Carbon sequestration in sugarcane plant and soil with different cultivation systems

سال انتشار: 1398
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 483

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شناسه ملی سند علمی:

JR_IAR-38-2_006

تاریخ نمایه سازی: 6 مرداد 1399

چکیده مقاله:

Sugarcane (Saccharum officinarum L.) is a multi-purpose crop, mainly planted in South-western (SW) parts of Iran. However, the capability of sugarcane farms to sequestrate carbon into soil and plant is not well documented. In this research, the carbon sequestration in sugarcane plant and soil in a ratooning traditional cultivation system at the Amirkabir Sugarcane Agro-Industry Complex in Khuzestan Province was evaluated during 2013-2014. The soil samples were randomly collected at 0-30 cm top layer and soil organic carbon (SOC) was analysed in laboratory. Simultaneously, both aboveground and underground parts of sugarcane plants were sampled and the carbon content of each part was measured separately. The carbon stored in the aboveground parts (leaves and shoots) was significantly (p≤0.01) higher (1292 kg ha-1) than that (655 kg ha-1) of underground organs (roots). The total SOC (1987.3 kg ha-1) was not considerably higher than the sequestrated carbon (1947 kg ha-1) in plant parts. Furthermore, a positive and significant correlation was found between SOC and soil clay content. Overall, 3934.5 kg ha-1 sequestrated carbon equal to 14439.6 kg ha-1 atmospheric CO2 was estimated to be in sugarcane farms. In conclusion, the results showed that the Ratoon I has the highest potential of carbon sequestration than other treatments. Current sugarcane farming practices in Khuzestan could act as an important pool for carbon sequestration and consequently enhancing the mitigation of climate change impacts. It seems that changing the current sugarcane traditional harvesting system which is predominantly based on burning the residues towards the suitable management could enhance the capability of carbon sequestration even more.

نویسندگان

Alireza Azizi

Department of Natural Resources and Environmental Engineering, Faculty of Agriculture, Shiraz University, Shiraz, Iran

Gholamabbas Ghanbarian

Department of Natural Resources and Environmental Engineering, Faculty of Agriculture, Shiraz University, Shiraz, Iran

Ali Hassanli

Emeritus Professor at Shiraz University and Adjunct Professor at School of Natural and Built Environments, University of South Australia

Mahmoud Shomeili

Manager of Agronomy Department in Iranian Sugarcane Research and Training Institute

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  • Anaya, C.A., & Huber-Sannwald, E. (2015). Long-term soil organic carbon ...
  • Bikila, N.G., Tessema, Z.K., Abule, E.G. (2016). Carbon sequestration potentials ...
  • Bouyoucos, G. J. (1962). Hydrometer method improved for making particle ...
  • Buyanovsky, G.A., & Wagner, G.H. (1998). Carbon cycling in cultivated ...
  • Cancado, J.E., Saldiva, P.H.,. Pereira, L.A., Lara, L.B., Artaxo, P., ...
  • Carter, M.R. (2008). Soil sampling and methods of analysis. CRC ...
  • Cerri, C.C., Galdos, M.V., Maia, S.M.F., Bernoux, M., Feigl, B.J., ...
  • Chandra, R., Rana, N. S., Kumar, S., & Panwar, G. ...
  • D Alessandro, D. M., Smit, B., & Long, J. R. ...
  • Davis, S. J., Caldeira, K., & Matthews, H. D. (2010). ...
  • De Figueiredo, E. B., Panosso, A. R., Romão, R., & ...
  • Falloon, P., P. Smith, R. Betts, C.D. Jones, J. Smith, ...
  • FAOSTAT (2016).Availabale from: http:// faostat3. fao.org/ download/Q/QC/E/. ...
  • Freibauer, A., Rounsevell, M. D., Smith, P., & Verhagen, J. ...
  • Galdos, M. V., Cerri, C. C., & Cerri, C. E. ...
  • Gao, Y. H., Luo, P., Wu, N., Chen, H., & ...
  • Ghanbarian, G., Hassanli, A., & Rajabi, V. (2015). Comparing potential ...
  • Goldemberg, J. (2007). Ethanol for a sustainable energy future. Science, ...
  • Graham, M. H., Haynes, R. J., & Meyer, J. H. ...
  • IBM Corp. (2010). IBM SPSS statistics for Windows.Ver. 19.0. Armonk, ...
  • IPCC (Intergovernmental Panel on Climate Change). (1996). Good practice guidance ...
  • IPCC, (Intergovernmental Panel on Climate Change). (2015). Mitigation of climate ...
  • Jafarian, Z., & Tayefeh, S.A.L. (2013). Carbon sequestration potential in ...
  • Kottek, M., J.Grieser, C.Beck, B.Rudolf, and F.Rubel. (2006). World map ...
  • Lal, R. (2001). World cropland soils as a source or ...
  • Li, Y.L., L. Wang, W.Q. Zhang, S.P. Zhang, H.L. Wang, ...
  • Meier, E. A., Thorburn, P. J., Wegener, M. K., & ...
  • Minitab 16 Statistical Software. (2010). Minitab computer software. State College. ...
  • Nadeu, E., Gobin, A., Fiener, P., Van Wesemael, B., & ...
  • Nosetto, M. D., Jobbágy, E. G., & Paruelo, J. M. ...
  • Page, A.L., Miller, R.H. & Keeney. D.R. (1982). Methods of ...
  • Reeder, J.D., & Schuman, G.E. (2002). Influence of livestock grazing ...
  • Sadeghi, H., & Raeini, M. G. N. (2016). Capability investigation ...
  • Scharlemann, J. P., Tanner, E. V., Hiederer, R., & Kapos, ...
  • Sefeedpari, P., Shokoohi, Z., & Behzadifar, Y. (2014). Energy use ...
  • Singh, M., & Sharma, R.K. (1991). Microbial population and decomposition ...
  • Smith, P. (2004). Carbon sequestration in croplands: the potential in ...
  • Suman, A., Singh, K. P., Singh, P., & Yadav, R. ...
  • Tominaga, T.T., F.A.M. Cassaro, O.O.S. Bacchi, K. Reichardt, J.C.M. Oliveira, ...
  • West, T.O., & Marland, G. (2002). A synthesis of carbon ...
  • Yadav, R. L., Prasad, S. R., Singh, R., & Srivastava, ...
  • نمایش کامل مراجع