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喀斯特石漠化小流域土壤渗滤水化学特征及影响因素研究 被引量:1

Chemical Characteristics of Soil Percolating Water and Influencing Factors in Karst Stony Desertification Area
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摘要 对贵州省清镇王家寨喀斯特小流域9个样地的土壤渗滤水进行了系统监测。结果表明,随着石漠化退化程度的加剧,黑色石灰土地区土壤渗滤水中的HCO3-,Ca2+,方解石饱和指数(SIC)和黄壤地区土壤渗滤水中的Mg2+离子浓度均呈升高趋势。初步认为,植被和土壤的双重退化是控制石漠化发育过程中渗滤水化学组成的主要原因,当植被系统的退化先于土壤系统时,水—土反应强度的影响更大,渗滤水化学组成表现为HCO3-和Ca2+含量随石漠化的发育而减少;当土壤系统的退化先于植被系统时,水—土反应时间的影响更大,渗滤水的化学组成则表现为HCO3-和Ca2+含量随石漠化的发育而增加。 A systematically monitoring has been carried of soil percolating water in karst stony desertification area.The result showed that higher the degree of stony desertification is,the higher the concentrations of HCO-3,Ca2+ and the value of calcite saturation index(SIC) in the percolating water from rendzina area are.The concentrations of Mg2+ in water samples from yellow soil area showed the same trend.It maybe result from related soil and vegetation degradation.When vegetation degradation starts earlier than soil,the concentrations of HCO-3,Ca2+ will decrease with the development of stony desertification due to the stronger reactions between water and soil.On the contrary,when soil degradation starts earlier than vegetation,the concentrations of HCO-3,Ca2+ will increase with the development of stony desertification due to more time requirement for reactions between water and soil.
出处 《水土保持通报》 CSCD 北大核心 2011年第6期26-31,共6页 Bulletin of Soil and Water Conservation
基金 中国科学院知识创新工程重要方向项目"岩溶山地土壤与植被关联退化过程及其调控对策研究"(KZCX2-YW-306) 国家重点基础研究(973)发展计划项目(2006CB403200)
关键词 喀斯特石漠化 土壤渗滤水 喀斯特小流域 水化学特征 stony desertification in karst area soil percolating water karst catchment hydrochemical characteristics
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  • 1胡伟,邵明安,王全九.黄土高原退耕坡地土壤水分空间变异的尺度性研究[J].农业工程学报,2005,21(8):11-16. 被引量:123
  • 2熊汉锋,王运华.梁子湖湿地土壤养分的空间异质性[J].植物营养与肥料学报,2005,11(5):584-589. 被引量:47
  • 3张少良,张兴义,崔战利.哈尔滨市辖区黑土有机质、全氮的空间异质性分析[J].农业系统科学与综合研究,2007,23(3):333-337. 被引量:19
  • 4刘光崧.土壤理化分析与剖面描述[M].北京:中国标准出版社,1997:5-6.
  • 5Ayoubi Sh, Mohammad S, Khormali F. Spatial variability of some soil properties for site specific farming in northern Iran [J]. International Journal of Plant Production, 2007, 1(2): 225-236.
  • 6Gallardo A, Paramd R. Spatial variability of soil elements in two plant communities of NW Spain[J]. Geoderma, 2007, 139(1-2): 199-208.
  • 7Zhang Q, Yang Z P, LI Y, et al. Spatial variability of soil nutrients and GIS-based nutrient management in Yongji County, China [J]. International Journal of Geographical Information Science, 2010, 24 (7): 965-981.
  • 8Zhang C S, McGrath D. Geostatistical and GIS analyses on soil organic carbon concentrations in grassland of southeastern Ireland from two different periods[J]. Geoderma, 2004, 119(3-4): 261-275.
  • 9Goovaerts P. 'Geostatistical tools for characterizing the spatial variability of microbiological and physico-chemical soil properties[J]. Biology and Fertility of Soils, 1998, 27(4): 315-334.
  • 10张伟,陈洪松,王克林,侯娅,张继光.桂西北喀斯特洼地土壤有机碳和速效磷的空间变异[J].生态学报,2007,27(12):5168-5175. 被引量:43

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