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1993 | 400 |

Tytuł artykułu

Agrophysical factors determining nitrate and heavy metal transformations in soils

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
In the reviev the effect of such factors like soil bulk density, soil moisture status, air-filled porosity and aggregation on soil aeration and redox status and thus on the transformations of nitrogen (denitrifaction, nitrification, nitrogen fixation and ammonification), manganese, and iron as well as on solubility of mercury, cadmium, and lead is discussed.

Wydawca

-

Rocznik

Tom

400

Opis fizyczny

p.23-32,fig.

Twórcy

  • Polish Academy of Sciences, Doswiadczalna 4, 20-236 Lublin, Poland

Bibliografia

  • 1. Amer F.M., Bartholomew W.V.: Influence of oxygen concentration in soil air on nitrification. J. Paper J-1833, Iowa Agric. Exp. Stn., Aimes, Project 1070, 215, 1950.
  • 2. Brandt G.H., Wolcott A.R., Erickson A.E.: Nitrogen transformations in soil as related to structure, moisture, and oxygen diffusion rate. Soil Sci. Soc. Am. Proc., 28, 7, 1964.
  • 3. Gambrell R.P., Khalid R.A., Collard V.R., Reddy C.N., Patrick W.H. Jr.: The effect of pH and redox potential on heavy metal chemistry in sediment- water systems affecting toxic metal bioavailability. In: Environmental Effects and Technology, Proc. WODCON VII, San Francisco, California, 1976.
  • 4. Gliński J., Stępniewska Z.: An evaluation of soil resistance to reduction processes. Polish J. Soil Sci., 19/1-2, 15-19, 1986.
  • 5. Gliński J., Stępniewski W.: Soil Aeration and its Role for Plants, CRC Press, Boca Raton, Fl., 1985.
  • 6. Grabie A.R., Siemer E.G.: Influence of bulk density, aggregate size, and water suction on oxygen diffusion, redox potentials, and elongation of corn roots. Soil Sci. Soc. Am. Proc., 32, 180, 1968.
  • 7. Horn R., Stępniewski W., Włodarczyk T, Walenzik G., Eckhardt F.E.W.: Denitrification rate and microbial distribution within homogeneous model soil aggregates. Int. Agrophysics, 1993 (in press).
  • 8. Meek B.D., Donavan TJ., Graham L.E.: A summertime flooding effects on alfalfa mortality, soil oxygen concentration, and matric potential in a silty clay loam soil. Soil Sci. Soc. Am. J., 44, 433, 1980.
  • 9. Ohyama T., Kumazawa K.: Nitrogen assimilation in soybean nodules. III. Effect of rhizosphere pO₂ on the assimilation of ¹⁵N₂ in nodules attached to intact plants. Soil Sci. Plant Nutr., 26, 321, 1980.
  • 10. Ponnampenima F.N.: The chemistry of submerged soils. Adv. Agron., 24, 29, 1972.
  • 11. Reddy K.R., Patrick W.H Jr.: Effects of aeration on reactivity and mobility of soil constituents. In: Chemical Mobility and Reactivity in Soil Systems. ASA, Sp. Publ., SSSA, Madison, Wisconsin, 1983.
  • 12. Sextone A.J., Parkin T.B., Tiedje J.M.: Denitrification response to soil wetting in aggregated and unaggregated soil. Soil Biol. Biochem., 20, 767-769, 1988.
  • 13. Stępniewska Z.: Changes of redox potential, pH, and reduced forms of manganese and iron in soils at differentiated oxygen status and moisture content. (in Polish). Zesz. Probl. Post. Nauk Roln., 315, 243-269, 1986.
  • 14. Stępniewska Z.: Redox properties of mineral soils of Poland, (in Polish). Probl. Agrofizyki, 56, 1988.
  • 15. Stępniewski W.: Oxygen diffusion and strength as related to soil compaction. II. Oxygen diffusion coefficient. Polish J. Soil Sci., 14/1, 3-13, 1981.
  • 16. Yamane I., Okazaki M.: Chemical properties of submerged rice soils. Trans. 12th Int. Congr. Soil Sci., New Delhi, India, II, 143,1982.
  • 17. Yu Tian-ren: Physical Chemistry of Paddy Soils. Sdence Press, Beijing and Spriger Verlag, Berlin, 1986.
  • 18. Zausig J., Stępniewski W., Horn R.: Oxygen concentration and redox potential gradients in different model soil aggregates at a range of low soil moisture tensions. Soil Sci. Soc. Am. J., 1993 (in press).

Typ dokumentu

Bibliografia

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Identyfikator YADDA

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