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Eight soils were studied for adsorption reactions of zinc and evaluated for their quantity, intensity and supply parameters for zinc. With the addition of increasing amounts of zinc there was a simultaneous increase in the equilibrium concentration, adsorption, percent saturation of adsorption capacity and supply parameter of zinc. Multiple regression analysis revealed that in all soils quantity, intensity and equilibrium concentration were the main parameters accounting for the supply of zinc. Sandy loam, loamy and loamy sand soils having comparatively higher values for the adsorption maxima, bonding energy constant and differential buffering capacity of the soils will require higher rates of zinc to change in the solution concentration.
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Opis fizyczny
p.195-200,ref.
Twórcy
autor
- University of Agriculture, Wojska Polskiego 71/F, 60-625 Poznan, Poland
autor
Bibliografia
- 1.BOEHRINGER M.I. Echanges cationiques avec des mtaux lourds sur la tourbe acide. Thse de doctorat No. 6700, EPF - Zurich, 1980.
- 2.BOURG A.CM. Mobility of heavy metals in agricultural soils following long-term land application of sewage sludge from the Paris-Acheres water treatment plant. Inter. Conf.: Heavy metals in the environment, Vol. 1, 252-255, Hamburg 1995.
- 3.GEMBARZEWSKI H., KORZENIEWSKA J. Zaleznosc miedzy wystepowaniem podstawowych i toksycznych ilosci mikropierwiastkow w glebach i roslinach. Prace Komisji Naukowych. PTG Nr 110, Warszawa, 1989.
- 4.GUPTA S.K., HANI H. Methodik zur Bestimung biologisch relevanter Schwermetallkonzen trationen im Boden und Uber- prufung der Auswirkungen auf Testpflanzen sowie Mikroorganismen in belasteten Gebieten. FAC Liebefeld. Schweiz, 1989.
- 5.JOSHI D.C. Studies on the adsorption and availability of cop per in some arid soils. Plant and Soil 94, 357, 1986.
- 6.KHASAWNEH F.E. Solution ion activity and plant growth. Soil Sci. Soc. Am. Proc. 35, 426, 1971.
- 7.KHASAWNEH F.E., COPELAND J.P. Cotton root growth and uptake of nutrients: Relation of phosphorus uptake to quantity, intensity and buffering capacity. Soil Sci. Soc. Am. Proc. 37, 250, 1973.
- 8.KOCIALKOWSKI W.Z., RATAJCZAK M.J. A modified me thod for exchangeable cations and cation exchange capacity determination in soil according to Mehlich. Rocz. AR-Poznan; CXLVI, 106-116 (in Polish), 1984.
- 9.McBRIDE M.B. Reactions controlling heavy metal solubility in soils. Advances in Soil Science, 10, 1, 1989.
- 10.NARWAL R.P., SINGH B.R. Sorption of cadmium, zinc, copper and lead by soils developed on alun shales and other materials. Norv. Jour. Agri. Sci. 9(3-4), 177, 1995.
- 11.STAHL S.R., JAMES B.R. Zinc sorption by B horizons soils as a function of pH. Soil Sci. Soc. Am. J. 55, 1592, 1991.
- 12.TAYLOR R.W., HASSAN K., MEHADI A.H., SHUFORD W.J. Kinetics of Zn sorption by soils. Corara. Soil Sci. Plant Anal. 26(11 & 12), 1761, 1995.
- 13.WADA K., ABD-ELFATTAH A. Characterization of zinc ad sorption sites in two mineral soils. Soil Sci. Plant Nutr. 24(3) 417, 1978.
Typ dokumentu
Bibliografia
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bwmeta1.element.agro-article-012443f6-a2c6-49c4-94cb-26247f505d54