Warianty tytułu
Języki publikacji
Abstrakty
A vegetation experiment (88 days) studied the effect of soil contamination with fly ash produced in hard coal combustion (0.0; 33.3; 66.6; 99.9 g·kg-1 of soil) on the physicochemical properties of soil, the yield of oat (Borowiak) and maize (Reduta), selected soil bacteria count and the activity of soil enzymes: dehydrogenases, urease, alkaline and acid phosphatases. Oat was grown as the main crop and maize – as the successive crop. Two doses of nitrogen fertilisation were applied: 75 and 150 mg N·kg-1 of soil. Physicochemical, biochemical and microbiological analyses were conducted twice – after oat and maize harvest. A study of the ash-contaminated soil revealed an increase in the soil content of C, N, K, Mg, P, Ca, Na, Cu and Ni, the soil alkalisation, disturbed microbiological balance and reduced activity of dehydrogenases, urease and acidic phosphatase.
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Opis fizyczny
http://www.ejpau.media.pl/volume9/issue1/art-35.html
Twórcy
autor
- University of Warmia and Mazury in Olsztyn, Pl.Lodzki 3, 10-727 Olsztyn, Poland
autor
autor
Bibliografia
- Alef K., Nannipieri P., 1998. Urease activity. [In:] Methods in Applied Soil Microbiology and Biochemistry, Alef K., Nannipieri P. (eds.), Academic Press, Harcourt Brace & Company, Publishers, London, 316-320.
- Alef K., Nannipieri P., Trasar-Cepeda C., 1998. Phosphatase activity. [In:] Methods in Applied Soil Microbiology and Biochemistry. Eds. K. Alef, P. Nannipieri). Academic Press, Harcourt Brace & Company, Publishers, London, 335-344.
- Bi Y.L., Li X.L., Christie P., Hu Z.Q., Wong M.H., 2003. Growth and nutrient uptake of arbuscular mycorrhizal maize in different depths of soil overlying coal fly ash. Chemosphere 50, 863-869.
- Dšbek-Szreniawska M., Wyczółkowski A., Józefaciuk B., Księżopolska A., Szymona J., Stawiński J., 1996. Relation between soil structure, number of selected groups of soil microorganisms, organic matter content and cultivation system. Int. Agroph. 10(1), 31-35.
- Dick W.A., Cheng L., Wang P., 2000. Soil acid and alkaline phosphatase activity as pH adjustment indicators. Soil Biol. Biochem. 32, 1915-1919.
- Dmochowska H., 2004. Rocznik Statystyczny Rzeczypospolitej Polskiej [Statistical Yearbook of the Republic of Poland]. Warszawa [in Polish].
- Dumontet S., Mazzatura A., Casucci C., Perucci P., 2001. Effectiveness of microbial index in discriminating interactive effects and crop rotations in a Vertic Ustorthens. Biol. Fertil. Soils. 34 (6), 411-416.
- Ekenler M., Tabatabai M.A., 2004. Arylamidase and amidohydrolases in soils as affected by liming and tillage systems. Soil Tillage Res. 77, 157-168.
- Gregorczyk K., 2001. Concentration of some heavy metals in both oat varieties growing in the soil at different content of fly-ash. Folia Univ. Agric. Stetin., Agricultura 88, 49-56.
- Kalra N., Jain M.C., Joshi H.C., Choudhary R., Harit R.C., Vatsa B.K., Sharma S.K., Kumar V., 1998. Fly ash as soil conditioner and fertilizer. Bioresource Technol. 64, 163-167.
- Kalra N., Jain M.C., Joshi H.C., Choudhary R., Kumar S., Pathak H., Sharma S.K., Kumar V., Kumar R., Harit R.C., Khan S.A., Hussain M.Z., 2003. Soil properties and crop productivity as influenced by fly ash incorporation in soil. Environ. Monit. Assess. 87 (1), 93-109.
- Kalra N., Joshi H. C., Chudhary A., Choudhary R., Sharma S.K., 1997. Impact of fly ash incorporation in soil on germination of crops. Bioresource Technol. 61, 39-41
- Khan M.R., Khan M., 1996. The effect of fly ash on plant growth and yield of tomato. Environ. Pollut. 92 (2), 105-111.
