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The contents of nickel in perennial ryegrass (Lolium perenne L.) as affected by application of multicomponent fertilizers

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Urbanization is the cause of many changes which is taking place in the environment, including those found in the catchment Three multicomponent fertilizers were applied: Polifoska 8, Polifoska 16 and Polimag 306, at the rates of 0.5; 1.0; and 1.5 g N per pot. The total forms of nickel were determined in dry matter of perennial ryegrass with the use of ASA method. The contents of these elements were higher in the fertilized variants as compared to the control. No significant differences were found among the contents of investigated elements compared in plants treated with different multicomponent fertilizers. The increasing rates of nitrogen decreased soil pH and, thereby, enhanced the availability and concentration of heavy metals in perennial ryegrass. A pot experiment on an acid brown soil was conducted in 1998-2001.
Słowa kluczowe
Rocznik
Strony
139--143
Opis fizyczny
Bibliogr. 27 poz., tab.
Twórcy
  • Faculty of Biology, University of Szczecin, 13 Waska Street, 71-415 Szczecin, Poland
Bibliografia
  • [1] Azarmi R., Giglou M. T., Taleshmikail R. D., Afr. J. Biotechnol. 7(14) (2008) 2397-2401.
  • [2] Anke M., Kolloquien des Instituts für Pflanzenernảhrung. Jena 2 (1987) 110-111.
  • [3] Broos K., Beyens H., Smolders E., Soil Biology & Biochemistry 37 (2005) 573-579.
  • [4] Daniszewski P., International Letters of Chemistry, Physics and Astronomy 1 (2012) 13-16
  • [5] Daniszewski P., International Letters of Chemistry, Physics and Astronomy 2 (2012) 35-41.
  • [6] Daniszewski P., International Letters of Chemistry, Physics and Astronomy 2 (2012) 42-45.
  • [7] Daniszewski P., International Letters of Chemistry, Physics and Astronomy 2 (2012) 46-52.
  • [8] Daniszewski P., International Letters of Chemistry, Physics and Astronomy 4 (2012) 119-124.
  • [9] Daniszewski P., International Letters of Chemistry, Physics and Astronomy 5 (2012) 72-79.
  • [10] Daniszewski P., International Letters of Chemistry, Physics and Astronomy 5 (2012) 80-87.
  • [11] Daniszewski P., Konieczny R., International Letters of Chemistry, Physics and Astronomy 4 (2013) 91-97.
  • [12] Daniszewski P., Konieczny R., International Letters of Chemistry, Physics and Astronomy 4 (2013) 98-104.
  • [13] Daniszewski P., International Letters of Chemistry, Physics and Astronomy 7(1) (2013) 60-66.
  • [14] Daniszewski P., International Letters of Chemistry, Physics and Astronomy 7(1) (2013) 67-72.
  • [15] Desai V. R., Sabale R. N., Raundal P. V., Agric. Univ. 24(3) (1999) 273-275 .
  • [16] Kabata-Pendias A., Zesz. Nauk. Kom. PAN Człowiek i środowisko 21 (1998) 9-17.
  • [17] Kabata-Pendias A., Zesz. Nauk. Kom. PAN Człowiek i środowisko 33 (2000) 1-18.
  • [18] Kabata-Pendias A., Pendias H., CRC Press, Boca Raton, Fl, USA (2001) 413.
  • [19] Kalembasa S., Symanowicz B., Chem. Engin. A. 17(7) (2010) 757-764.
  • [20] Nowak W., Draszawka-Bołzan B., Agricultura 84 (2000) 363-366.
  • [21] Parthasarathi K., Balamurugan M., Ranganathan L. S., Iran. J. Environ. Health Sci. Eng. 5(1) (2008) 51-58.
  • [22] Patil S. L., Sheelavantar M. N., Annals Agric. Res. 21(21) (2000) 32-36.
  • [23] Spiak Z., Romanowska M., Radoła J., Chemistry for Agricultulture 5 (2004) 181-186.
  • [24] Symanowicz B., Acta Sci. Pol. Agricult. 4(2) (2005) 83-92.
  • [25] Symanowicz B., Appel Th., Kalembasa S., Polish J. Soil Sci. XXXVII(1) (2004) 11-20.
  • [26] Symanowicz B., Kalembasa S., Fragm. Agron. 27(1) (2010) 177-185.
  • [27] Trabelsi D., Pini F., Aouani M. E., Bazzicalupo M., Mengoni A., Letters in Applied Microbiology 48 (2009) 355-361.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-b495d2ab-5ec6-4bab-9efc-559d9ca6bf38
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