微波-Fenton氧化-PAFSi絮凝法处理含油废水

施国飞, 徐晓军, 贾佳, 郑鑫, 管堂珍, 陈晓鸿. 微波-Fenton氧化-PAFSi絮凝法处理含油废水[J]. 环境工程学报, 2014, 8(1): 190-197.
引用本文: 施国飞, 徐晓军, 贾佳, 郑鑫, 管堂珍, 陈晓鸿. 微波-Fenton氧化-PAFSi絮凝法处理含油废水[J]. 环境工程学报, 2014, 8(1): 190-197.
Shi Guofei, Xu Xiaojun, Jia Jia, Zheng Xin, Guan Tangzhen, Chen Xiaohong. Treatment of oily wastewater by microwave-Fenton oxidation-PAFSi flocculation[J]. Chinese Journal of Environmental Engineering, 2014, 8(1): 190-197.
Citation: Shi Guofei, Xu Xiaojun, Jia Jia, Zheng Xin, Guan Tangzhen, Chen Xiaohong. Treatment of oily wastewater by microwave-Fenton oxidation-PAFSi flocculation[J]. Chinese Journal of Environmental Engineering, 2014, 8(1): 190-197.

微波-Fenton氧化-PAFSi絮凝法处理含油废水

  • 基金项目:

    青岛市新型环保技术重点实验室项目(02-2-kj-zhj-77)

  • 中图分类号: TQ09

Treatment of oily wastewater by microwave-Fenton oxidation-PAFSi flocculation

  • Fund Project:
  • 摘要: 采用微波-Fenton氧化-PAFSi絮凝法处理含油废水,结果表明,200 mL水样先经微波辐射6 min,在pH=2,H2O2(30%)3.5 g/L,Fe2+ 1.3 g/L的条件下氧化4 h后,采用聚硅酸铝铁(Al:Fe:Si=10:2:1)和聚丙烯酰胺在pH=8时进行絮凝实验,处理后废水浊度、SS、COD、含油量和色度分别降低了99.46%、96.66%、91.94%、97.97%和95.00%,且经处理后废水的BOD5/COD由原水的0.04提高到0.53。实验还分析了含油废水的降解机理。
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    [2] 侯士兵,玄雪梅,贾金平,等.含油废水处理技术的研究与应用现状.上海化工,2003,(9):11-14 Hou S.B.,Xuan X.M.,Jia J.P.,et al.Status quo of research and application of the oily wastewater treatment technology. Shanghai Chemical Industry,2003,(9):11-14
    [3] G.Chih-Ju Jou. Application of activated carbon in a microwave radiation field to treat trichloroethylene. Carbon, 1998, 36(11): 1643-1648
    [4] 鞠峰, 胡勇有. 铁屑内电解技术的强化方式及改进措施研究进展. 环境科学学报, 2011, 31(12): 2585-2594 Ju F., Hu Y.Y. Advance in enhanced patterns and improvement measures of iron inner electrolysis. Acta Scientiae Circumstantiate, 2011, 31(12): 2585-2594 (in Chinese)
    [5] 张汉铭. 内电解工艺在废水处理中的研究进展. 广东化工, 2010, 37( 9): 118-122 Zhang H. M. Development of internal-electrolysis technolo-gy for treating wastewater. Guangdong Chemical Industry, 2010, 37(9): 118-122 (in Chinese)
    [6] Lunar L.,Sicilia D. Identification of metal degradation products under Fenton reagent treatment using liquid chromatography-mass spectrometer.Water Res., 2000, 34(13):3400-3401
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    [8] 常青,薛锦花.絮凝沉降法处理含油废水的絮凝优化复配研究.安全与环境学报, 2006, 6(1):28-33 Chang Q., Xue J.H. Improvement on optimum composition of composition flocculant for oil wastewater treatment by flocculation-sedimentation. Journal of Safety and Environment, 2006,6(1):28-33(in Chinese)
    [9] 曹晓菊.微波和超声波在化学中的应用.实验教学与仪器,2004,12(9):18-19 Cao X. J. On chemistry application of microwave and ultrasonic. Experiment Teaching and Apparatus, 2004,12(9):18-19(in Chinese)
    [10] 孙京国,冯玉铃.微波在化学领域的研究.大学化学,2003,10(2):36-39 Sun J.G., Feng Y.L. Research of microwave in chemistry. University Chemistry, 2003, 10(2):36-39(in Chinese)
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出版历程
  • 收稿日期:  2012-04-01
  • 刊出日期:  2014-01-03
施国飞, 徐晓军, 贾佳, 郑鑫, 管堂珍, 陈晓鸿. 微波-Fenton氧化-PAFSi絮凝法处理含油废水[J]. 环境工程学报, 2014, 8(1): 190-197.
引用本文: 施国飞, 徐晓军, 贾佳, 郑鑫, 管堂珍, 陈晓鸿. 微波-Fenton氧化-PAFSi絮凝法处理含油废水[J]. 环境工程学报, 2014, 8(1): 190-197.
Shi Guofei, Xu Xiaojun, Jia Jia, Zheng Xin, Guan Tangzhen, Chen Xiaohong. Treatment of oily wastewater by microwave-Fenton oxidation-PAFSi flocculation[J]. Chinese Journal of Environmental Engineering, 2014, 8(1): 190-197.
Citation: Shi Guofei, Xu Xiaojun, Jia Jia, Zheng Xin, Guan Tangzhen, Chen Xiaohong. Treatment of oily wastewater by microwave-Fenton oxidation-PAFSi flocculation[J]. Chinese Journal of Environmental Engineering, 2014, 8(1): 190-197.

微波-Fenton氧化-PAFSi絮凝法处理含油废水

  • 1. 昆明理工大学环境科学与工程学院, 昆明 650500
  • 2. 浙江环科环境咨询有限公司, 杭州 310007
基金项目:

青岛市新型环保技术重点实验室项目(02-2-kj-zhj-77)

摘要: 采用微波-Fenton氧化-PAFSi絮凝法处理含油废水,结果表明,200 mL水样先经微波辐射6 min,在pH=2,H2O2(30%)3.5 g/L,Fe2+ 1.3 g/L的条件下氧化4 h后,采用聚硅酸铝铁(Al:Fe:Si=10:2:1)和聚丙烯酰胺在pH=8时进行絮凝实验,处理后废水浊度、SS、COD、含油量和色度分别降低了99.46%、96.66%、91.94%、97.97%和95.00%,且经处理后废水的BOD5/COD由原水的0.04提高到0.53。实验还分析了含油废水的降解机理。

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