期刊文献+

有机物质对铁还原降解四氯化碳的影响

Effect of reduction degradation by organic matter
下载PDF
导出
摘要 为探寻土壤和地下水中广泛存在的醌和表面活性剂等有机物质对铁用于环境中有机氯污染修复的影响,实验采用在零价铁还原体系中,加入增强电子转移的醌类物质和铁表面负载表面活性剂,以提高铁对四氯化碳的吸附来增强铁还原脱氯.结果表明:分别加入4.0×10-3mol/L蒽醌-2,6-二磺酸钠和1,4-二羟基蒽醌,四氯化碳的降解速度提高70%和52%.用阳离子表面活性剂负载的零价铁对四氯化碳降解有很好的增强效果,最佳的增强效果在临界胶束浓度附近,十六烷基三甲基溴化铵和溴代十六烷基吡啶处理的铁比未处理的铁可提高四氯化碳的降解速率分别为81%和130%,2种阴离子表面活性剂没有协同增强效果. In order to study the influence of some organic matter such as quinones and surfactant in soil and ground water on the remediation of the chlorinated compounds pollution in environment by zero-valent iron(ZVI),the iron reduction degradation was enhanced by adding organic matter and surfactant loaded on the iron surface to the ZVI reduction system.The former can enhance the electron transfer and the latter can improve the adsorption of iron to the carbon tetrachloride.The results showed that the degradation rate of carbon tetrachloride increased 70%and 52%respectively by the adding of 4.0×10-3 mol/L anthraquinone2,6-disulfonate and 1,4-dihydroxyanthraquinone.ZVI loaded by the cation surfactant had good synergistic effect on the degradation of carbon tetrachloride,and the best synergistic effect was achieved at the critical micelle concentration.The degradation rate of carbon tetrachloride was enhanced by 81% and 130% respectively with the iron treated by cetyl trimethyl ammonium bromide and cetyl pyridinium bromide.The iron modified by the anionic surfactant hardly had any obvious effect on the degradation.
出处 《浙江大学学报(工学版)》 EI CAS CSCD 北大核心 2010年第12期2406-2410,共5页 Journal of Zhejiang University:Engineering Science
关键词 电子转移 阳离子表面活性剂 阴离子表面活性剂 还原降解 iron quinones electron transfer cationic surfactant anionic surfactant reduction degradation
  • 相关文献

参考文献19

  • 1AMONETTE J E, WORKMAN D J, KENNEDY D W, et al. Dechlorination of carbon tetrachloride by Fe (II) associated with goethite [J]. Environmental Science and Technology, 2000, 34(21): 4606-4613.
  • 2DEVLIN J F, MUI.LER D. Field and laboratory studies of carbon tetrachloride transformation in a sandy aquifer under sulfate reducing conditions[J]. Environmental Science and Technology, 1999, 33(7) : 1021 - 1027.
  • 3KRIEGMAN K M R, REINHARD M. Transformation of carbon tetrachloride by pyrite in aqueous solution [J]. Environmental Science and Technology, 1994, 28 (4) : 692 - 700.
  • 4JIAO Y L, WU D L, MA H Y, et al. Electrochemical reduetive dechlorination of carbon tetrachloride on nanostructured Pd thin films [J]. Electrochemistry Communications, 2008, 10(10) : 1474 - 1477.
  • 5BOOPATHY R. Anaerobic biotransformation of carbon tetrachloride under various electron acceptor conditions [J]. Bioresouree Technology, 2002,84 (1) : 69 - 73.
  • 6GILLHAM R W, O'HANNESIN S F. Enhanced degradation of halogenated aliphatics by zero-volent[J].Ground Water, 1994, 32:958-967.
  • 7LIU Y, MAJETICH S A, TILTON R D, et al. TCE dechlorination rates, pathways, and efficiency of nanoseale Iron particles with different properties [J]. Environmental Science and Technology, 2005, 39 (5) :1338 - 1345.
  • 8HARA J, ITO H, SUTO K, et al. Kinetics of triehloroethene dechlorination with iron powder [J]. Water Research, 2005, 39(6): 1165- 1173.
  • 9LEAH J M, PAUL Q T. Reduetive dehalogenation of chlorinated methanes by iron metal [J]. Environmental Science and Technology, 1994, 28(12) : 2045 - 2053.
  • 10FRANK M D, RENE P S, DONALD L M. Reduction of substituted nitrobenzenes in aqueous solutions con- taining natural organic matter[J]. Environmental Science and Technology, 1992, 26(11) : 2133 - 2141.

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部