CHARACTERISTICS OF RENDZINA SOILS IN SERBIA AND THEIR WRB CLASSIFICATION

  • Svjetlana B. Radmanović University of Belgrade - Faculty of Agriculture

Sažetak


According to the soil classification system used in Serbia, Rendzina is a soil type with an A-AC-C-R profile, developed on parent rock containing more than 20% of calcareous material (except soils with an A-R profile on hard pure limestone or dolomite). Previous instigations have shown that 29 Rendzina soil profiles from Serbia belong to the reference soil groups (RSGs) of Leptosols, Regosols and Phaeozems according to the World Reference Base for Soil Resources (WRB 2015). The present study addresses the correlations among three WRB RSGs in terms of soil texture, mean weight diameter (MWD), total N content, and humus fractional composition using Principal Component Analysis (PCA). The objective is to better understand the mutual relationship between the classification soil units used in Serbia and the international WRB system. The results show that PCA cannot unequivocally distinguish between these three RSGs. Leptosols and Regosols are highly incoherent group while Phaeozems is highly coherent, leading to the conclusion that the physical and chemical properties of the soil profiles of Phaoeozems are specific. It is obvious that soil depth and color, which are the overriding factors in the differentiation of Rendzina soils into three WRB RSGs, had no significant effect on these properties. The results further show that soil properties such as texture, MWD, humus fractional composition, etc. cannot be used to correlate Rendzina soils from Serbia with WRB. Instead, careful correlation is needed of individual soil profiles based on quantitative soil data analysis as required by WRB.

Biografija autora

Svjetlana B. Radmanović, University of Belgrade - Faculty of Agriculture

Department of Pedology and geology

 

Reference

Balla, D., Novak, T.J., & Zichar, M. (2016): Approximation of theWRB reference group with the reapplication of archive soil data bases. Agriculture and Environment, 8, 2738.

FAO (1988): Soil map of the world. Revised legend, by FAO–UNESCO–ISRIC. World Soil Resources Report No.60. Rome.

Florea, N., & Munteanu, I. (2000): Sistemul Român de Taxonomie a Solurilor. Iasi: University Al.I. Cuza. or correlation of Rendzina soils from Serbia with WRB system

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.

Kabala, C., Oewitoniak, M., & Charzynski, P. (2016): Correlation between the Polish Soil Classification (2011) and international soil classification system World Reference Base for Soil Resources (2015). Soil Science Annual, 67, 88–100.

Krasilnikov, P. Gutiérrez-Castorena, C., Ahrens, R., Cruz-Gaistardo, C.O., Sedov, S., & Solleiro-Rebolledo, E. (2013): The Soils of Mexico. World Soils book Series. Dordrecht: Springer.

Krasilnikov, P., & Arnold, R. (2009): Soil Classifications and their Correlations. In P. Krasilnikov, J.-J. Ibáňez, R. Arnold & S. Shoba (Eds.), Handbook of Soil Terminology, Correlation and Classification. (pp. 45-335). London: Earthscan.

Kubiena, W. (1953): The soils of Europe. London: Thomas Murby.

Kyrylchuk, A. (2017): Geographic and bio-lithogenic features of genesis and dissemination of Rendzinas in the Western Ukrainian region. Economic Engineering in Agriculture and Rural Development, 17, 265-272.

Le Bissonnais, Y. (1996): Aggregate stability and assessment of soil crustability and erodibility: I. Theory and methodology. European Journal of Soil Science, 47, 425-437.

Němeček J., & Kozak J. (2002): The Czech taxonomic soil classification system and the harmonization of soil maps. In E. Micheli, F. O. Nachtergaele, R.J.A. Jones & L. Montanarella (Eds.), Soil Classification 2001. (pp. 47-53). Luxembourg: Office for Official Publications of the European Communities.

Пономарева, В.В., & Плотникова, Т.А. (1968). Методика и некоторые результаты фракционирования гумуса черноземов. Почвоведение, 11, 104-117.

Radmanović, S., Životić, Lj., Nikolić, N., Đorđević, A. (2017): Classification of Rendzina soils in Serbia according to the WRB system. In M. Belić, Lj. Nešić, V. Ćirić & K. Mačkić (Eds.), Proceedings of the 2nd International and 14th National Congress of Soil Science Society of Serbia (pp. 1-9). Novi Sad, Serbia.

Reintam, E., & Köster, T. (2006): The role of chemical indicators to correlate some Estonian soils with WRB and Soil Taxonomy criteria. Geoderma, 136, 199–209.

Shishkov, T., & Kolev, N. (2014): The Soils of Bulgaria. World Soils book Series. Dordrecht: Springer.

Шишов Л.Л., Тонконгов В.Д., & Лебедева И.И. (2000): Классификация почв России. Москва: Почвенный институт им. В.В. Докучаева РАСХН.

Škorić, A., Filipovski, G., & Ćirić, M. (1985): Klasifikacija zemljišta Jugoslavije. Sarajevo: ANUBH.

Van Reewijk, L.P. (2002). Procedures for soil analysis. Wageningen: ISRIC, FAO.

Zádorová, T., & Penížek, V. (2011): Problems in correlation of Czech national soil classification and World Reference Base 2006. Geoderma, 167-168, 54-60.

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2020/10/15
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