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Potential Application of Biochar Depends Mainly on Its Profits for Farmers: Case Study in Slovakia


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AYDIN, E. – ŠIMANSKÝ, V. – HORÁK, J. – IGAZ, D. 2020. Potential of biochar to alternate soil properties and crop yields 3 and 4 years after the application. In Agronomy, vol. 10, pp. 889. DOI: 10.3390/agronomy10060889.10.3390/agronomy10060889Search in Google Scholar

BAROW, C.J. 2012. Biochar: Potential for countering land degradation and for improving agriculture. In Applied Geography, vol. 34, pp. 21 – 28. DOI: 10.1016/j.apgeog.2011.09.008.10.1016/j.apgeog.2011.09.008Search in Google Scholar

EL-NAGAR, A. – LEE, S.S. – RINKELEBE, J. – FAROQ, M. – SONG, H. – SARMAH, A.K. – ZIMMERMAN, A.R. – AHMAD, M. – SHAHEN, S.M. – OK, Y.S. 2019. Biochar application to low fertility soils: A review of current status, and future prospects. In Geoderma, vol. 337, pp. 536 – 554. DOI: 10.1016/j.geoderma.2018.09.034.10.1016/j.geoderma.2018.09.034Search in Google Scholar

HAN, L. – SUN, K. – YANG, Y. – XIA, X. – LI, F. – YANG, Z. – XING, B. 2020. Biochar´s stability and effect on the content, composition and turnover of soil organic carbon. In Geoderma, vol. 364, 114 − 184. DOI: 10.1016/j.geoderma.2020.114184.10.1016/j.geoderma.2020.114184Search in Google Scholar

HORÁK, J. – ŠIMANSKÝ, V. – AYDIN, E. 2020a. Benefits of biochar and its combination with nitrogen fertilization for soil quality and grain yields of barley, wheat and corn. In Journal of Elementology, vol. 25, no. 2, pp. 443 – 458. DOI: 10.5601/jelem.2019.24.3.1887.10.5601/jelem.2019.24.3.1887Search in Google Scholar

HORÁK, J. – ŠIMANSKÝ, V. – IGAZ, D. – JURIGA, M. – AYDIN, E. – LUKAC, M. 2020b. Biochar: An important component ameliorating the productivity of intensively used soils – review. In Polish Journal of Environmental Studies, vol. 29, no. 5, pp. 2995 – 3001. DOI: 10.15244/pjoes/113128.10.15244/pjoes/113128Search in Google Scholar

CHAN, K.Y. – VAN ZWIETEN, L. – MESZAROS, I. – DOWNIE, A. – JOSEPH, S. 2007. Agronomic values of green waste biochar as a soil amendment. In Australian Journal of Soil Research, vol. 45, no. 8, pp. 629 – 634. DOI: 10.1071/SR07109.10.1071/SR07109Search in Google Scholar

JEFFERY, S. – VERHEIJEN, F.G.A. – VELDE, M. – BASTOS, A.C. 2011. A quantitative review of the effects of biochar application to soils on crop productivity using meta-analysis. In Agriculture, Ecosystems & Environment, vol. 144, pp. 175 – 187. DOI: 10.1016/j.agee.2011.08.015.10.1016/j.agee.2011.08.015Search in Google Scholar

LEHMANN, J. – JOSEPH, S. 2015. Biochar for Environmental Managements, Science, technology and Implementation, 1st ed., London, New York: Routledge, pp. 928.Search in Google Scholar

LONE, A.H. – NAJAR, G.R. – GANIE, M.A. – SOFI, J.A. – ALI, T. 2015. Biochar for sustainable soil health: A review of prospects and concerns. In Pedosphere, vol. 25, no. 5, pp. 639 – 653. DOI: 10.1016/S1002-0160(15)30045-X.10.1016/S1002-0160(15)30045-XSearch in Google Scholar

RAKSHIT, A. – SARKAR, B. – ABHILASH, P.CH. 2019. Soil Amendments for Sustainability, Challenges and Perspectives, 1st ed., Boca Raton, FL: Taylor and Francis Group, pp. 403.Search in Google Scholar

RIZHIYA, E.Y. – MUKHINA, I.M. – BALASHOV, E.V. – ŠIMANSKÝ, V. – BUCHKINA, N.P. 2019. Effect of biochar on N2O emission, crop yield and properties of Stagnic Luvisol in a field experiment. In Zemdirbyste- Agriculture, vol. 106, no. 4, pp. 297 – 306. DOI: 10.13080/z-a.2019.106.038.10.13080/z-a.2019.106.038Search in Google Scholar

SHACKLEY, S. – RUYSSCHAERT, G. – ZWART, K. – GLASER, B. 2016. Biochar in European Soils and Agriculture, Science and Practice, 1st ed., London, New York: Rout-ledge, pp. 301.Search in Google Scholar

ŠIMANSKÝ, V. – HORÁK, J. – POLLÁKOVÁ, N. – JURIGA, M. – JONCZAK, J. 2019. Will the macro and micronutrient content in biochar show in the higher content of the individual parts of corn? In Journal of Elementology, vol. 24, no. 2, pp. 525–537. DOI: 10.5601/jelem.2018.23.2.1671.10.5601/jelem.2018.23.2.1671Search in Google Scholar

TAMMEORG, P. – BASTOS, A.C. – JEFFERY, S. – REES, F. – KERN, J. – GRABER, E.R. – VENTURA, M. – KIBBLEWHITE, M. – AMARO, A. – BUDAI, A. – CORDOVIL, C.M.D.S. – DOMENE, X. – GARDI, C. – GASCÓ, G. – HORÁK, J. – KAMMANN, C. – KONDRLOVÁ, E. – LAIRD, D. – LOUREIRO, S. – MARTINS, M.A.S. – PANZACCHI, P. – PRASAD, M. – PRODANA, M. – PUGA, A.P. – RUYSSCHAERT, G. – SAS-PASZT, L. – SILVA, F.C. – TEIXEIRA, W.G. – TONON, G. – VEDOVE, G.D. – ZAVALLONI, C. – GLASER, B. – VERHEIJEN, F.G.A. 2017. Biochars in soils: Towards the required level of scientific understanding. In Journal of Environmental Engineering and Landscape Management, vol. 25, no. 2, pp. 192 – 207. DOI: 10.3846/16486897.2016.1239582.10.3846/16486897.2016.1239582Search in Google Scholar

VERHEIJEN, F.G.A. – JEFFERY, S. – BASTOS, A.C. – VAN DER VELDE, M. – DIAFAS, I. 2009. Biochar Application to Soils – A Critical Scientific Review of Effects on Soil Properties, Processes and Functions, 1st ed., Luxembourg: Office for the Official Publications of the European Communities, pp. 149. DOI: 10.2788/472.Search in Google Scholar

eISSN:
1338-4376
Język:
Angielski
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4 razy w roku
Dziedziny czasopisma:
Life Sciences, Plant Science, Ecology, other