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γ辐照降解沉积物中六氯苯(HCB)的研究 被引量:1

Gamma irradiation for degradation of HCB in sediment samples
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摘要 研究了γ辐照法对不同河流湖泊沉积物中六氯苯(HCB)的降解效果,以及不同河流湖泊沉积物、HCB浓度、添加物、pH和容器内径对HCB辐照降解的影响,并对其降解动力学进行了探讨。结果表明,γ辐照法对南京玄武湖沉积物HCB模拟样品中HCB的降解率要高于长江南京上新河段和南京前湖沉积物HCB模拟样品;辐照下HCB质量浓度为10mg/kg的长江南京上新河段沉积物HCB模拟样品的HCB降解率最高;添加H2O2能提高HCB的降解率,添加NaNO3和异丙醇降低了HCB的降解率;添加NaNO3的HCB降解率要高于添加异丙醇;pH越高HCB的降解率越大;容器内径对γ辐照降解容器中HCB的效果有较大影响,在其他实验条件一致下采用γ辐照降解HCB时,应尽量减小容器内径。 The paper presents a study of γ irradiation for degradation of hexachlorobenzene (HCB) in 3 different sediment samples focusing on the effects of the HCB content, the reactor size (thickness of the sample), additive, and pH on the HCB removal efficiency. The degradation rate of HCB in the Lake Xuanwu sediment was higher than those in the Changjiang River sediment and the Lake Qian sediment. In the Changjiang River sediment, the higher HCB content resulted a higher HCB degradation rate. Addition of 3% H2O2 enhanced the degradation efficiency of HCB; however the removal was adversely affected by adding 100 mg/L NaNO3 or 5% Isopropyl alcohol. The degradation rate was better at a higher pH. The degradation rate was consistent with the first order reaction kinetics. Gamma irradiation may be employed for degrading HCB present in many types of sediment.
出处 《环境污染与防治》 CAS CSCD 北大核心 2008年第2期20-24,共5页 Environmental Pollution & Control
基金 国家自然科学基金资助项目(No.10275034) 上海同济高廷耀环保科技发展基金会资助项目
关键词 六氯苯 Γ辐照 沉积物 降解 hexachlorobenzene γ irradiation sediment degradation
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参考文献16

  • 1KOCIBA R J. Evaluation of global literature for definition of dose response relationship for hexachlorobenzene toxicity[J]. IARC Sci. Publ. , 1986,77 : 371-378.
  • 2陈晓东,吕永生,朱惠刚.六氯苯与健康危害[J].中国公共卫生,2000,16(9):849-851. 被引量:8
  • 3解清杰,马涛,王琳玲,陆晓华.六氯苯污染沉积物的电Fenton法处理[J].华中科技大学学报(自然科学版),2005,33(3):122-124. 被引量:15
  • 4BAILEY R E. Global hexachlorobenzene emissions[J]. Chemosphere,2001, 43(2):167-182.
  • 5COOPER W J, NICKELSEN M G, MEACHAM D E, et al. High energy electron beam irradiation:an advanced oxidation process for the treatment of aqueous based organic hazardous wastes[J]. War. Poll. J. Can. ,1992,27(1) :69-95.
  • 6BORRELY S. Radiation process of sewage and sludge:a review [J]. Progress in Nuclear Energy,1998, 33(1/2) :3-21.
  • 7GEHRINGER P, MATSCHINER H. Radiation induced pollutant decomposition in water[J]. Wat. Sci. Tech. , 1998,37 (3):195-201.
  • 8SAMPA M H O,DUARTE C L,SOMESSARI E S R,et al. Remotion of organic compounds of actual industrial effluents by electron beam irradiation[J]. Radiat. Phys. Chem. , 1998,52 ( 1/ 6) : 365-369.
  • 9MEACHAM D E,COOPER W J,NICKELSEN M G,et al. The removal of TCE and PCE from aqueous solution using high energy electrons[J]. Air & Waste,1993,43(10) :1358-1366.
  • 10BORRELY S I, DEL MASTRO N L,SAMPA M H O. Improvement of municipal wastewater by electron beam accelera- tor in Brazill[J]. Radiat. Phys. Chem. , 1998, 52 (1/6) : 333- 337.

二级参考文献53

  • 1赵学庄,化学反应动力学原理.上,1984年
  • 2Kociba R J.Evaluation of global literature for definition of dose response relationship for hexachlorobenzene toxicity[J].IARC Sci Publ, 1986, 77: 371-378.
  • 3Gordon C, Yang C, Liu Chyiyech.Remediation of TCE contaminated soils by in situ EK-Fenton process[J].Journal of Hazardous Materials, 2001, B85: 317-331.
  • 4Chou S, Huang Y H, Leem S N, et a1.Treatment of high strength Hexamine-containing wastewater by electro-Fenton method[J].Wat Res, 1999, 33(3): 751-759.
  • 5Lin S H, Chang C C.Treatment of landfill leachate by combined electro-Fenton oxidation and sequences batch reactor method[J].Wat Res, 2000, 34(17): 4 243-4 249.
  • 6Brillas E, Muf E, Sauleda R, et a1.Aniline degradation under electrochemical and photocatalystic conditions[J].J Adv Oxid Technol, 1999, 4(1): 109-114.
  • 7William J C, Michael G N, David E M, et al. High Energy Electron Beam Irradition: an advanced oxidation process for the treatmentment of aqueous based organic hazardous wastes[J]. Water Poll Res J Can, 1992,27( 1 ):69-95
  • 8Borrely S. Radiation process of sewage and sludge: a review[ J]. Progress in Nuclear Energy, 1998,33 (1-2) :3-21
  • 9Malmax C, McLaughlin A, Willian L. Mechanisms of removal of heavy metals from water by ionizing radiation[J]. Radiation Physics and Chemistry, 1998, 53(2): 145-150
  • 10Bailey R E. Global hexachlorobenzene emissions[J]. Chemosphere, 2001, 43(2):167-182

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