Have a personal or library account? Click to login
Long-term soil water content dynamics under different land uses in a small agricultural catchment Cover

Long-term soil water content dynamics under different land uses in a small agricultural catchment

Open Access
|Aug 2022

References

  1. Abdelkadir, A., Yimer, F., 2011. Soil water property variations in three adjacent land use types in the Rift Valley area of Ethiopia. Journal of Arid Environments, 75, 11, 1067–1071.10.1016/j.jaridenv.2011.06.012
  2. Anderegg, W.R.L., Kane, J.M., Anderegg, L.D.L., 2013. Consequences of widespread tree mortality triggered by drought and temperature stress. Nature Climate Change, 3, 1, 30–36.10.1038/nclimate1635
  3. Bassoi, L.H., Hopmans, J.W., de Castro Jorge, L.A., de Alencar, C.M., Moura e Silva, J.A., 2003. Grapevine root distribution in drip and microsprinkler irrigation. Scientia Agricola, 60, 377–387.10.1590/S0103-90162003000200024
  4. Bolte, A., Ammer, C., Löf, M., Madsen, P., Nabuurs, G.-J., Schall, P., Spathelf, P., Rock, J., 2009. Adaptive forest management in central Europe: Climate change impacts, strategies and integrative concept. Scandinavian Journal of Forest Research, 24, 6, 473–482.10.1080/02827580903418224
  5. Box, J.E., Taylor, S.A., 1962. Influence of soil bulk density on matric potential. Soil Science Society of America Journal, 26, 2, 119–122.10.2136/sssaj1962.03615995002600020008x
  6. Brocca, L., Tullo, T., Melone, F., Moramarco, T., Morbidelli, R., 2012. Catchment scale soil moisture spatial–temporal variability. Journal of Hydrology, 422–423, 63–75.10.1016/j.jhydrol.2011.12.039
  7. Brun, P., Psomas, A., Ginzler, C., Thuiller, W., Zappa, M., Zimmermann, N.E., 2020. Large-scale early-wilting response of Central European forests to the 2018 extreme drought. Global Change Biology, 26, 12, 7021–7035.10.1111/gcb.15360775644033091233
  8. Buzás, I., 1993. Soil and Agrochemistry Analysing Method. Inda 4231 Publishing, Budapest, Hungary.
  9. Chaudhari, P.R., Ahire, D.V., Ahire, V.D., Chkravarty, M., Maity, S., 2013. Soil bulk density as related to soil texture, organic matter content and available total nutrients of Coimbatore soil. International Journal of Scientific and Research Publications, 3, 2, 1–8.
  10. Cosby, B.J., Hornberger, G.M., Clapp, R.B., Ginn, T.R., 1984. A statistical exploration of the relationships of soil moisture characteristics to the physical properties of soils. Water Resources Research, 20, 6, 682–690.10.1029/WR020i006p00682
  11. Craine, J.M., Nippert, J.B., Elmore, A.J., Skibbe, A.M., Hutchinson, S.L., Brunsell, N.A., 2012. Timing of climate variability and grassland productivity. Proceedings of the National Academy of Sciences, 109, 9, 3401.
  12. Cresswell, H.P., Green, T.W., McKenzie, N.J., 2008. The adequacy of pressure plate apparatus for determining soil water retention. Soil Science Society of America Journal, 72, 1, 41–49.10.2136/sssaj2006.0182
  13. Czúcz, B., Gálhidy, L., Mátyás, C., 2011. Present and forecasted xeric climatic limits of beech and sessile oak distribution at low altitudes in Central Europe. Annals of Forest Science, 68, 1, 99–108.10.1007/s13595-011-0011-4
  14. De Boeck, H.J., Bassin, S., Verlinden, M., Zeiter, M., Hiltbrunner, E., 2016. Simulated heat waves affected alpine grassland only in combination with drought. New Phytologist, 209, 2, 531–541.10.1111/nph.13601
  15. Dousset, S., Thévenot, M., Schrack, D., Gouy, V., Carluer, N., 2010. Effect of grass cover on water and pesticide transport through undisturbed soil columns, comparison with field study (Morcille watershed, Beaujolais). Environmental Pollution, 158, 7, 2446–2453.10.1016/j.envpol.2010.03.028
  16. Dövényi, Z., 2010. Magyarország kistájainak katasztere (Hungarian Small Region Cadaster). MTA Földrajztudományi Kutatóintézet, Budapest, Hungary. (In Hungarian.)
