Energy Efficiency Analysis of Wheat Crop under Different Climate- and Soil-Based Irrigation Schedules †
Abstract
:1. Introduction
2. Materials and Methods
3. Results and Discussion
3.1. Effect of Irrigation Schedules on Wheat Grain Yield and Biological Yield
3.2. Energy Balance Analysis
3.3. Economic Analysis
4. Conclusions
References
- Pakistan Economic Survey, 2013–2014. Agricultural Statistics. Chapter 2. Available online: http://www.finance.gov.pk/survey/chapters_14/02_Agriculture.pdf (accessed on 3 June 2014).
- GoP. Pakistan Economic Survey 2011–2012; Ministry of Finance, Government of Pakistan: Islamabad, Pakistan, 2013; pp. 19–21.
- Rajaram, S.; Hobbs, P.R.; Heisey, P.W. Review of Pakistan’s Wheat and Maize Research Systems; Report Submitted to PARC by a Multidisciplinary Team of CIMMYT Scientists Visited Pakistan: Palo Alto, CA, USA, 1998. [Google Scholar]
- Shahamat, E.Z.; Asoodar, M.A.; Marzban, A.; Abdeshahi, A. Energy Efficiency Analysis of Wheat Crop under Different Climate and Soil Based Irrigation Schedules. Int. J. Agric. Crop Sci. 2013, 5, 249–252. [Google Scholar]
- Shahan, S.; Jafari, A.; Mobli, H.; Rafiee, S.; Karimi, M. Energy use and Economical analysis of wheat production in Iran: A case study from Ardabil province. J. Agric. Technol. 2008, 4, 77–88. [Google Scholar]
- Moghimi, M.R.; Alasti, B.M.; Drafshi, M.A.H.; Ghadim, M.A.; Taki, M. Energy consumption and assessment of econometric model between input and output for wheat production in Gorve Country, Kordestan Province of Iran. Int. J. Agric. Crop Sci. 2013, 5, 2297–2302. [Google Scholar]
- Mirasi, A.; Mousarrezasamadi, K.E.; Taghipoor, M.B. An assessment of energy efficiency for wheat production in Iran. Elixir Agric. 2014, 72, 25440–25444. [Google Scholar]
- Zahedi, M.; Eshghizadeh, H.R.; Mondani, F. Energy use efficiency and Economical analysis in cotton production system in an arid region: A case study for Isfahan Province, Iran. Int. J. Energy Econ. Policy 2014, 4, 43–52. [Google Scholar]
- Samavatean, N.; Rafiee, S.; Mobli, H. An analysis of energy use and estimation of a mechanization index of garlic production in Iran. J. Agric. Sci. 2010. [Google Scholar] [CrossRef]
- Jadida, S.R.; Homayounifar, M.; Sabuni, M.S.; Mohammadi, A. Energy analysis and optimization of inputs for wheat production in Marand region. Indian J. Agric. Sci. 2012, 82, 21–24. [Google Scholar]
- Taki, M.; Abdi, R.; Akbarpour, R.; Mobtaker, H.G. Energy inputs—Yield relationship and sensitivity analysis for tomato greenhouse production in Iran. Agric. Eng. Int. CIGR J. 2013, 15, 59–67. [Google Scholar]
- Mohammadi, A.; Omid, M. Economical analysis and relation between energy inputs and yield of greenhouse cucumber production in Iran. Appl. Energy 2010, 87, 191–196. [Google Scholar] [CrossRef]
- Mohammadi, A.; Tabatabaeefar, A.; Shahin, S.; Rafiee, S.; Keyhani, A. Energy use and Economical analysis of potato production in Iran a case study: Ardabil province. Energy Convers. Manag. 2008, 49, 3566–3570. [Google Scholar] [CrossRef]
- Erdal, G.; Esengün, K.; Erdal, H.; Gündüz, O. Energy use and Economical analysis of sugar beet production in Tokat province of Turkey. Energy 2007, 32, 35–41. [Google Scholar] [CrossRef]
