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新型高级氧化技术处理硫化染料废水的研究进展 被引量:9

Research Progresses in Treatment of Sulfur Dyes Wastewater by New Advanced Oxidation Technologies
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摘要 综述了各种用于硫化染料废水的新型高级氧化技术,包括电化学氧化法、E-peroxone氧化法、类Fenton试剂氧化法、光催化氧化法、光催化与膜分离耦合法和光催化燃料电池法。分析了各种高级氧化技术的主要影响因素,并指出各种方法的优势与不足,对高级氧化技术的发展方向提出了展望,为今后硫化染料废水的综合治理提供了技术指导。 The new advanced oxidation technologies for treatment of sulfur dye wastewater are reviewed, such as: electrochemical oxidation method, E-peroxone oxidation method, Fenton-like oxidation method, photocatalytic oxidation method, photocatalysis and membrane separation coupling method and photocatalytic fuel cell method. The main affecting factors are analyzed, the advantages and disadvantages of each method are pointed out, and the development directions of the advanced oxidation technologies are proposed. These provide technical advices for comprehensive treatment of sulfur dye wastewater.
出处 《化工环保》 CAS CSCD 北大核心 2015年第5期492-497,共6页 Environmental Protection of Chemical Industry
基金 国家自然科学基金项目(51168013) 国家科技支撑项目(2014BAC04B03)
关键词 电化学氧化法 E-peroxone氧化法 类Fenton试剂氧化法 光催化氧化法 光催化与膜分离耦合法 光催化燃料电池法 硫化染料废水 electrochemical oxidation method E-peroxone oxidation method Fenton-like oxidation method photocatalytic oxidation method photocatalysis and membrane separation coupling method photocatalytic fuel cellmethod sulfur dye wastewater
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  • 1Ari R,Naoyuki K,Takeo U. Influence of Coagulant Species on Sulfur Oxide (SO x )Emission from the Textile Sewage Sludge Combustion[J]. Int J Electrochem Sci Dev,2013,4(5):558-564.
  • 2Yu Li,Han Mei,He Fang,et al. Current Patents on Dye Wastewater Treatment[J]. Recent Patent Chem Eng,2013,6(3):167-175.
  • 3Wang Xingzu,Cheng Xiang,Sun Dezhi,et al. Simultaneous Nutrient and Carbon Removal from Azo Dye Wastewater Using a Photorotating Biological Contactor Reactor[J]. J Chem Technol Biotechnol,2014,89:1545-1552.
  • 4Zhang Feng,Feng Chuanping,Li Wenqi,et al. Indirect Electrochemical Oxidation of Dye Wastewater Containing Acid Orange 7 Using Ti/RuO 2 -Pt Electrode[J]. Int J Electrochem Sci,2014,9(2):943-954.
  • 5Mehmet K,Erhan G,Mehmet T,et al. Treatment of Textile Dyeing Wastewater by Electrocoagulation Using Fe and Al Electrodes:Optimisation of Operating Parameters Using Central Composite Design [J]. Coloration Technol,2014,130(3):226-235.
  • 6Juang Yaju,Nurhayati Ervin,Huang Chihpin,et al. A Hybrid Electrochemical Advanced Oxidation/Microfiltration System Using BDD/Ti Anode for Acid Yellow 36 Dye Wastewater Treatment[J]. Sep Purif Technol, 2013,120:289-295.
  • 7Bakheet B,Yuan Shi,Li Zhaoxin,et al. Electro-Peroxone Treatment of Orange II Dye Wastewater[J]. Water Res,2013,47(16):6234-6243.
  • 8Torrades F,García-Montaño J. Using Central Composite Experimental Design to Optimize the Degradation of Real Dye Wastewater by Fenton and Photo-Fenton Reactions[J]. Dyes Pigment,2014,100:184-189.
  • 9Ganesan R,Thanasekaran K. Degradation of Textile Dyeing Wastewater by a Modified Solar Photo-Fenton Process Using Steel Scrap/H 2 O 2 [J]. Clean-Soil,Air,Water,2013,41(3):267-274.
  • 10Yue Lin,Wang Kaihong,Guo Jianbo,et al. Enhanced Electrochemical Oxidation of Dye Wastewater with Fe 2 O 3 Supported Catalyst[J]. J Ind Eng Chem,2014,20(2):725-731.

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