  17. Du, J., Niu, J., Gao, Z., Chen, X., Zhang, L., Li, X., van Doorn, N.S., Luo, Z., Zhu, Z., 2019. Effects of rainfall intensity and slope on interception and precipitation partitioning by forest litter layer. Catena, 172, 711–718.10.1016/j.catena.2018.09.036
  18. Duputié, A., Rutschmann, A., Ronce, O., Chuine, I., 2015. Phenological plasticity will not help all species adapt to climate change. Global Change Biology, 21, 8, 3062–3073.10.1111/gcb.12914
  19. Farkas, C., Gelybó, G., Bakacsi, Z., Horel, Á., Hagyó, A., Dobor, L., Kása, I., Tóth, E. 2014. Impact of expected climate change on soil water regime under different vegetation conditions. Biologia, 69, 11, 1510–1519.
  20. Fridley, J.D., Grime, J.P., Askew, A.P., Moser, B., Stevens, C.J., 2011. Soil heterogeneity buffers community response to climate change in species-rich grassland. Global Change Biology, 17, 5, 2002–2011.10.1111/j.1365-2486.2010.02347.x
  21. Fu, B., Wang, J., Chen, L., Qiu, Y., 2003. The effects of land use on soil moisture variation in the Danangou catchment of the Loess Plateau, China. Catena, 54, 1, 197–213.10.1016/S0341-8162(03)00065-1
  22. Gao, X., Wu, P., Zhao, X., Wang, J., Shi, Y., 2014. Effects of land use on soil moisture variations in a semi-arid catchment: implications for land and agricultural water management. Land Degradation & Development, 25, 2, 163–172.10.1002/ldr.1156
  23. Geßler, A., Keitel, C., Kreuzwieser, J., Matyssek, R., Seiler, W., Rennenberg, H., 2007. Potential risks for European beech (Fagus sylvatica L.) in a changing climate. Trees, 21, 1, 1–11.10.1007/s00468-006-0107-x
  24. Grime, J.P., Fridley, J.D., Askew, A.P., Thompson, K., Hodgson, J.G., Bennett, C.R., 2008. Long-term resistance to simulated climate change in an infertile grassland. Proceedings of the National Academy of Sciences, 105, 29, 10028.10.1073/pnas.0711567105248136518606995
  25. Gupta, S.C., Dowdy, R.H., Larson, W.E., 1977. Hydraulic and thermal properties of a sandy soil as influenced by incorporation of sewage sludge. Soil Science Society of America Journal, 41, 3, 601–605.10.2136/sssaj1977.03615995004100030035x
  26. Gupta, S.C., Larson, W.E., 1979. Estimating soil water retention characteristics from particle size distribution, organic matter percent, and bulk density. Water Resources Research, 15, 6, 1633–1635.10.1029/WR015i006p01633
  27. Hadiwijaya, B., Isabelle, P.-E., Nadeau, D.F., Pepin, S., 2021. Observations of canopy storage capacity and wet canopy evaporation in a humid boreal forest. Hydrological Processes, 35, 2, e14021.10.1002/hyp.14021
  28. Horel, Á., Zsigmond, T., Farkas, C., Gelybó, G., Tóth, E., Kern, A., Bakacsi, Z., 2022. Climate change alters soil water dynamics under different land use types. Sustainability, 14, 7.10.3390/su14073908
  29. Ihsan, M.Z., El-Nakhlawy, F.S., Ismail, S.M., Fahad, S., daur, I., 2016. Wheat phenological development and growth studies as affected by drought and late season high temperature stress under arid environment. Frontiers in Plant Science, 7, 795.10.3389/fpls.2016.00795489355127375650
  30. Jakab, G., Madarász, B., Szabó, J., Tóth, A., Zacháry, D., Szalai, Z., Kertész, Á., Dyson, J., 2017. Infiltration and soil loss changes during the growing season under ploughing and conservation tillage. Sustainability, 9, 10, 1726.
  31. Kelliher, F.M., Leuning, R., Schulze, E.D., 1993. Evaporation and canopy characteristics of coniferous forests and grasslands. Oecologia, 95, 2, 153–163.10.1007/BF0032348528312937
  32. Mesoro, B.G., Sebok, A., Waltner, I., 2020. A field-level study of soil penetration resistance, moisture content and infiltration. In: Jakab, G., Csengeri, E. (Eds.): Proc. 3rd International Conference on Water Sciences. Szent István University, Institute of Irrigation and Water Management, Szarvas, Hungary, pp. 24–29.
