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Mollic soils situated in non-Chernozem regions in Slovakia Cover

Mollic soils situated in non-Chernozem regions in Slovakia

By: Jozef Kobza  
Open Access
|Aug 2022

References

  1. Barančíková, G. and Kobza, J. (1999). Chemical and biological soil deterioration. In Jambor, P. and Rubio, J. H. (Eds.). Changes in content and quality of soil organic matter in Slovakia: proceeding from international conference Soil Conservation in Large-Scale Land Use. Bratislava: Soil Science and Conservation Research Institute, pp. 255 ‒ 262.
  2. Bielek, P. (1998). Nitrogen in Agricultural Soils of Slovakia (in Slovak). Bratislava: VÚPÚ, 256 p. ISBN 80-8531-44-2.
  3. Blair, G.J., Lefroy, R.D.B., and Lisle, L. (1995). Soil carbon fractions based on their degree of oxidation and the development of a carbon management index. Australian Journal of Agricultural Research, 46, 1459 ‒ 1466. DOI:10.1071/AR9951459.
  4. Čurlík, J. (1975). Mineralogical composition of agricultural soils in Slovakia (in Slovak). Final report, P11-529-081-01-03. Bratislava: VÚPVR, 60 p.
  5. Florea, N. (2012). Soil taxonomy in Romania. Soil Horizons, 53, 24 ‒ 30.10.2136/sh12-01-0006
  6. Franzluebbers, A.J. (2002). Soil organic matter stratification ratio as an indicator of soil quality. Soil Tillage Research., 66, 95 – 106.10.1016/S0167-1987(02)00018-1
  7. Graf-Rosenfellner, M, Cierjacks, A., Kleinschmit, B., and Lang, F. (2016). Soil formation and its implications for stabilization of soil organic matter in the riparian zone. Catena, 139, 9 ‒ 18.10.1016/j.catena.2015.11.010
  8. Hrivňáková, K., Makovníková, J., Kobza, J., Barančíková, G., Bezák, P., Bezáková, Z., Dodok, R., Grečo, V., Chlpík, J., Lištjak, M., Mališ, J., Píš, V., Schlosserová, J., Slávik, O., Styk, J. and Širáň, M. (2011). Unified analytical procedures for soil (in Slovak). SSCRI (VÚPOP) Bratislava, 136 p. ISBN 978-80-89128-89-1.
  9. IUSS Working Group WRB (2015). World reference base for soil resources 2014, update 2015. International soil classification system for naming soils and creating legends for soil maps. World Soil Resources Reports No. 106, Rome: FAO, 192 p. ISBN 978-92-5-108369-7.
  10. Kobza, J. (2004). Contribution on genesis of dark-coloured soils in non-Chernozems regions of Slovakia and problem of their classification: Proceedings of Soil Science and Conservation Research Institute, no. 26, Bratislava: SSCRI (VÚPOP), pp. 151 ‒ 158.
  11. Kobza, J. (2006). Some features of soils forming in (semi) hydromorphic conditions. Proceedings of Soil Science and Conservation Research Institute, no. 28, Bratislava: SSCRI (VÚPOP), pp. 49 ‒ 53.
  12. Kobza, J., Barančíková, G., Dodok, R., Hrivňáková, K., Makovníková, J., Pálka, B., Pavlenda, P., Schlosserová, J., Styk, J., and Širáň, M. (2014). Soil monitoring in the Slovak Republic (in Slovak). Bratislava: NPPC-VÚPOP 251 p. ISBN 978-80-8163-004-0.
  13. Kobza, J., Barančíková, G., Dodok, R., Makovníková, J., Pálka, B., Styk, J., and Širáň, M. (2019). Current state and development of monitored soil properties as a basis to their protection and next land use (in Slovak). Bratislava: NPPC-VÚPOP, 252 p. ISBN 978-80-8163-033-0.
  14. Kobza, J. and Pálka, B. (2020). Basic properties of agricultural black soils in Slovakia using the INBS criteria. Polish Journal of Soil Science, 53(1), 117 – 123. DOI:10.17951/pjss/2020.53.1.117.
  15. Koštialik, J. (1974). Characteristics and stratigraphy of fossil soils and loesses of Nitrianska pahorkatina (hilly land) (in Slovak). Náuka o Zemi, VIII. Pedologica 9, Bratislava: Veda, 134 p.
  16. Kumada, K. (1987). Chemistry of Soil Organic Matter. Tokyo: Elsevier, 17 ‒ 30. ISBN 0-444-98936-6.
  17. Labaz, B. and Kabala, C. (2016). Human induced development of mollic and umbric horizons in drained and farmed swampy alluvial soils. Catena, 139, 117 ‒ 126.10.1016/j.catena.2015.12.013
  18. Linkeš, V. (1984). Relict phenomena in soil cover of Slovakia and contribution to their interpretation (in Slovak). Geografický časopis, 36(2), 163 ‒ 178.
  19. Loginow, W., Wisniewski, W., Gonet, S.S., and Ciescinska, B. (1987). Fractionation of organic carbon based on susceptibility to oxidation. Polish Journal of Soil Science, 20(1), 47 ‒ 52.
