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Ni-Fe双金属对氯代苯酚催化还原脱氯的试验 被引量:5

A test of catalytic reductive dechlorination of chlorophenol by Ni-Fe bimetal
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摘要 分别采用Ni-Fe双金属体系和单一零价铁对氯代有机物2,4-二氯苯酚、2-氯苯酚和4-氯苯酚进行了催化还原脱氯的研究。结果表明:单一零价铁能够对氯代苯酚还原脱氯,但效率不高,通常在10%~25%。在镍的催化作用下,零价铁对氯代苯酚的还原脱氯效率大大提高。当零价铁加入量为60 g/L,硫酸镍为0.6 g/L,初始氯代苯酚的质量浓度在25 mg/L左右,反应初始pH值控制在偏酸性的条件下,还原脱氯效率可达到70%以上。氯代苯酚降解的准一级速率常数和降解率满足以下规律:4-氯苯酚大于2-氯苯酚大于2,4-二氯苯酚。 Ni-Fe bimetal and zero-valent iron were respectively used in the catalytic reductive dechlorination treatment of chlorinated organic compounds 2,4-dichlorophenol,2-chlorophenol and 4-chlorophenol.The results showed that: the zero-valent iron could be used to reductively dechlorinate chlorophenols with efficiency about 10%-25%.Under the catalytic effect of falcial,the efficiency of zero-valent iron on reductive dechlorination of chloro-phenols was greatly improved.When the dosage of zero-valent iron,nickel sulfate were 60 g/L,0.6 g/L respectively,the initial concentration of the dechlorination was about 25 mg/L,the initial pH was acidity,the reductive dechlori-nation rate could above 70%.The pseudo first order rate constants and the degradation rate of the chlorophenols confirmed the descending order as following: 4-CP,2-CP and 2,4-DCP.
出处 《工业用水与废水》 CAS 2007年第4期39-42,共4页 Industrial Water & Wastewater
基金 甘肃省自然科学基金资助项目(3ZS051-A25-039) 教育部春晖计划项目资助(Z2005-1-62010) 兰州交通大学"青蓝"人才工程项目(2004)
关键词 镍-铁双金属 还原脱氯 氯代苯酚 速率常数 Ni-Fe bimetal reductive dechlorination chlorophenol rate constant
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  • 1全燮,杨凤林,薛大明,赵雅芝,冯文国,苍郁.钯-铁催化还原法对水中三氯乙烯的快速脱氯研究[J].大连理工大学学报,1997,37(1):46-48. 被引量:34
  • 2[1]Orth W S,Gillham R W.Dechlorination of trichloroethene in aqueous solution using Fe0[J].Environ Sci & Technol.,1996,30(1):66~71. 被引量:1
  • 3[2]Sayles G D,You G R,Wang M X,et al.DDT,DDD and DDE dechlorination by zero-valent iron[J].Environ Sci & Technol.,1997,31(12):3448~3454. 被引量:1
  • 4[3]Gillham R W,O'Hannesin S F.Enhanced degradation of halogenated aliphatics by zero-valent iron[J].Ground Water,1994,32:958. 被引量:1
  • 5[4]Morrison S J,Metzler D R,Dwyer B P.Removal of As,Mn,Mo,Se,U,V and Zn from groundwater by zero-valent iron in a passive treatment cell:reaction progress modeling[J].Journal of Contaminant Hydrology,2002,56:99~116. 被引量:1
  • 6[5]Sorg T J.Treatment technology to meet the interim primary drinking water regulations for inorganics[J].J AWWA,1978,70(2):105~118. 被引量:1
  • 7[6]Grittini C,Malcomson M,Fernando Q,et al.Rapid Dechlorination of Polychlorinated Biphenyls on the Surface of a Pd/Fe Bimetallic System[J].Environ Sci & Technol.,1995,29(11):2898~2900. 被引量:1
  • 8[7]Muftikian R,Fernando Q,Korte N.A Method for the Rapid Dechlorination of Low Molecular Weight Chlorinated Hydrocarbons in Water[J].Water Research,1995,29(10):2434~2439. 被引量:1
  • 9[8]Doyle J G,Miles T,Parker E,et al.Quantification of total polychlorinated biphenyl by dechlorination to biphenyl by Pd/Fe and Pd/Mg bimetallic particles[J].Microchemical Journal,1998,60(2):290~295. 被引量:1
  • 10[9]Korte N E,Zutman J L,Schlosser R M,et al.Field application of palladized iron for the dechlorination of trichloroethene[J].Waste Management,2000,20(8):687~694. 被引量:1

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