  33. Móricz, N., Illés, G., Mészáros, I., Garamszegi, B., Berki, I., Bakacsi, Z., Kámpel, J., Szabó, O., Rasztovits, E., Cseke, K., Bereczki, K., Németh, T.M., 2021. Different drought sensitivity traits of young sessile oak (Quercus petraea (Matt.) Liebl.) and Turkey oak (Quercus cerris L.) stands along a precipitation gradient in Hungary. Forest Ecology and Management, 492, 119165.10.1016/j.foreco.2021.119165
  34. Nicolas, M.E., Gleadow, R.M., Dalling, M.J., 1984. Effects of drought and high temperature on grain growth in wheat. Functional Plant Biology, 11, 6, 553–566.10.1071/PP9840553
  35. Niu, C.Y., Musa, A., Liu, Y., 2015. Analysis of soil moisture condition under different land uses in the arid region of Horqin sandy land, northern China. Solid Earth, 6, 4, 1157–1167.10.5194/se-6-1157-2015
  36. Ochoa-Sánchez, A., Crespo, P., Célleri, R., 2018. Quantification of rainfall interception in the high Andean tussock grasslands. Ecohydrology, 11, 3, e1946.10.1002/eco.1946
  37. Sadeghi, S.M.M., Gordon, D.A., Van Stan Ii, J.T. 2020. A global synthesis of throughfall and stemflow hydrometeorology. In: Van Stan, I.I.J.T., Gutmann, E., Friesen, J. (Eds.): Precipitation Partitioning by Vegetation: A Global Synthesis. Springer International Publishing, Cham, pp. 49–70.
  38. Schuldt, B., Buras, A., Arend, M., Vitasse, Y., Beierkuhnlein, C., Damm, A., Gharun, M., Grams, T.E.E., Hauck, M., Hajek, P., Hartmann, H., Hiltbrunner, E., Hoch, G., Holloway-Phillips, M., Körner, C., Larysch, E., Lübbe, T., Nelson, D.B., Rammig, A., Rigling, A., Rose, L., Ruehr, N.K., Schumann, K., Weiser, F., Werner, C., Wohlgemuth, T., Zang, C.S., Kahmen, A., 2020. A first assessment of the impact of the extreme 2018 summer drought on Central European forests. Basic and Applied Ecology, 45, 86–103.10.1016/j.baae.2020.04.003
  39. Šurda, P., Lichner, Ľ., Nagy, V., Kollár, J., Iovino, M., Horel, Á., 2015. Effects of vegetation at different succession stages on soil properties and water flow in sandy soil. Biologia, 70, 11, 1474–1479.10.1515/biolog-2015-0172
  40. Van Dijk, P.M., Kwaad, F.J.P.M., Klapwijk, M., 1996. Retention of water and sediment by grass strips. Hydrological Processes, 10, 8, 1069–1080.10.1002/(SICI)1099-1085(199608)10:8<1069::AID-HYP412>3.0.CO;2-4
  41. WRB, 2015. World Reference Base for Soil Resources 2014. Update 2015. World Soil Resources Reports No. 106. FAO, Rome.
  42. Yang, F., Zhang, G.-L., Yang, J.-L., Li, D.-C., Zhao, Y.-G., Liu, F., Yang, R.-M., Yang, F. 2014. Organic matter controls of soil water retention in an alpine grassland and its significance for hydrological processes. Journal of Hydrology, 519, 3086–3093.
  43. Zhang, L., Dawes, W.R., Walker, G.R., 2001. Response of mean annual evapotranspiration to vegetation changes at catchment scale. Water Resources Research, 37, 3, 701–708.10.1029/2000WR900325
  44. Zhang, Y., Peña-Arancibia, J.L., McVicar, T.R., Chiew, F.H.S., Vaze, J., Liu, C., Lu, X., Zheng, H., Wang, Y., Liu, Y.Y., Miralles, D.G., Pan, M., 2016. Multi-decadal trends in global terrestrial evapotranspiration and its components. Scientific Reports, 6, 1, 19124.10.1038/srep19124
  45. Zhao, C., Jia, X., Zhu, Y., Shao, M.a., 2017. Long-term temporal variations of soil water content under different vegetation types in the Loess Plateau, China. Catena, 158, 55–62.10.1016/j.catena.2017.06.006
DOI: https://doi.org/10.2478/johh-2022-0015 | Journal eISSN: 1338-4333 | Journal ISSN: 0042-790X
Language: English
Page range: 284 - 294
Submitted on: Nov 17, 2021
|
Accepted on: Jun 20, 2022
|
Published on: Aug 23, 2022
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2022 Ágota Horel, Tibor Zsigmond, Sándor Molnár, Imre Zagyva, Zsófia Bakacsi, published by Slovak Academy of Sciences, Institute of Hydrology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.