Cite

[1] Różański S. Fractionation of selected heavy metals in agricultural soils. Ecol Chem Eng S. 2013;20(1):117-125. DOI: 10.2478/eces-2013-0009.10.2478/eces-2013-0009Search in Google Scholar

[2] Lang A, Bork HR. Past soil erosion in Europe. Boardman J, Poesen J, editors. Soil Erosion in Europe. Chichester: John Wiley & Sons; 2006:465-476. DOI: 10.1002/0470859202.10.1002/0470859202Search in Google Scholar

[3] Świtonia M. Use of soil profile truncation to estimate influence of accelerated erosion on soil cover transformation in young morainic landscapes, North-Eastern Poland. CATENA. 2014;116:173-184. DOI: 10.1016/j.catena.2013.12.015.10.1016/j.catena.2013.12.015Search in Google Scholar

[4] Wolf B, Snyder GH. Sustainable Soils. The Place of Organic Matter in Sustaining Soils and their Productivity. Food Products Press. Binghamton; 2003.10.1201/9781482277913Search in Google Scholar

[5] Abdollahi L, Schjonning P, Elmholt S, Munkholm LJ. The effects of organic matter application and intensive tillage and traffic on soil structure formation and stability. Soil Till Res. 2014;136:28-37. DOI: 10.1016/j.bbr.2011.03.03110.1016/j.bbr.2011.03.031Search in Google Scholar

[6] Halberg N, Alrϕe HF, Knudsen MT, Kristensen ES, editors. Global Development of Organic Agriculture. Challenges and Prospects. Wallingford: CABI Publishing; 2006.10.1079/9781845930783.0000Search in Google Scholar

[7] Slavík R, JulinovÁ M, Labudíková M. Screening of the spatial distribution of risk metals in topsoil from an industrial complex. Ecol Chem Eng S. 2012;19(2):259-272. DOI: 10.2478/v10216-011-0020-0.10.2478/v10216-011-0020-0Search in Google Scholar

[8] Bissonnais YL, Montier C, Jamagne M, Daroussin J, King D. Mapping erosion risk for cultivated soil in France. CATENA. 2002;46(2-3):207-220. DOI: 10.1016/S0341-8162(01)00167-9.10.1016/S0341-8162(01)00167-9Search in Google Scholar

[9] Diaz LF, Bertoldi M, Bidlingmaier W, Stentiford E. Compost Science and Technology. Amsterdam: MA Elsevier; 2007.Search in Google Scholar

[10] Plošek L, Nsanganwimana F, Pourrut B, Elbl J, Hynšt J, Kintl A, et al. The effect of compost addition on chemical and nitrogen characteristics, respiration activity and biomass production in prepared reclamation substrates. Int J Agri Scien Eng. 2013;7:363-369.Search in Google Scholar

[11] Nevens F, Reheul D. The application of vegetable, fruit and garden waste (VFG) compost in addition to cattle slurry in a silage maize monoculture: nitrogen availability and use. Eur J Agron. 2003;19:189-203. DOI: 10.1016/S1161-0301(02)00036-9.10.1016/S1161-0301(02)00036-9Search in Google Scholar

[12] Elbl J, Plošek L, Kintl A, Přichystalová J, Záhora J, Hynšt J. Effect of organic-waste compost addition on leaching of mineral nitrogen from arable land and plant production. World Academy of Science, Engineering and Technology. 2013;7:2066-2072.Search in Google Scholar

[13] Peoples MB, Faizah AW, Rerkasem B, Herridge DF. Methods for Evaluating Nitrogen Fixation by Nodulated Legumes in the Field. Canberra: Australian Centre for International Agricultural Research; 1989.Search in Google Scholar

[14] Bundy LG, Meisinger JJ. Nitrogen Availability Indices - Methods of Soil Analysis, Part 2. Microbiological and biochemical properties. SSA Book Series; 1994.Search in Google Scholar

[15] Šimek M, Virtanen S, Krištůfek V, Simojoki A, Yli-Halla M. Evidence of rich microbial communities in the subsoil of boreal acid sulphate soil conductive to greenhouse gas emissions. Agric Ecosyst Environ. 2011;140:113-122. DOI: 10.1016/j.agee.2010.11.018.10.1016/j.agee.2010.11.018Search in Google Scholar

[16] Robichaud PR, Lewis SA, Ashmun LE. New Procedure for Sampling Infiltration to Assess Post-fire Soil Water Repellency. Res. Note. RMRS-RN-33. Rocky Mountain Station U.S.: Department of Agriculture, Forest Service; 2008.10.2737/RMRS-RN-33Search in Google Scholar

[17] Doerr SH, Shakesby RA, Walsh RPD. Soil water repellency: its causes, characteristics and hydro--geomorphological significance. Earth-Sci Rev. 200;51:35-65. DOI: 10.1016/S0012-8252(00)00011-8.10.1016/S0012-8252(00)00011-8Search in Google Scholar

[18] Buczko U, Bens O, Hüttl RF. Variability of soil water repellency in sandy forest soils with different stand structure under Scots pine (Pinus sylvestris) and beech (Fagus sylvatica). Geoderma. 2005;126:317-336. DOI: 10.1016/j.geoderma.2004.10.003.10.1016/j.geoderma.2004.10.003Search in Google Scholar

