无机离子对芘与天然溶解性有机质结合系数的影响

吴济舟, 张稚妍, 孙红文. 无机离子对芘与天然溶解性有机质结合系数的影响[J]. 环境化学, 2010, 29(6): 1004-1009.
引用本文: 吴济舟, 张稚妍, 孙红文. 无机离子对芘与天然溶解性有机质结合系数的影响[J]. 环境化学, 2010, 29(6): 1004-1009.
WU Jizhou, ZHANG Zhiyan, SUN Hongwen. IMPACT OF INORGANIC IONS ON THE BINDING CONSTANT OF PYRENE WITH NATURAL DISSOLVED ORGANIC MATTER[J]. Environmental Chemistry, 2010, 29(6): 1004-1009.
Citation: WU Jizhou, ZHANG Zhiyan, SUN Hongwen. IMPACT OF INORGANIC IONS ON THE BINDING CONSTANT OF PYRENE WITH NATURAL DISSOLVED ORGANIC MATTER[J]. Environmental Chemistry, 2010, 29(6): 1004-1009.

无机离子对芘与天然溶解性有机质结合系数的影响

  • 基金项目:

    国家自然科学基金项目(20677031,20737002)资助

IMPACT OF INORGANIC IONS ON THE BINDING CONSTANT OF PYRENE WITH NATURAL DISSOLVED ORGANIC MATTER

  • Fund Project:
  • 摘要: 从天津市北塘河口沉积物提取了天然溶解性有机质(dissolve dorganic matter,DOM),利用荧光淬灭法测定了芘与所得DOM的结合系数KDOM,并研究了不同离子强度及离子类型对KDOM的影响.结果表明,DOM对芘的KDOM为1.27×105L·kg-1,远高于固态有机质的吸附能力,说明DOM对多环芳烃等憎水性有机污染物在水环境中的归趋具有不可忽视的影响.随着阳离子浓度的增加,芘的KDOM呈现先降低,再升高,然后稳定在某一值的复杂变化趋势.不同阳离子对芘的KDOM具有不同的影响,而所研究阴离子对KDOM影响不大.
  • 加载中
  • [1] Kalbitz K,Solinger S,Park J H,et al.Controls on the dynamics of dissolved organic matter in soils: a review [J].Soil Sci,2000,165:277-304
    [2] Liu L,Song C,Yan Z,et al.Characterizing the release of different composition of dissolved organic matter in soil under acid rain leaching using three-dimensional excitation-emission matrix spectroscopy [J].Chemosphere,2009,77:15-21
    [3] Giesler R,Bjorkvald L,Laudon H,et al.Spatial and seasonal variations in stream water δ34S-dissolved organic matter in northern Sweden [J].Environ Sci Technol,2009,43:447-452
    [4] Brunk B K,Jirka G H,Lion L W.Effects of salinity changes and the formation of dissolved organic matter coatings on the sorption of phenanthrene: implications for pollutant trapping in estuaries [J].Environ Sci Technol,1997,31:119-125
    [5] Polubesova T,Sherman-Nakache M,Chefetz B.Binding of pyrene to hydrophobic fractions of dissolved organic matter: effect of polyvalent metal complexation [J].Environ Sci Technol,2007,41:5389-5394
    [6] Jones K D,Tiller C L.Effect of solution chemistry on the extent of binding of phenanthrene by a soil humic acid: a comparison of dissolved and clay bound humic [J].Environ Sci Technol,1999,33:580-587
    [7] Chen S,Ke R,Zha J,et al.Influence of humic acid on bioavailability and toxicity of benzofluoranthene to Japanese medaka [J].Environ Sci Technol,2008,42:9431-9436
    [8] 鲁如坤主编,土壤农业化学分析方法 [M].中国农业科技出版社,北京,1999
    [9] Lei J,Huang J,Lu L,et al.Mobility of prometryne in soil as affected by dissolved organic matter [J].J Agric Food Chem,2008,56:11933-11940
    [10] 邢冠华,薛蓓,陶澍,等.荧光猝灭法测定菲,苊,芘与腐殖酸的结合常数 [J].环境化学,2005,24:578-581
    [11] Mott H V.Association of hydrophobic organic contaminants with soluble organic matter: evaluation of the database of Kdoc values [J].Adv Environ Res,2002,6:577-593
    [12] Huo S,Xi B,Yu H,et al.Characteristics of dissolved organic matter (DOM) in leachate with different landfill ages [J].J Environ Sci,2008,20:492-498
    [13] Burkhard L P.Estimating dissolved organic carbon partition coefficients for nonionic organic chemicals [J].Environ Sci Technol,2000,34:4663-4668
    [14] 燕启社,孙红文.Fenton氧化对土壤有机质及其吸附性能的影响 [J].农业环境科学学报,2006,25:412-417
    [15] Sparks D L.Environmental soil chemistry [M].2nd edition.San Diego: Academic Press,2003:101-106
    [16] Schwarzenbach R P,Gschwend P M,Imboden D M.Environmental organic chemistry [M].2nd edition,Hoboken,New Jersey: John Wiley & Sons Inc,2003
    [17] Means J C.Influence of salinity upon sediment-water partitioning of aromatic hydrocarbons [J].Mar Chem,1995,51:3-16
    [18] Engebretson R R,von Wandruszka R.Micro-organization in dissolved humic acids [J].Environ Sci Technol,1994,28:1934-1941
    [19] Zhou J L,Rowland S J.Evaluation of the interactions between hydrophobic organic pollutants and suspended particles in estuarine waters [J].Water Res,1997,31:1708-1718
    [20] Lee C L,Kuo L J,Wang H L,et al.Effects of ionic strength on the binding of phenanthrene and pyrene to humic substances: three-stage variation model [J].Water Res,2003,37:4250-4258
    [21] von Wandruszka R,Ragle C.The role of selected cations in the formation of pseudomicelles in aqueous humic acid [J].Talanta,1997,44:805-809
    [22] Shannon R D.Revised effective ionic radii and systematic studies of interatomic distances in halides and chalcogenides [J].Acta Cryst,1976,32:751-767
    [23] Lopez F,Cuomo F,Ceglie A,et al.Quenching and dequenching of pyrene fluorescence by nucleotide monophosphates in cationic micelles [J].J Phys Chem B,2008,112:7338-7344
  • 加载中
计量
  • 文章访问数:  1195
  • HTML全文浏览数:  1166
  • PDF下载数:  488
  • 施引文献:  0
出版历程
  • 收稿日期:  2009-11-13

无机离子对芘与天然溶解性有机质结合系数的影响

  • 1.  南开大学环境科学与工程学院, 教育部环境污染过程与基准重点实验室, 天津, 300071;
  • 2.  天津市塘沽区环境保护监测站, 天津, 300450
基金项目:

国家自然科学基金项目(20677031,20737002)资助

摘要: 从天津市北塘河口沉积物提取了天然溶解性有机质(dissolve dorganic matter,DOM),利用荧光淬灭法测定了芘与所得DOM的结合系数KDOM,并研究了不同离子强度及离子类型对KDOM的影响.结果表明,DOM对芘的KDOM为1.27×105L·kg-1,远高于固态有机质的吸附能力,说明DOM对多环芳烃等憎水性有机污染物在水环境中的归趋具有不可忽视的影响.随着阳离子浓度的增加,芘的KDOM呈现先降低,再升高,然后稳定在某一值的复杂变化趋势.不同阳离子对芘的KDOM具有不同的影响,而所研究阴离子对KDOM影响不大.

English Abstract

参考文献 (23)

目录

/

返回文章
返回