Tillage effects on energy use and greenhouse gas emission in wheat-cotton rotation

Publish Year: 1399
نوع سند: مقاله ژورنالی
زبان: English
View: 148

This Paper With 12 Page And PDF Format Ready To Download

  • Certificate
  • من نویسنده این مقاله هستم

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این Paper:

شناسه ملی سند علمی:

JR_IAR-39-1_002

تاریخ نمایه سازی: 6 اردیبهشت 1400

Abstract:

Crop production process utilizes input energy and produces some biomass energy as output.  During this process, greenhouse gases (GHGs) are also emitted which can make environmental risks. In this study, input and output energies, energy indices, and GHG emissions arising from inputs were estimated for wheat-cotton rotation under different tillage practices in Fars province. The study was conducted as a randomized complete plot experimental design with three tillage treatments and four replicates. Tillage methods included conventional tillage (CT), reduced tillage (RT), and no tillage (NT). Results showed that NT and RT decreased energy consumption in wheat and cotton production by ۱.۵۳ and ۱.۱۹%, respectively as compared to the CT due to less fuel and machinery utilization. More than ۷۲% of energy requirement for wheat and cotton production was consumed by irrigation water and electricity for pumping irrigation water in all tillage methods. Conventional tillage resulted in the highest output energy, energy ratio, and energy productivity in wheat-cotton rotation compared to RT and NT. Total GHG emissions for wheat and cotton production were estimated to be ۵۱۸۲۹, ۵۱۶۰۸, and ۵۱۵۲۹ kg CO۲e ha-۱ in CT, RT, and NT, respectively indicating that NT and RT slightly reduced GHG emission compared to CT (۰.۶ and ۰.۴%, respectively). Results of this study indicated that irrigation showed the highest share in total energy requirement and GHG emission of wheat and cotton production in semi-arid climate condition of Fars province; therefore, total input energy and GHG emissions could be markedly reduced by using more efficient irrigation systems.    

Authors

Sadegh Afzalinia

Department of Agricultural Engineering Research, Fars Research and Education Center for Agriculture and Natural Resources, AREEO, Shiraz, I. R. Iran

مراجع و منابع این Paper:

لیست زیر مراجع و منابع استفاده شده در این Paper را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود Paper لینک شده اند :
  • REFERENCES ...
  • Abdalla, M., Osborne, B., Lanigan, G., Forristal, D., Williams, M., ...
  • Anonymous. (2018). Australian National Greenhouse Accounts: National Greenhouse Accounts Factors. ...
  • Baillie, C. (2009). Energy and carbon accounting case study on ...
  • Behnke, G. D., Zuber, S. M., Pittelkow, C. M., Nafziger, ...
  • Biswas, W. K., Barton, L., & Carter, D. (2008). Global ...
  • Biswas, W. K., Graham, J., Kelly, K., & John, M. ...
  • Busaria, M. A., Kukal, S. S., Bhatt, R., & Dulazi, ...
  • Dagistan, E., Akcaoz, H., Demirtas, B., & Yilmaz, Y. (2009). ...
  • Chen, G, & Baillie, C. (2009). Development of a framework ...
  • Chen, G., Kupke, P., & Baillie, C. (2008). Opportunities to ...
  • Chen, G., Maraseni, T., Banhazi, T., & Bundschuh, J.  (2015). ...
  • Industries Research and Development Corporation (RIRDC) Publication No 15/059. ...
  • Ghareei Khabbaz, B. (2010). Life cycle energy use and greenhouse ...
  • of farming systems. M.Sc. thesis, University of Southern Queensland, Australaia. ...
  • Khan, S., Khan, M. A., & Latif, N. (2010). Energy ...
  • Khoshnevisan, B.,  Rafiee, Sh.,  Omid, M., Yousefi, M., & Movahedi, ...
  • Kitani, O., Jungbluth, T., Peart, R. M., & Ramdani, A. ...
  • Krauss, M., Ruser, R., Müllerb, T., Hansen, S., Mädera, P., ...
  • Lal, R. (2004). Carbon emission from farm operation. Environment International, ...
  • Mangalassery, Sh., Sofie Sjögersten, S., Sparkes, D. L., Sturrock, C. ...
  • Maraseni, T. N, & Cockfield, G. (2011). Does the adoption ...
  • Maraseni, T. N, Cockfield, G., and Apan, A. (2007). A ...
  • Maraseni, T. N, Cockfield, G., & Maroulis, J. (2010). An ...
  • Millar, N., Urrea, A., Kahmark, K., Shcherbak, I., Robertson, G. ...
  • O’Halloran, N. J., Fisher, P. D., & Rab, M. A. ...
  • Pishgar-Komleh, S. H., Keyhani, A., Rafiee, Sh., & Sefeedpary, P. ...
  • Pishgar-Komleh, S. H., Sefeedpari, P., & Ghahderijani, M. (2012). Exploring ...
  • Safa, M., & Samarasinghe, S. (2011). Determination and modelling of ...
  • Shahin, S., Jafari, A., Mobli, H., Rafiee, S., & Karimi ...
  • Tsatsarelis, C. A. (1991). Energy requirements for cotton production in ...
  •  Tsatsarelis, C. A. (1993). Energy inputs and outputs for soft ...
  • Yilmaz, I., Akcaoz, H., & Ozkan, B. (2005). An analysis ...
  • Yildiz, T. (2016). An input-output energy analysis of wheat production ...
  • نمایش کامل مراجع