- Kucharski J., 1997. Relacje między aktywnosciš enzymów a żyznosciš gleby [Relationships between enzymatic activity and soil fertility]. [W:] Drobnoustroje w srodowisku – występowanie, aktywnosc i znaczenie, pod red. W. Barabasza, AR Kraków [in Polish].
- Kucharski J., Wyszkowska J., 2000. Response of soil microorganisms and buckwheat plants to cytokinines. Rostlinna Vyroba 46 (11), 527-532.
- Meller E., 1999. Changes in the properties of sandy soil fertilized with different doses of ashes from “Dolna Odra” power station. Fol. Univ. Agric. Stetin., Agricultura 78, 189-202.
- Mocek A., Drzymała S., Maszner P., 1997. Geneza, analiza i klasyfikacja gleb [Origin, analysis and soil classification]. Wyd. AR w Poznaniu [in Polish].
- Mulder E.G. Antheumisse J., 1963. Morphologie, physiologie et ecologie des Arthrobacter. Ann. de Institut Pasteur 105, 46-74.
- Öhlinger R., 1996. Dehydrogenase activity with the substrate TTC [In:] Methods in Soil Biology. Eds. F. Schinner R. Öhlinger, E. Kandeler, R. Margesin. Springer Verlag Berlin Heidelberg.
- Ostrowska A., Gawliński S., Szczubiałka Z., 1991. Metody analizy i oceny własciwosci gleb i roslin [Methods of analysis and evaluation of soil and plant properties]. Katalog IOS [in Polish].
- Pati S.S., Sahu S.K., 2004. CO2 evolution and enzyme activities (dehydrogenase, protease and amylase) of fly ash amended soil in presence and absence of earthworms (Drawida willsi Michaelsen) under laboratory conditions. Geoderma 118, 289-301.
- Polska Norma PN-92 R- 04016, 1992. Analiza chemiczno-rolnicza gleby. Oznaczanie zawartosci przyswajalnego cynku w glebach mineralnych [Chemical and agricultural analysis of soil. Determination of the content of available zinc in mineral soils]. Polski Komitet Normalizacji Miar i Jakosci [in Polish].
- Rai U.N., Pandey K., Sinha S., Singh R., Saxena R., Gupta D.K., 2004. Revegetating fly ash landfills with Prosopis juliflora L.: impact of different amendments and Rhizobium inoculation. Environ. Int. 30, 293-300.
- Rai U.N., Tripathi R.D., Singh N., Kumar A., Ali M.B., Pal A., Singh S.N., 2000. Amelioration of fly ash by selected nitrogen fixing blue green algae. Environ Contam. Toxicol. 64, 294-301.
- Renella G., Chaudri A.M., Brookes P.C., 2002. Fresh addition of heavy metals does not model long-term effects on microbial biomass and activity. Soil Biol. Biochem. 34, 121-124.
- Rogalski M., Kapela A., Kardyńska S., Wieczorek A., Kryszak J., 1998. Badania nad poczštkowym wzrostem i rozwojem niektórych gatunków traw rosnšcych na popiołach z elektrowni Dolna Odra [Studies on the initial growth and development of some grass cultivars grown in ashes originating from the Dolna Odra power station]. Archiv. Envirnon. Protection. 24 (3), 123-128 [in Polish].
- Schutter M.E., Fuhrmann J.J., 2001. Soil microbial community responses to fly ash amendment as revealed by analyses of whole soils and bacterial isolates. Soil Biol. Biochem. 33, 1947-1958.
- StatSoft, Inc., 2001. STATISTICA (data analysis software system), version 6, www.statsoft.com
- Trasar-Cepeda C., Leiros C., Gill-Sotres F., Seoane S., 1998. Towards a biochemical quality index for soils: An expression relating several biological and biochemical properties. Biol. Fertil. Soils 26, 100-106.
- Tripathi R.D., Vajpayee P., Singh N., Rai U.N., Kumar A., Ali M.B., Kumar B., Yunus M., 2004. Efficacy of various amendments for amelioration of fly-ash toxicity: growth performance and metal composition of Cassia siamea Lamk. Chemosphere 54 (11), 1581-1588.
- Veeresh H., Tripathy S., Choudhury D., Ghosh B.C., Hart B.R., Powell M.A., 2003. Changes in physical and chemical properties of three soil types in India as a result of amendment with fly ash and sewage sludge. Environ. Geol. 43, 513-520.
Typ dokumentu
Bibliografia
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