  20. Loginow, W., Wisniewski, W., Gonet, S.S., and Ciescinska, B. (1993). Testing method for determination of susceptibility on oxidation of soil organic matter (in Polish). Zeszyty Problemowe, Postepow Nauk Rolniczych, 409, 207 ‒ 212.
  21. Pavlovič, P., Kostič, N., Karadžič, B., and Mitrovič, M. (2017). The Soils of Serbia. Dordrecht: Springer, 225 p. DOI:10.1007/978-94-017-8660-7.
  22. Rennert, T., Georgiadis, A., Ghong, N.P. and Rinklebe, J. (2018). Compositional variety of soil organic matter in mollic floodplain-soil profiles – also an indicator of pedogenesis. Geoderma, 311, 15 ‒ 24.10.1016/j.geoderma.2017.09.039
  23. Rennert, T., Mladenović, S.A., Barančíková, G., Borůvka, L., Bosak, V., Cacovean, H., Čechmánková, J., Graf- Rosenfellner, Kobza, J., Mayer, S., Michalski, A., Pavlů, L., Rinklebe, J., Savin, I., and Rubinić, V. (2021). Does soil organic matter in mollic horizons of central east European floodplain soils have common chemical features? Catena, 200, 105192, 1 ‒ 10. DOI:10.1016/j.catena.2021.105192.
  24. Rosell, R.A., Adriulo, A.E., Schnitzer, M., Crespo, M.B., and Miglierina, A.M. (1989). Humic acids properties of an Argiudoll soil under two tillage systems. Science of the Total Environment, 81/82, 391 ‒ 400.10.1016/0048-9697(89)90147-2
  25. Roy, B. and Barde, N.K. (1962). Some characteristics of the black soils of India. Soil Science, 93(2), 142 ‒ 147.10.1097/00010694-196202000-00009
  26. Schmidt, M.W.I., Skjemstad, J.O., Gehrt, E. and Kögel-Knabner, I. (1999). Charred organic carbonin German chernozemic soils. European Journal of Soil Science, 50(2), 351 ‒ 365. DOI:10.1046/j.1365-2389.1999.00236.x.
  27. Societas pedologica slovaca (2014). Morphogenetic Soil Classification system of Slovakia. Basal Reference Taxonomy (in Slovak). The 2-nd edition. NPPC-VUPOP Bratislava, 96. ISBN 978-80-8163-005-7.
  28. Soil Survey Staff (2014). Keys to Soil Taxonomy, The 12-th ed. USDA – Natural Resources Conservation Service, Washington, DC, 211 p.
  29. Sotáková, S. (1982). Organic matter and soil fertility (in Slovak), Bratislava: Príroda, 243 p.
  30. Szombathová, N. (1999). Comparison of soil carbon susceptibility to oxidation by KMnO4 in different farming systems in Slovakia. Humic Substances in the Environment, 1(3 ‒ 4), 35 ‒ 39.
  31. Ševcova, L.K. and Sidorina, S.J. (1988). The influence of long-term change of fertilizers on thermographic characteristics of humic acids (in Russian). Počvovedenije, 6, 130 ‒ 136.
  32. Than, HK. (2013). Minimum formula weight of humic substances. Available at: http://drkhtan.weebly.com/uploads/1/3/4/3/13436703/minimum_formula_weight_of_humic_substances.pdf.
  33. Thiele-Bruhn, S., Leinweber, P., Eckhardt, K.U., Siem, H. K., and Blume, H.P. (2014). Chernozem properties of black soils in the Baltic region of Germany as revealed by mass-spectrometric fingerprinting of organic matter. Geoderma, 213, 144 ‒ 154.10.1016/j.geoderma.2013.07.036
  34. Vaškovský, I. and Halouzka, R. (1976). Geological map of Podunajská nížina (lowland). South-east part, 1:500 000 (in Slovak). Bratislava: GÚDŠ (Geological Institute of Dionýz Štúr).
  35. Wen, D. and Liang, W. (2001). Soil fertility quality and agricultural sustainable development in the Black Soil Region of Northeast China. Environment, Development and Sustainability, 3(1), 31 ‒ 43. DOI:10.1023/A:1011480228613.
  36. Zaujec, A. and Kobza, J. (2002). The content and quality of soil organic matter in key monitoring sites observing by soil monitoring system of the Slovak Republic. Agriculture (Poľnohospodárstvo), 48(9), 492 ‒ 499.
  37. Zehetner, F., Lair, G.J., and Gerzabek, M.H. (2009). Rapid carbon accretion and organic matter pool stabilization in riverine floodplain soils. Global Biogeochemical Cycles, 23(4), GB4004, 1 ‒ 7. DOI:10.1029/2009GB003481.
DOI: https://doi.org/10.2478/agri-2022-0003 | Journal eISSN: 1338-4376 | Journal ISSN: 0551-3677
Language: English
Page range: 25 - 33
Submitted on: Mar 20, 2022
Accepted on: Jun 29, 2022
Published on: Aug 12, 2022
Published by: National Agricultural and Food Centre
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2022 Jozef Kobza, published by National Agricultural and Food Centre
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.