614
Views
8
CrossRef citations to date
0
Altmetric
Articles

Effects of Biochar and Compost Applications on Penetration Resistance and Physical Quality of a Sandy Clay Loam Soil

ORCID Icon, , , &
Pages 38-44 | Received 26 Nov 2018, Accepted 04 Nov 2019, Published online: 26 Nov 2019

References

  • Addiscott, T. M., and A. R. Dexter. 1994. Tillage and crop residue management effects on losses of chemicals from soils. Soil & Tillage Research 30:125–68. doi:10.1016/0167-1987(94)90003-5.
  • Agegnehu, G., A. M. Bass, P. N. Nelson, B. Muirhead, G. Wright, and M. I. Bird. 2015. Biochar and biochar-compost as soil amendments: Effects on peanut yield, soil properties and greenhouse gas emissions in tropical North Queensland, Australia. Agriculture, Ecosystems & Environment 213:72–85. doi:10.1016/j.agee.2015.07.027.
  • Aggelides, S. M., and P. A. Londra. 2000. Effects of compost produced from town wastes and sewage sludge on the physical properties of a loamy and a clay soil. Bioresource Technology 71:253–59. doi:10.1016/S0960-8524(99)00074-7.
  • Alameda, D., R. Villar, and J. M. Iriondo. 2012. Spatial pattern of soil compaction: Trees’ footprint on soil physical properties. Forest Ecology and Management 283:128–37. doi:10.1016/j.foreco.2012.07.018.
  • Arvidsson, J. 2001. Subsoil compaction caused by heavy sugarbeet harvesters in southern Sweden: I. Soil physical properties and crop yield in six field experiments. Soil & Tillage Research 60:67–78. doi:10.1016/S0167-1987(01)00169-6.
  • Arvidsson, J., E. Sjöberg, and J. J. H. van den Akker. 2003. Subsoil compaction by heavy sugarbeet harvesters in southern Sweden: III. Risk assessment using a soil water model. Soil & Tillage Research 73:77–87. doi:10.1016/S0167-1987(03)00101-6.
  • Asai, H., B. K. Samson, H. M. Stephan, K. Songyikhangsuthor, K. Homma, Y. Kiyono, Y. Inoue, T. Shiraiwa, and T. Horie. 2009. Biochar amendment techniques for upland rice production in Northern Laos: 1. Soil physical properties, leaf SPAD and grain yield. Field Crops Research 111:81–84. doi:10.1016/j.fcr.2008.10.008.
  • Busscher, W. J., and P. J. Bauer. 2003. Soil strength, cotton root growth and lint yield in a southeastern USA coastal loamy sand. Soil & Tillage Research 74:151–59. doi:10.1016/j.still.2003.06.002.
  • Busscher, W. J., J. M. Novak, D. E. Evans, D. W. Watts, M. A. S. Niandou, and M. Ahmedna. 2010. Influence of pecan biochar on physical properties of a norfolk loamy sand. Soil Science 175:10–14. doi:10.1097/SS.0b013e3181cb7f46.
  • Celik, I., H. Gunal, M. Budak, and C. Akpinar. 2010. Effects of long-term organic and mineral fertilizers on bulk density and penetration resistance in semi-arid Mediterranean soil conditions. Geoderma 160:236–43. doi:10.1016/j.geoderma.2010.09.028.
  • Chan, K. Y., L. Van, Zwieten, I. Meszaros, A. Downie, and S. Joseph. 2007. Agronomic values of greenwaste biochar as a soil amendment. Soil Research 45:629–34. doi:10.1071/SR07109.
  • Dexter, A. R. 1997. Physical properties of tilled soils. Soil & Tillage Research 43 (1):41–63. doi:10.1016/S0167-1987(97)00034-2.
  • Glab, T., A. Zabinski, U. Sadowska, K. Gondek, M. Kopec, M. Mierzwa–Hersztek, and S. Tabor. 2018. Effects of co-composted maize, sewage sludge, and biochar mixtures on hydrological and physical qualities of sandy soil. Geoderma 315:27–35. doi:10.1016/j.geoderma.2017.11.034.
  • Glaser, B., J. Lehmann, and W. Zech. 2002. Ameliorating physical and chemical properties of highly weathered soils in the tropics with charcoal, a review. Biology and Fertility of Soils 35:219–30. doi:10.1007/s00374-002-0466-4.
  • Gomez, A., R. F. Powers, M. J. Singer, and W. R. Horwath. 2002. Soil compaction effects on growth of young ponderosa pine following litter removal in California’s Sierra Nevada. Soil Science Society of America Journal. Soil Science Society of America 66:1334–43. doi:10.2136/sssaj2002.1334.
  • Graecen, E. L., K. P. Barley, and D. A. Farrell. 1969. Mechanics of root growth in soils with particular reference to the implications for root distribution. Agricultural Sciences 15:256–68.
  • Greenland, D. 1981. Soil management and soil degradation. Journal of Soil Science 32:301–22. doi:10.1111/j.1365-2389.1981.tb01708.x.
