期刊文献+

Soil Wettability as Affected by Soil Characteristics and Land Use 被引量:6

Soil Wettability as Affected by Soil Characteristics and Land Use
在线阅读 下载PDF
导出
摘要 Depth distribution of soil wettability and its correlations with vegetation type, soil texture, and pH were investigated under various land use (cropland, grassland, and forestland) and soil management systems. Wettability was evaluated by contact angle with the Wilhelmy plate method. Water repellency was likely to be present under permanently vegetated land, but less common on tilled agricultural land. It was mostly prevalent in the topsoil, especially in coarse-textured soils, and decreased in the subsoil. However, the depth dependency of wettability could not be derived from the investigated wide range of soils. The correlation and multiple regression analysis revealed that the wettability in repellent soils was affected more by soil organic carbon (SOC) than by soil texture and pH, whereas in wettable soils, soil texture and pH were more effective than SOC. Furthermore, the quality of SOC seemed to be more important in determining wettability than its quantity, as proofed by stronger hydrophobicity under coniferous than under deciduous forestland. Soil management had a minor effect on wettability if conventional and conservation tillage or different grazing intensities were considered. Depth distribution of soil wettability and its correlations with vegetation type, soil texture, and pH were investigated under various land use (cropland, grassland, and forestland) and soil management systems. Wettability was evaluated by contact angle with the Wilhelmy plate method. Water repellency was likely to be present under permanently vegetated land, but less common on tilled agricultural land. It was mostly prevalent in the topsoil, especially in coarse-textured soils, and decreased in the subsoil. However, the depth dependency of wettability could not be derived from the investigated wide range of soils. The correlation and multiple regression analysis revealed that the wettability in repellent soils was affected more by soil organic carbon (SOC) than by soil texture and pH, whereas in wettable soils, soil texture and pH were more effective than SOC. Furthermore, the quality of SOC seemed to be more important in determining wettability than its quantity, as proofed by stronger hydrophobicity under coniferous than under deciduous forestland. Soil management had a minor effect on wettability if conventional and conservation tillage or different grazing intensities were considered.
作者 R. HORN
出处 《Pedosphere》 SCIE CAS CSCD 2010年第1期43-54,共12页 土壤圈(英文版)
基金 Project supported by the Max-Planck Foundation, Germany
关键词 soil management soil organic carbon soil pH soil texture 土壤特性 土地使用 润湿性 土壤管理制度 土壤质地 多元回归分析 土壤有机碳 保护性耕作
  • 相关文献

参考文献1

二级参考文献37

  • 1Capriel,P.,Beck,T.,Borchert,H.,Gronholz,J.and Zachmann,G.1995.Hydrophobicity of the organic matter in arable soils.Soil Biology and Biochemistry.27:1453-1458.
  • 2Chenu,C.and Stotzky,G.2002.Interactions between microorganisms and soil particles:An overview.In Huang,P.M.et al.(eds.) Interactions between Soil Particles and Microorganisms:Impact on the Terrestrial Ecosystem.John Wiley & Sons Ltd.,Chichester.pp.1-40.
  • 3Czarnes,S.,Hallett,P.D.,Bengough,A.G.and Young,I.M.,2000.Root-and microbial-derived mucilages affect soil structure and water transport.Eur.J.Soil.Sci.51:435-443.
  • 4Dexter,A.R.,Horn,R.and Kemper,W.D.1988.Two mechanisms for age-hardening of soil.J.Soil Sci.39:163-175.
  • 5Dexter,A.R.and Kroesbergen,B.1985.Methodology for determination of tensile strength of soil aggregates.Journal of Agricultural Engineering Research.31:139-147.
  • 6Frostegard,A.,Tunlid,A.and Baath,E.1993.Phospholipid fatty acid composition,biomass,and activity.of microbial communities from two soil types experimentally exposed to different heavy metals.Appl.Environ.Microbiol.59:3 605-3 617.
  • 7Gerke,J.1997.Chemical Processes of Nutrient Mobilisation in the Rhizosphere and Its Importance for the Exchange Between Soil and Plants (in German).Cuvillier Verlag,Gottingen.226pp.
  • 8Hallett,P.D.and Young,I.M.1999.Changes to water repellence of soil aggregates caused by substrate-induced microbial activity.Eur.J.Soil Sci.50:35-40.
  • 9Hallett,P.D.,Baumgartl,T.and Young,I.M.2001.Subcritical water repellency of aggregates form a range of soil management practices.Soil Sci.Soc.Am.J.65:184-190.
  • 10Hallett,P.D.,Nunan,N.,Douglas,J.T.and Young,I.M.2004.Millimeter-scale spatial variability in soil water sorptivity:Scale,surface elevation,and subcritical repellency effects.Soil Sci.Soc.Am.J.68:352-358.

共引文献6

同被引文献44

引证文献6

二级引证文献62

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