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UV/Fenton/柠檬酸体系光催化氧化孔雀石绿研究 被引量:9

Study on Photocatalytic Oxidation of Malachite Green by UV/Fenton/Citric Acid System
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摘要 光助芬顿反应是一种基于羟基自由基反应的高级氧化技术,为进一步提高光催化作用的效果,研究以柠檬酸为催化助剂,提出了UV/Fenton/柠檬酸体系光催化氧化有机污染物的新方法。以孔雀石绿为底物,考察了Fe2+浓度、初始pH值、柠檬酸浓度、H2O2的用量等因素对脱色效果的影响,获得了光催化氧化孔雀石绿的优化实验条件。结果表明,在Fe2+浓度为5 g/L,pH控制在3.0~5.0之间,柠檬酸浓度在0.8 g/L,30%H2O2用量在0.1 mL/mL溶液的条件下降解效果良好,在20 min之内,孔雀石绿的脱色率达到90%以上。 Photo-Fenton reaction is a kind of advanced oxidation process based on hydroxyl radical reaction.In order to improve the performance of photocatalytic oxidation,the degradation of organic pollutants UV/Fenton/citric acid system was studied.The influential factors,such as concentration of Fe~(2+),pH value,citric acid concentration and concentration of H_2O_2 were investigated.The results showed that the optimized operation conditions are: Fe~(2+) concentration, 5 g/L;pH 3.0~5.0;citric acid concentration,0.8 g/L;H_2O_2 concentration, 0.1 mL/mL.Under the optimal operation conditions,the decolorization rate of malachite green is over 90% in 20 minutes.
出处 《化学世界》 CAS CSCD 北大核心 2010年第10期580-582,共3页 Chemical World
基金 河南省科技计划资助项目(0624720027)
关键词 光催化氧化 UV/Fenton/柠檬酸 孔雀石绿 photocatalytic oxidation UV/Fenton /citric acid malachite green
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参考文献8

  • 1Solpan D,Guven O.Radiation Phys and Chem[J].2002,65(4):549-558.
  • 2Hu C,Wang Y Z,Tang H X,Appl Catal B:Environ[J].2001,30(99),277-285.
  • 3Silva C G,Faria J L.J Photochem Photobio A[J].2003,155(1-3):133-143.
  • 4Zhao W,Ma W,ZhaoJ,et al.,J Am Chem Soc[J],2004,126(6),4782-4788.
  • 5Ma J,Song W,Zhao J,et al.Environ Sci Technol[J].2005,39(15):5810-5815.
  • 6Chen C,Li X,Zhao J.et al.J Phys Chem B[J].2002,106(2):318-324.
  • 7Che Y,Ma W,Ji H,et al.The J of Phys Chem B,Condensed matter,mater,surface,interfa & biophys[J].2006,110(6):2942-2948.
  • 8Li F,Jiang H Q,Zhang S S.Talanta[J].2007,71 (4):1481-1493.

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  • 2刘自珍.氯化苄及其下游衍生产品的开发应用[J].氯碱工业,2001,37(12):25-27. 被引量:4
  • 3郭新超,金奇庭,王艳芳,孙长顺,薛峰.光助芬顿法降解印制电路板脱膜废液[J].重庆建筑大学学报,2005,27(5):91-95. 被引量:3
  • 4彭晓云,冯流,刘路.超声/Fenton试剂氧化耦合处理染料废水[J].北京化工大学学报(自然科学版),2007,34(2):122-125. 被引量:7
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  • 6Kormali P, Dimoticali D, Tsipi D, et al. Photolytic and photocatalytic decomposition of fenitrothion by PW1204037 and TiO2 : a comparative study[ J]. Appl Catal B : Environmen- tal, 2004,48(3) :175 - 183.
  • 7Hori H, Hayakawa E, Einaga H, et al. Decomposition of environmentally persistent perfluorooctanoic acid in water by photochemical approaches [ J ]. Environ Sci Technol. , 2004,38 (22) :6118 -6124.
  • 8CHENG M M, MA W H, CHEN C C, etal. Photo- catalytic Degradation of Organic Pollutants Catalyzed by Layered Iron ( Ⅱ ) Bipyridine Complex-clay Hybrid Under Visible Irradiation [J]. Applied Catalysis. B, Environmental, 2006, 65 (3/4): 217-226.
  • 9SHEN X Z, LIU Z C, XIE S M, et al. Degradatioin of Nitrobenzene Using Titania Photocatalyst co-doped with Nitrogen and Cerium Under Visible Light Illumi- nation [J]. Journal of Hazardous Materials, 2009, 162 (2-3) : 1193-1198.
  • 10STENGL V, BAKARDJIEVA S, MURAFA N. Preparation and Photocatalytic Activity of Rare EarthDoped TiO2 Nanoparticles [J]. Materials Chemistry and Physics, 2009, 114(1): 217-226.

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