  • Gugino, B. K., G. S., . Abawi, O. J. Idowu, R. R. Schindelbeck, L. L. Smith, J. E. Thies, D. W. Wolfe, and H. M. Van, Es, 2009. Cornell soil health assessment training manual. (Cornell University College of Agriculture and Life Sciences).
  • Guimarães, R. M. L., B. C. Ball, C. A. Tormena, N. F. B. Giarola, and Á. P. da Silva. 2013. Relating visual evaluation of soil structure to other physical properties in soils of contrasting texture and management. Soil & Tillage Research 127:92–99. doi:10.1016/j.still.2012.01.020.
  • Hamza, M. A., and W. K. Anderson. 2005. Soil compaction in cropping systems: A review of the nature, causes and possible solutions. Soil & Tillage Research 82:121–45.
  • Hargreaves, J. C., M. S. Adl, and P. R. Warman. 2008. A review of the use of composted municipal solid waste in agriculture. Agriculture, Ecosystems & Environment 123:1–14.
  • Iqbal, I. 2018. Effect of sugarcane litter compost on soil compaction. International Agriculture System 6:35–44.
  • Laird, D. A., P. Fleming, D. D. Davis, R. Horton, B. Wang, and D. L. Karlen. 2010. Impact of biochar amendments on the quality of a typical Midwestern agricultural soil. Geoderma 158:443–49. doi:10.1016/j.geoderma.2010.05.013.
  • Lehmann, J., M. C. Rillig, J. Thies, C. A. Masiello, W. C. Hockaday, and D. Crowley. 2011. Biochar effects on soil biota–A review. Soil Biology and Biochemistry 43:1812–36. doi:10.1016/j.soilbio.2011.04.022.
  • Li, Y., S. Hu, J. Chen, K. Müller, Y. Li, W. Fu, Z. Lin, and H. Wang. 2018. Effects of biochar application in forest ecosystems on soil properties and greenhouse gas emissions: A review. Journal of Soils and Sediments 18:546–63.
  • Martıınez, L. J., and J. A. Zinck. 2004. Temporal variation of soil compaction and deterioration of soil quality in pasture areas of Colombian Amazonia. Soil & Tillage Research 75:3–18. doi:10.1016/j.still.2002.12.001.
  • Masulili, A., W. H. Utomo, and M. Syechfani. 2010. Rice husk biochar for rice based cropping system in acid soil 1. The characteristics of rice husk biochar and its influence on the properties of acid sulfate soils and rice growth in West Kalimantan, Indonesia. The Journal of Agricultural Science 2:39.
  • Mukherjee, A., and R. Lal. 2013. Biochar ımpacts on soil physical properties and greenhouse gas emissions. Agronomy 3:313. doi:10.3390/agronomy3020313.
  • Özdemir, N., and M. Canbolat. 1997. Toprak strüktürünün oluşum süreçleri ve yönetimi. In Atatürk Üniversitesi Ziraat Fakültesi Dergisi, 28: :413–419.
  • Peake, L., A. Freddo, and B. J. Reid. 2014. Sustaining soils and mitigating climate change using biochar. In Sustainability science and technology, Chapter: 7, Publisher: CRC Press, pp.109-126. doi: 10.1201/b16701-8.
  • Peng, X., L. L. Ye, C. H. Wang, H. Zhou, and B. Sun. 2011. Temperature and durationdependent rice straw derived biochar: Characteristics and its effects on soil properties of an Ultisol in southern China. Soil & Tillage Research 112:159–66. doi:10.1016/j.still.2011.01.002.
  • Renault, P., and J. Sierra. 1994. Modeling oxygen diffusion in aggregated soils: II. anaerobiosis in topsoil layers. Soil Science Society of America Journal. Soil Science Society of America 58:1023–30. doi:10.2136/sssaj1994.03615995005800040005x.
  • Riahi, R., A. Hatira, S. Baccouche, and A. Nakouri. 2018. Development of an empiric model of estimation of the environmental risk of soil physical degradation in the context of climate change application in the Mejerda valley, Tunisia. Journal of African Earth Sciences 147:498–510.
  • Seker, C. 1999. The effect of water content on the penetration resistance of different soils, and regression models. Turkish Journal of Agriculture and Forestry 23:467–72.
  • Servadio, P., A. Marsili, N. Vignozzi, S. Pellegrini, and M. Pagliai. 2005. Effects on some soil qualities in central Italy following the passage of four wheel drive tractor fitted with single and dual tires. Soil & Tillage Research 84:87–100. doi:10.1016/j.still.2004.09.018.
  • Wang, T., C. E. Stewart, C. Sun, Y. Wang, and J. Zheng. 2018. Effects of biochar addition on evaporation in the five typical Loess Plateau soils. Catena 162:29–39. doi:10.1016/j.catena.2017.11.013.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.