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Impact of Natural Fertilization Using PRP FIX on Some Soil Fertility Indicators

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The field experiment was carried out at The Experimental Station of Plant Varieties Protection in Szczecin Dąbie. The experiment aimed at evaluating the influence of slurry with and without increasing doses of PRP FIX preparation on some soil fertility indicators after test plants harvest. The contents of determined macronutrients in the soil were higher in objects where slurry was applied with addition of 8 kg or 12 kg of PRP FIX per 1 m3 as compared to those with exclusively mineral fertilization or slurry. The soil after test plants harvest contained more N, Corg., P, K, Mg, Ca, S, and available forms of P, K, Mg and SO3, in relation to levels before experiment establishment. In general, more soil fertility indicators were recorded in objects treated with the slurry along with PRP FIX preparation and additional PK nutrition (series II) as compared to series I. Differences in macronutrients in the soil due to the fertilization system applied were diverse, however, they not always were significant.
Rocznik
Strony
137--144
Opis fizyczny
Bibliogr. 17 poz., tab.
Twórcy
autor
  • Department of Soil Science, Grassland Management and Environmental Chemistry, Faculty of Environmental Management and Agriculture, Western Pomeranian University of Technology in Szczecin, Słowackiego17 Str., 71-434 Szczecin, Poland
autor
  • Department of Soil Science, Grassland Management and Environmental Chemistry, Faculty of Environmental Management and Agriculture, Western Pomeranian University of Technology in Szczecin, Słowackiego17 Str., 71-434 Szczecin, Poland
Bibliografia
  • 1. Blanes-Vidal V., Hansen M.N., Pedersen S., Rom H.B., 2008. Emissions of ammonia, methane and nitrous oxide from pig houses and slurry. Effects of rooting material, animal activity and ventilation flow. Agriculture, Ecosystems and Environment. 124, 237–244.
  • 2. Dobrzański Z., Górecki H., Hoffman J., Kołacz R., Chojnacki A., 2004. Problems of disposal of slaughterhouse waste and animal meal.VI Konferencja Technologie bezodpadowe i zagospodarowanie odpadów w przemyśle i rolnictwie. Politechnika Szczecińska. Międzyzdroje. 109–111. [in Polish]
  • 3. Filipek T., 2006. Agricultural chemistry. Theoretical and analytical basics Wyd. AR Lublin.12–34. [In Polish]
  • 4. Gianfreda L., Ruggiero P., Nannipieri W. P., Smalla K., 2006. Soil biology. Enzyme activities in soil. Nucleic acids and proteins in soil. Springer-Verlang, 8,257–311.
  • 5. Gorlach E., Mazur T., 2001. Agricultural chemistry. Wyd. Nauk PWN, Warszawa, 55–74. [In Polish]
  • 6. Hoffmann J., Gryglewicz G., Hoffmann K., Gryglewicz S., Rutkowski P., 2010. Influence of technological modifications of fertilizers on the emission of odorous compounds. Przemysł Chemiczny. 89(4), 386–390. [In Polish]
  • 7. Krzywy E., 2005. About slurry once again. Aura, Wyd. Sigma 4,16–17. [In Polish]
  • 8. Mazur T., Maćkowiak M., 1978. Fertilization with slurry. Wyd. PWRiL [In Polish]
  • 9. Mazur T., Sądej W., 1989. Effect of long-term fertilization with slurry, manure and NPK on some chemical and physicochemical properties of soil. Rocz. Gleb. 40(1), 147–153. [In Polish]
  • 10. Maćkowiak Cz. 2000. Slurry properties and rules for applying with the environment. Mater. Szkol. Puławy IUNG 75, 1–30. [In Polish]
  • 11. Nortcliff S., 2002. Standarisation of soil quality attributes. Agric. Ekosys. Environ., 88,161–168.
  • 12. Renella G., Landi L., Valori F., Nannipieri P., 2007. Microbial and hdrolase activity after relase of low molecular weght organic compounds by a model root surface in a clayey and a sand soil. Appl. Soil Ecol., 36, 124–129.
  • 13. Kwaśny J., Kowalski B., Banach Z., 2011. Slurry properties of slurry in the context of content of selected macro and microelements. Czasopismo Techniczne, Chemia 108(2),107–120. [In Polish]
  • 14. Sieradzki T., 2006. Effect of long-term fertilization of arable land with slurry and mineral fertilizers on nitrogen and phosphorus content in groundwater. Problemy Inżynierii Rolniczej 14(2),45–52. [In Polish]
  • 15. Trasar-Cepeda, M.C. Leiros, F. Gil-Sotres, 2008. Hydrolytic enzyme activities in agricultural and forest soils. Some implications for their use a indicators of soil quality. Soil Biol. Biochem 40, 2146–2155.
  • 16. Yang L., Li T., Li F., Lemcoff J.H., Cohen S., 2008. Fertilization regulates soil enzymatic activity and ferility dynamics in cucumber field. Scientia Horticul, 116, 21–26.
  • 17. Zhao Y., Wang P., Chen J. Li, Y., Ying X., Liu S., 2009. The effect of two organic manures on soil properties and crop yields on a temperate calcareous soil under a wheat-maize cropping system. Europ. J. Agron. 31(1),36–42.
Uwagi
PL
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę (zadania 2017).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0a49acd8-3306-45cb-abba-ec77b6ca3d04
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