[19] Šindelář R, Kovaříček P, Vlášková M, Hůla J, Krouhlík M. Measurement of water infiltration into soil using round infiltrometer mini disk. Agritech Science. 2008;2:1-6.Search in Google Scholar

[20] Lichner L, Hallett P, Feeney DS, Ďugová O, Šír M, Tesař M. Field measurement of soil water repellency and its impact on water flow under different vegetation. Biologia (Section botany). 2007;62:537-541.10.2478/s11756-007-0106-4Search in Google Scholar

[21] Lichner L, Orfánus T, Nováková K, Šír M, Tesař M. The impact of vegetation on hydraulic conductivity of sandy soil. Soil & Water Res. 2007;2:59-66.10.17221/2115-SWRSearch in Google Scholar

[22] Zhang R. Determination of soil sorptivity and hydraulic conductivity from the disk infiltrometer. Soil Sci Soc Am J. 1997;22:621-626. DOI: 10.2136/sssaj1997.03615995006100040005x.10.2136/sssaj1997.03615995006100040005xSearch in Google Scholar

[23] Schimel JP, Bennett J. Nitrogen mineralization: challenges of a changing paradigm. Ecology. 2004;85:591-602.10.1890/03-8002Search in Google Scholar

[24] Weber J, Karcyewska A, Drozd J, Licznar M, Jamroz E, Kocowicz A. Agricultural and ecological aspects of a sandy soil as affected by the application of municipal solid waste compost. Soil Biol Biochem. 2007;39:1294-1302. DOI: 10.1016/j.soilbio.2006.12.005.10.1016/j.soilbio.2006.12.005Search in Google Scholar

[25] Wen-Zhi Z, Chi X, Jing-Wei W, Jie-Sheng H, Tao M. Effect of salinity on soil respiration and nitrogen dynamics. Ecol Chem Eng S. 2013;20(3):519-530. DOI: 10.2478/eces-2013-0039.10.2478/eces-2013-0039Search in Google Scholar

[26] Silva RG, Jorgensen EE, Holub SM, Gonsoulin ME. Relationships between culturable soil microbial populations and gross nitrogen transformation processes in a clay loam soil across ecosystems. Nutr Cycl Agroecos. 2005;71(3):259-270. DOI: 10.1007/s10705-004-6378-y.10.1007/s10705-004-6378-ySearch in Google Scholar

[27] Muller C, Abbasi MK, Kammann C, Clough TJ, Sherlock RR, Stevens RJ, et al. Soil respiratory quotient determined via barometric process separation combined with nitrogen-15 labeling. Soil Sci Soc Am J. 2004;68(5):1610-1615.10.2136/sssaj2004.1610Search in Google Scholar

[28] Borken W, Muhs A, Beese F. Aplication of compost in spruce forest: effect on soil respiration, basal respiration and microbial biomass. Forest Ecol Manag. 2002;159: 49-58. DOI: 10.1016/S0378-1127(01)00709-5.10.1016/S0378-1127(01)00709-5Search in Google Scholar

[29] Bloem J, Hopkins DW, Benedetti A. Microbiological Methods for Assessing Soil Quality. Wallingford: CABI Publishing; 2006.10.1079/9780851990989.0000Search in Google Scholar

[30] Aslam DN, Horwath W, Vander Gheynst JS. Comparison of several maturity indicators for estimating phytotoxicity in compost-amended soil. Waste Manage. 2008;28:2070-2076. DOI: 10.1016/j.wasman.2007.08.026.10.1016/j.wasman.2007.08.02617980572Search in Google Scholar

[31] Tiquia SM. Reduction of compost phytotoxicity during the process of decomposition. Chemosphere. 2010;79:506-512. DOI:10.1016/j.chemosphere.2010.02.040.10.1016/j.chemosphere.2010.02.04020299074Search in Google Scholar

[32] Himanen M, Hänninen K. Composting of bio-waste, aerobic and anaerobic sludges - effect of feedstock on the process and quality of compost. Biores Technol. 2011;102:2842-2852. DOI: 10.1016/j.biortech.2010.10.059.10.1016/j.biortech.2010.10.05921095117Search in Google Scholar

[33] Elbl J, Plošek L, Záhora J, Kintl A, Stroblová M. Effect of increased doses of compost to prepare reclamation substrate on soil respiration and content of mineral nitrogen in the soil. Ad Alta. 2013;3:88-91.Search in Google Scholar

[34] Walker DJ, Bernal MP. The effects of olive mill waste compost and poultry manure on the availability and plant uptake of nutrients in a highly saline soil. Biores Technol. 2008;99:396-403. DOI: 10.1016/j.biortech.2006.12.006.10.1016/j.biortech.2006.12.00617275292Search in Google Scholar

[35] Lakhdar A, Rabhi M, Ghaya T, Montemurro F, Jedidi N, Abdelly Ch. Effectiveness of compost use in salt-affected soil. J Hazardous Mater. 2009;171:29-37. DOI: 10.1016/j.jhazmat.2009.05.132.10.1016/j.jhazmat.2009.05.13219576686Search in Google Scholar

[36] Schaumann GE, Braun B, Kirchner D, Rotard W, Szewzyk U, Grohmann E. Influence of biofilms on the water repellency of urban soil samples. Hydrological Processes. 2007;21:2276-2284. DOI: 0.1002/hyp.6746.10.1002/hyp.6746Search in Google Scholar

eISSN:
1898-6196
Language:
English