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Potassium response in some Malawi soils

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Języki publikacji
EN
Abstrakty
EN
Potassium (K) response curves were generated for some Malawi soils using four different rates of potassium fertilizer, with grass being used to estimate plant availability. The study was conducted to find the point of maximum response for potassium. The soils were characterized, limed and fertilized with equal amounts of nitrogen. Potassium was applied at four rates: 0.0, 0.1, 0.2 and 0.4 me K/100 cm3 soil. The K treated soils were put in pots and cropped with grass. The grass was harvested six weeks after planting, dried and weighed. In general, addition of potassium resulted in increased growth of grass in all soils, with some soils showing better response than others. For montmorillonitic soils and soils with mixed mineralogy response was linear up to the highest rate of 0.4 me K/100 cm3. Apparently the 0.4 me K/100 cm3 soil was not enough to give maximum yield for these potassium depleted soils. For the kaolinitic soils 0.4 me K/100 cm3 soil was beyond point of maximum response. The variation of response to added potassium in the different soils calls for soil specific fertilizer additions. Smallholder farmers should move from blanket (crop specific) fertilizer recommendations currently being used to crop and soil specific fertilizer recommendations. Basal fertilizer dressings (starter packs) should always contain potassium. Correlation and calibration studies should be conducted to establish a potassium low optimum level for Malawi soils.
Słowa kluczowe
Rocznik
Strony
175--181
Opis fizyczny
Bibliogr. 13 poz., rys., wykr.
Twórcy
  • Department of Physics and Bio-Chemical Sciences, Malawi Polytechnic P/Bag 303, Chichiri, Blantyre 3, Malawi, dlakudzala@poly.ac.mw
Bibliografia
  • [1] Bolton A., Bennett A. J., QDM Research Project R 2315. Maize breeding and agronomy, general report. Chotedze, Lilongwe. Malawi 1974.
  • [2] Chilimba A. D. C., Liwimbi L., Evaluation of nitrophosphate fertilizer for maize production in Malawi. Annual Report of the Soil and Agricultural Engineering Commodity Group. Department of Agricultural Research Annual Planning meeting held at Andrews Holiday Resort, Mangochi, 14 – 19th September 2008; pp. 63-75.
  • [3] Day P. R., Soil Sci. Soc. Am. Proc. 20 (1956) 167-169.
  • [4] Gillman G. P., Aust. J. Soil Res. 17 (1979) 129-139.
  • [5] Gwosdz W., Mshali R. S. M., Atcams T., Feldspar occurrences in Malawi. Techn. Cooperation Proj. 89 2028.2, Malawi – Fd. Rep. Germany. Zomba/Hannover; 1996, p. 82.
  • [6] Hunter A. H., Laboratory and greenhouse technique for nutrient survey studies to determine the soil amendments required for optimum plant growth. Agro Services International (ASI), Inc., 17 November 1980.
  • [7] Hunter A. H., Soil analysis for pH, 1N KCl extractable acidity, Ca, Mg, P, K, Cu, Fe, Mn, Zn. Agro Services International (ASI). 10TH October 1979.
  • [8] Maida J. H. A., Chilima Z. W., Changes in soil fertility under continuous cropping of Tea. Tech. Bull. No. 1/BV/76. Bvumbwe Agricultural Research Station. Limbe. Malawi 1976.
  • [9] Malavolta E., Potassium status of tropical and subtropical region soils In: R. E. Munson (Ed.), Potassium in Agriculture. ASAA-CSSA-SSSA, Madison, WI, 1985, p. 184.
  • [10] Mueller H. W., Jones R. B., Wendt J., Kumwenda J., Results from the field trials with agro minerals in Malawi. Techn, Cooperation Proj. 89.2028.2, Malawi – Fed Rep. Germany, Zomba and Chitedze, 1993, p. 9.
  • [11] Nkhoma D. D., Potassium in Malawi soils, M Sc. Thesis. North Carolina State University, United States of America 1986.
  • [12] Rehm G., Schmitt M., Potassium for crop production. Regents of the University of Minnesota. United States of America 2002.
  • [13] Sanchez P. A., Properties and Management of Soils in the Tropics. John Wiley & Sons, Inc. New York. United States of America 1976.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS2-0070-0008
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