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Treatment of Nitrobenzene Wastewater via Ultrasonic Enhanced Iron-carbon Micro-electrolysis with Response Surface Methodology
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(1. Research Center of Shanxi Province for High Gravity Chemical Engineering and Technology, North University of China, Taiyuan 030051, China; 2. Shanxi Province Key Laboratory of Higee-Oriented Chemical Engineering, Taiyuan 030051, China)

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    Abstract:

    Aiming at whether there are interaction problem among various operating factors in the degradation of wastewater with nitrobenzene (NB) via an ultrasonic enhanced iron-carbon micro-electrolysis method, the process conditions were optimized by response surface methodology (RSM). In experiments, selecting 29 representative groups as the test points, taking ultrasonic (US) power, zero valent iron (Fe0) dosage, activated carbon (GAC) dosage, initial pH value of wastewater as main factors, removal efficiency of NB as response value, the response surface experiments of four factors and three levels were designed and the optimum process conditions were obtained. The results show that there is a significant interaction between Fe0 dosage and initial pH value, and initial pH value and ultrasonic power and predicted value of the removal efficiency of NB is 98.50% when the Fe0 dosage is 20.7 g·L-1, the GAC dosage is 13.19 g·L-1, the initial pH value is 2.08, the ultrasonic power is 175.96 W. A difference of 1.23%(< 2%)is observed with the measured value. Therefore, the obtained secondary mathematical model for the degradation of NB via ultrasonic enhanced iron-carbon micro-electrolysis has a good reliability for the optimization of process conditions and the prediction of removal efficiency of NB.

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张东升,余丽胜,焦纬洲,等.基于响应面法的超声强化铁碳微电解处理硝基苯废水工艺优化研究[J].含能材料,2018,26(2):178-184.
ZHANG Dong-sheng, YU Li-sheng, JIAO Wei-zhou, et al. Treatment of Nitrobenzene Wastewater via Ultrasonic Enhanced Iron-carbon Micro-electrolysis with Response Surface Methodology[J]. Chinese Journal of Energetic Materials,2018,26(2):178-184.

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History
  • Received:July 08,2017
  • Revised:October 30,2017
  • Adopted:
  • Online: February 11,2018
  • Published: February 12,2018