Skip to main content
Have a personal or library account? Click to login
Water stable aggregates of Japanese Andisol as affected by hydrophobicity and drying temperature Cover

Water stable aggregates of Japanese Andisol as affected by hydrophobicity and drying temperature

Open Access
|Apr 2014

References

  1. Bachmann, J., Horton. R., Van der Ploeg, R.R., Woche, S., 2000. Modified sessile drop method for assessing initial soil- water contact angle of sandy soil. Soil Sci. Soc. Am. J., 64(2), 564-567.
  2. Cosentino, D., Hallett, P.D., Michel, J.C., Chenu, C., 2010. Do different methods for measuring the hydrophobicity of soil aggregates give the same trends in soil amended with residue? Geoderma, 159, 221-227.
  3. Crockford, H., Topalidis, S., Richardson, D.P., 1991. Water repellency in a dry sclerophyll eucalypt forest- measurements and processes. Hydrol. Process., 5, 405-420.
  4. Czachor, H., Lichner, L., 2013. Temperature influences water sorptivity of soil aggregates. J. Hydrol. Hydromech., 61, 84-87.
  5. DeBano, L.F., Krammes, J.S., 1966. Water repellent soils and their relation to wildfire temperatures. International Bulletin of the Association of Hydrological Scientists, 2, 14-19.
  6. Dekker, L.W., Ritsema, C.J., Oostindie, K., Boersma, O.H., 1998. Effect of drying temperature on the severity of soil water repellency. Soil Sci., 163, 780-796.
  7. Eynard, A., Schumacher, T.E., Lindstrom, M.J., Malo, D.D., Kohl, R.A., 2004. Wettability of soil aggregates from cultivated and uncultivated Ustolls and Usterts. Austr. J. Soil Res., 42, 163-170.
  8. Feng, G.L., Letey, J., Wu, L., 2001. Water ponding depths affect temporal infiltration rates in a water repellent sand. Soil Sci. Soc. Am. J., 65, 315-320.
  9. Le Bissonnais, Y., 1996. Aggregate stability and assessment of soil crustability and erodibility. I. Theory and methodology. European J. Soil Sci., 47, 425-437.
  10. Leelamanie, D.A.L., Karube, J., 2014. Surface hydrophobicity of Japanese Andisol and its behavior upon exposure to heat. Soil Sci. Soc. Am. J. (in press) DOI:10.2136/sssaj2013.11.0483
  11. Leelamanie, D.A.L., Karube, J., Samarawickrama, U.I., 2013. Stability analysis of aggregates in relation to the hydrophobicity of organic manure for Sri Lankan Red Yellow Podzolic soils. Soil Sci. Plant Nutr., 59(5), 683-691.
  12. Leelamanie, D.A.L., Karube, J., Yoshida A., 2008a. Characterizing water repellency indices: Contact angle and water drop penetration time of hydrophobized sand. Soil Sci. Plant Nutr., 54(2), 179-187.
  13. Leelamanie, D.A.L., Karube, J., Yoshida, A., 2008b. Relative humidity effects on sessile drop contact angle and water drop penetration time of sand with hydrophobic coatings. Soil Sci. Plant Nutr., 54(5), 695-700.
  14. Lichner, L., Dlapa, P., Doerr, S.H., Mataix-Solera, J., 2006. Evaluation of different clay minerals as additives for soil water repellency alleviation. Applied Clay Science, 31(3-4), 238-248.
  15. Lichner, L., Holko, L., Zhukova, N., Schacht, K., Rajkai, K., Fodor, N., Sandor, R., 2012. Plants and biological soil crust influence the hydrophysical parameters and water flow in an aeolian sandy soil. J. Hydrol. Hydromech., 60(4), 309-318.
  16. Lichner, L., Capuliak, J., Zhukova, N., Holko, L., Czachor, H., Kollár, J., 2013. Pines influence hydrophysical parameters and water flow in a sandy soil. Biologia, 68(6), 1104-1108.
  17. Tillman, R.W., Scotter, D.R., Wallis, M.G., Clothier, B.E., 1989. Water-repellency and its measurement by using intrinsic sorptivity. Austr. J. Soil Res., 27, 637-644.
  18. Wallis, M.G., Horne, D.J., 1992. Soil water repellency. Adv. Soil Sci., 20, 91-146.
  19. Wallis, M.G., Scotter, D.R., Horne, D.J., 1991. An evaluation of the intrinsic sorptivity water repellency index on a range of New Zealand soils. Aust. J. Soil Res., 29, 353-362.
  20. Zaher, H., Caron, J., 2008. Aggregate slaking during rapid wetting: Hydrophobicity and pore occlusion. Can. J. Soil Sci., 88, 85-97
DOI: https://doi.org/10.2478/johh-2014-0019 | Journal eISSN: 1338-4333 (formerly 0042-790X) | Journal ISSN: 0042-790X
Language: English
Page range: 97 - 100
Published on: Apr 4, 2014
Published by: Slovak Academy of Sciences, Institute of Hydrology
In partnership with: Paradigm Publishing Services

© 2014 D.A.L. Leelamanie, Jutaro Karube, published by Slovak Academy of Sciences, Institute of Hydrology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.