期刊文献+

pH值对弱透水层中硝酸盐迁移转化的影响 被引量:7

pH impact on nitrate migration and transformation in the aquitard
在线阅读 下载PDF
导出
摘要 为研究硝酸盐在不同pH值条件下通过弱透水层的越流迁移机理及转化形式设计了室内试验,用天然黏土模拟弱透水层渗透介质,配制硝酸盐溶液作为渗透液,在高渗透压条件下,观察NO3-通过弱透水层的迁移转化过程。结果表明:不同pH值条件下硝酸盐通过弱透水层向下迁移的能力很弱;由于黏土的pH值为5.8,土壤中分布的正电荷多于负电荷,所以硝酸盐大量减少是因为结合水强化的电性吸附造成的。硝酸盐在弱透水层中的迁移过程表现为大部分被弱透水层吸附,在试验后期发生了异化还原作用。硝酸盐浓度随时间的增加呈指数下降。同时发现硫酸盐对硝酸盐的异化还原反应具有较弱的阻滞作用,氯离子与硝酸盐之间显示微弱竞争吸附关系。 In order to study the cross-flow migration mechanism and the transformation form of the nitrate through the aquitard under different pH conditions, laboratory test was designed using natural clay as a permeating medium and using nitrate solution as the liquid of infiltration, and the process of migration and transformation of the NO3- in groundwater through the aquitard under the high osmotic pressure conditions was observed. The results showed that the capacity of nitrates migrating downward through the aquitard was weak under different pH conditions. As the clay' s pH was 5.8, the positive charge was more than negative charge, so great decrease of nitrate was due to bound water enhancing electric adsorption. Most of the nitrate was adsorped by aquitard, and in the latter part of the test, the dissimilation-deoxidization was taken place. The nitrate concentrations index decreased exponentially with time. It was found simultaneously that blocking effect of sulfate on nitrate' s dissimilation-deoxidization was weak, and a weak competitive adsorption was showed between chloride and nitrate.
出处 《水资源保护》 CAS 2011年第1期67-72,共6页 Water Resources Protection
基金 国家自然科学基金(40872154)
关键词 地下水 弱透水层 硝酸盐 PH值 反硝化 氮迁移 groundwater aquitard, nitrate, pH value denitrification nitrogen transportation
  • 相关文献

参考文献9

  • 1KATTA J R, LIN Jian-ping. Nitrate removal from groundwater using catalytic reduction[ J]. Water Research, 2000,34(3):995 -1001.
  • 2WIDORY D, KLOPPMANN W, CHERY L, et al. Nitrate in goundwater: an isotopic muhi-wdcer approach [ J ]. Journal of Contaminant Hydrology, 2004,72( 1-4 ) : 165-188.
  • 3张建伟,王艳秋,张洪斌.水分及污染质在弱透水层的饱和粘性土层中渗透与浓度变化规律研究[J].吉林水利,2003(9):23-25. 被引量:4
  • 4周德庆.微生物学教程[M].北京:高等教育出版,2001.
  • 5RAINAM,MAIER,IANL,et al.环境微生物学(下册)[M].北京:科学出版社,2004:443-455.
  • 6DESIMONE L A, HOWES B L. Nitrogen transport and transformation in a shallow aquifer receiving wastewater discharge:a mass balance approach[ J]. Water Resoure Res, 1998,34(2) :271-285.
  • 7高茂生,李明,刘宝林,李建萍.反硝化在土壤及地下水中的净化作用[J].再生资源研究,2003(6):38-40. 被引量:3
  • 8CHIDTHALSONG A. Turnover of glueose and acetate coupled to reduetion of nitrate, ferric iron and sulfate and to methanogenesis in anoxic rice field soil[ J], FEMS Microbiology Eeology, 2000,31 ( 1 ) : 73-86.
  • 9ACHTNICH C B, CONRAD R F. Competition for electron donors among nitrate reducers, ferric iron reducers, sttlfate reducers,and methanogem in anoxic paddy soft[ J]. Biol Fettil Soils, 1995,19: 65-72.

二级参考文献4

  • 1张忠胤.关于结合水动力学问题[C].北京:地质出版社,1980..
  • 2[3]Kruithof.J.C et al.,Wat.Supply,6:207~217(1988).
  • 3[6]Coloros et al.,Appl.Biochem.Biotechnol.,(1995).
  • 4[7]Erickson et al.,Thermochim.Acta,(1995).

共引文献29

同被引文献79

引证文献7

二级引证文献19

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