Measurement of Physicochemical Properties, Electrical and Thermal Conductivity of Wood Ash for Effective Soil Amendment
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- Füzesi, I., Heil, B., & Kovács, G. 2015. Effects of Wood Ash on the Chemical Properties of Soil and Crop Vitality in Small Plot Experiments/Fahamu hatása a talaj kémiai jellemzőire és a termény vitalitására egy kisparcellás kísérletben. Acta Silvatica et Lignaria Hungarica, 11(1), 55–64.
- Kopecky, M. J., Meyers, N. L., & Wasko, W. 1995. Using industrial wood ash as a soil amendment. Magnesium Research, 1(2), 240–440.
- Saarsalmi, A., Mälkönen, E., & Piirainen, S. 2001. Effects of wood ash fertilization on forest soil chemical properties.
- Odiete, I., Chude, V. O., Ojeniyi, S. O., Okozi, A. A., & Hussaini, G. M. 2005. Responses of maize to nitrogen and phosphorus sources in guinea savanna zone of Nigeria. Nigerian Journal of Soil Science, 15(1), 90–95.
- Rodríguez, L., Salazar, P., & Preston, T. R. 2009. Effect of biochar and biodigester effluent on growth of maize in acid soils. Integrated Farming Systems for Food and Energy in a Warming, Resource-Depleting World, 84.
- Sharland, R. W. 1997. Understanding traditional perceptions of wood ash: a means of communicating soil fertility. ILEIA Newsletter, 13(3), 28.
- Awodun, M. A., Ojeniyi, S. O., Adeboye, A., & Odedina, S. A. 2007. Effect of oil palm bunch refuse ash on soil and plant nutrient composition and yield of maize. American-Eurasian Journal of Sustainable Agriculture, 1(1), 50–54.
- Ghobadi, M. H., Abdilor, Y., & Babazadeh, R. 2014. Stabilization of clay soils using lime and effect of pH variations on shear strength parameters. Bulletin of Engineering Geology and the Environment, 73(2), 611–619.
- Sakr, M. A., Shahin, M. A., & Metwally, Y. M. 2008. Engineering Characteristics of Lime-Treated Soft Clay Soil of High Organic Content. GEOTROPIKA 2008" Advancement in Geotechnical and Highway Engineering", 6–10.
- Iyasele, J. U., & Idiata, D. J. 2015. Investigation of the relationship between electrical conductivity and total dissolved solids for mono-valent, di-valent and tri-valent metal compounds. International Journal of Engineering Research and Reviews, 3(1), 40–48.
- Onwuka, B. M., & Mang, B. 2018. Effects of soil temperature on some soil properties and plant growth. Adv. Plants Agric. Res, 8, 34–37.
- Elias, E. A., Cichota, R., Torriani, H. H., & De Jong Van Lier, Q. 2004. Analytical soil–temperature model. Soil Science Society of America Journal, 68(3), 784–788.
- Ylivainio, K., & Peltovuori, T. 2012. Phosphorus acquisition by barley (Hordeum vulgare L.) at suboptimal soil temperature. Agricultural and Food Science, 21(4), 453–461.
- Inbar, A., Lado, M., Sternberg, M., Tenau, H., & Ben-Hur, M. 2014. Forest fire effects on soil chemical and physicochemical properties, infiltration, runoff, and erosion in a semiarid Mediterranean region. Geoderma, 221, 131–138.
- de Vos, A., Bruning, B., van Straten, G., Oosterbaan, R., Rozema, J., & van Bodegom, P. 2016. Crop salt tolerance under controlled field conditions in The Netherlands, based on trials conducted at Salt Farm Texel. Salt Farm Texel.
- Reis Jr, R. A., Fontes, P. C. R., Neves, J. C. L., & Santos, N. T. 1999. Total soil electrical conductivity and critical soil K+ to Ca2+ and Mg2+ ratio for potato crops. Scientia Agricola, 56(4), 993-997.
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