Open Access

Effect of Biochar and Biochar Combined with N-Fertiliser on Soil Organic Carbon Content


Cite

AGEGNEHU, G. – BASS, A.M. – NELSON, P.N. – BIRD, M.I. 2016. Benefits of biochar, compost and biochar–compost for soil quality, maize yield and greenhouse gas emissions in a tropical agricultural soil. In Science of The Total Environment, vol. 543, pp. 295–306. DOI: 10.1016/j.scitotenv.2015.11.05410.1016/j.scitotenv.2015.11.054Search in Google Scholar

DZIADOWIEC, H. – GONET, S.S. 1999. Przewodnik metodyczny do badań materii organicznej gleb [Methodical guide-book for soil organic matter studies]. Prace Komisji Naukowych Polskiego Towarzystwa Gleboznawczego, N. 120, Komisja chemii gleb, Zespół Materii Organicznej Gleb, N II/16, 65 p.Search in Google Scholar

FISCHER, D. – GLASER, B. 2012. Synergisms between compost and biochar for sustainable soil amelioration. In KUMAR, S. (Ed.). Management of Organic Waste. In Tech Europe, Rijeka. pp. 167–198.Search in Google Scholar

HOYLE, F.C. – BALDOCK, J.A. – MURPHY, D.V. 2011. Soil organic carbon Role in rainfed farming systems. In TOW, P. – COOPER, I. – PARTRIDGE, I. – BIRCH, C. (Eds.). Rainfed Farming Systems. Dordrecht : Springer, pp. 339–361.Search in Google Scholar

KIMETU, J. – LEHMANN, J. 2010. Stability and stabilisation of biochar and green manure in soil with different organic carbon contents. In Australian Journal of Soil Research, vol. 48, pp. 577–585. DOI: 10.1071/SR1003610.1071/SR10036Search in Google Scholar

KIRKBY, C.A. – KIRKEGAARD, J.A. – RICHARDSON, A.E. – WADE, L.J. – BLANCHARD, C. – BATTEN, G. 2011. Stable soil organic matter: A comparison of C:N:P:S ratios in Australian and other world soils. In Geoderma, vol. 136, pp. 197–208. DOI: 10.1016/j.geoderma.2011.04.01010.1016/j.geoderma.2011.04.010Search in Google Scholar

KOBZA, J. – GAŠOVÁ, K. 2014. Soil monitoring system as a basic tool for protection of soils and sustainable land use in Slovakia. In Journal of Agricultural Science and Technology, vol. 4, pp. 504–513.Search in Google Scholar

KOIDE, R.T. – NGUYEN, B.T. – SKINNER, R.H. – DELL, C.J. – PEOPLES, M.S. – ADLER, P.R. – DROHAN, P.J. 2014. Biochar amendment of soil improves resilience to climate change. In GCB Bioenergy, vol. 7, no. 5, pp. 1084–1091. DOI: 10.1111/gcbb.1219110.1111/gcbb.12191Search in Google Scholar

ŠIMANSKÝ, V. – BALASHOV, E. – HORÁK, J. 2016. Water stability of soil aggregates and their ability to sequester carbon in soils of vineyards in Slovakia. In Archives of Agronomy and Soil Science, vol. 62, no. 2, pp. 177–197. DOI: 10.1080/03650340.2015.104868310.1080/03650340.2015.1048683Search in Google Scholar

ŠIMANSKÝ, V. – HORÁK, J. – IGAZ, D. – JONCZAK, J. – MARKIEWICZ, M. – FELBER, R. – RIZHIYA, E.Y. – LUKAC, M. 2016. How dose of biochar and biochar with nitrogen can improve the parameters of soil organic matter and soil structure? In Biologia, vol. 71, no. 9, pp. 989–995. DOI: 10.1515/biolog-2016-012210.1515/biolog-2016-0122Search in Google Scholar

SOLAIMAN, Z.M. – ANAWAR, H.M. 2015. Application of Biochars for Soil Constraints: Challenges and Solutions. In Pedosphere, vol. 25, no. 5, pp. 631–638. DOI: 10.1016/S1002-0160(15)30044-810.1016/S1002-0160(15)30044-8Search in Google Scholar

VILČEK, J. − BEDRNA, Z. 2007. Vhodnosť poľnohospodárskych pôd a krajiny Slovenska na pestovanie rastlín [The eligibility of agricultural soils and landscapes of Slovakia for the cultivation of plants]. Bratislava : Výskumný ústav pôdoznalectva a ochrany prírody, pp. 248Search in Google Scholar

YANG, X. – REN, W. – SUN, B. – ZHANG, S. 2012. Effects of contrasting soil management regimes on total and labile soil organic carbon fractions in a loess soil in China. In Geoderma, vol. 177–178, pp. 49–56. DOI: 10.1016/j.geoderma.2012.01.03310.1016/j.geoderma.2012.01.033Search in Google Scholar

eISSN:
1338-4376
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Life Sciences, Plant Science, Ecology, other