of Petroleum Refinery Wastewater by Sono Fenton Process Utilizing the in-Situ Generated Hydrogen Peroxide
Combining ultrasonic irradiation and the Fenton process as a sono-Fenton process, the chemical oxygen demand (COD) in refinery wastewater was successfully eliminated using response surface methodology (RSM) with central composite design (CCD). The impact of two main influential operational parameters (iron dosage and reaction time) on the COD removal from wastewater generated by an Iraqi petroleum refinery facility was explored. Removal of 85.81% was attained under the optimal conditions of 21 minutes and 0.289 mM of  concentration. Additionally, the results revealed that the concentration of has the highest effect on the COD elimination, followed by reaction time. The high R2 value (96.40%) validated the strong fit of the model equation and the successful adopting RSM in the treatment of wastewaters from petroleum refineries. Furthermore, a comparison among sono-Fenton, sono-Fenton with addition of  externally, classical Fenton and sonolysis processes showed that the combined process of sono-Fenton is better than individual processes and the external addition of  .
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