- Mobtaker, H.G.; Akram, A.; Keyhani, A. Energy use and sensitivity analysis of energy inputs for alfalfa production in Iran. Energy Sustain. Dev. 2012, 16, 84–89. [Google Scholar] [CrossRef]
- Singh, J.M. On Farm Use Pattern in Different Cropping Systems in Haryana, India. Master’s Thesis, International Institute of Management, University of Flensburg, Flensburg, Germany, 2002. [Google Scholar]
- Azarpour, E. Determination of energy balance and energy indices in wheat production under watered farming in north of Iran. ARPN J. Agric. Biol. Sci. 2012, 7, 250–255. [Google Scholar]
- Khalilian, A.; Han, Y.; Farahani, H. Site-Specific Irrigation Management in Coastal Plain Soils; Clemson University: Clemson, SC, USA, 2007. [Google Scholar]
- Canakci, M.; Topakci, M.; Akinci, I.; Ozmerzi, A. Energy use pattern of some field crops and vegetable production: Case study for Antalya region, Turkey. Energy Convers. Manag. 2005, 46, 655–666. [Google Scholar] [CrossRef]
- Singh, H.; Singh, A.K.; Kushwaha, H.L.; Singh, A. Energy consumption pattern of wheat production in India. Energy 2007, 32, 1848–1854. [Google Scholar] [CrossRef]
Energy | Unit | Energy Equivalent (MJ unit−1) | References |
---|---|---|---|
Inputs | |||
Human Labor | h | 1.96 | [13] |
Machinery | h | 62.7 | [13] |
Diesel Fuel | L | 56.31 | [13] |
Chemical Fertilizers | kg | ||
(a) Nitrogen | 66.14 | [13] | |
(b) Phosphorous | 12.44 | [13] | |
(c) Potassium | 11.15 | [13] | |
Herbicides | kg | 238 | [14] |
Water | m3 | 1.02 | [13] |
Electricity | kWh | 11.93 | [15] |
Seeds | kg | 14.7 | [16] |
Outputs | |||
Wheat Grain Yield | kg | 14.7 | [16] |
Wheat Straw Yield | kg | 12.5 | [16] |
Energy | Unit | Energy Equivalent (MJ unit−1) | Quantity per Unit Hectare | ||||||
---|---|---|---|---|---|---|---|---|---|
Farmer | T1 | T2 | T3 | T4 | T5 | T6 | |||
Inputs | |||||||||
Human Labor | h | 1.96 | 85 | 85 | 85 | 85 | 85 | 85 | 85 |
Machinery | h | 62.7 | 20 | 20 | 20 | 20 | 20 | 20 | 20 |
Diesel Fuel | L | 56.31 | 50 | 50 | 50 | 50 | 50 | 50 | 50 |
Chemical Fertilizers | kg | ||||||||
(a) Nitrogen | 66.14 | 104 | 104 | 104 | 104 | 104 | 104 | 104 | |
(b) Phosphorous | 12.44 | 212 | 212 | 212 | 212 | 212 | 212 | 212 | |
(c) Potassium | 11.15 | 129 | 129 | 129 | 129 | 129 | 129 | 129 | |
Herbicides | kg | 238 | 1.5 | 1.5 | 1.5 | 1.5 | 1.5 | 1.5 | 1.5 |
Water | m3 | 1.02 | 3500 | 2320 | 2270 | 2120 | 2250 | 2150 | 2250 |
Electricity | kWh | 11.93 | 618.136 | 409.712 | 400.882 | 374.392 | 397.35 | 379.69 | 397.35 |
Seeds | kg | 14.7 | 125 | 125 | 125 | 125 | 125 | 125 | 125 |
Outputs | |||||||||
Wheat Grain Yield | kg | 14.7 | 3400 | 4350 | 4240 | 3940 | 4030 | 3670 | 3320 |
Wheat Straw Yield | kg | 9.25 | 12,010 | 12,500 | 12,280 | 12,050 | 12,120 | 11,810 | 11,550 |
Energy | Total Energy Equivalent (MJ/ha) | ||||||
---|---|---|---|---|---|---|---|
Farmer | T1 | T2 | T3 | T4 | T5 | T6 | |
Input | |||||||
Human Labor | 166.6 | 166.6 | 166.6 | 166.6 | 166.6 | 166.6 | 166.6 |
Machinery | 627 | 627 | 627 | 627 | 627 | 627 | 627 |
Diesel Fuel | 2815.5 | 2815.5 | 2815.5 | 2815.5 | 2815.5 | 2815.5 | 2815.5 |
Chemical Fertilizers | |||||||
(a) Nitrogen | 6878.56 | 6878.56 | 6878.56 | 6878.56 | 6878.56 | 6878.56 | 6878.56 |
(b) Phosphorous | 2637.28 | 2637.28 | 2637.28 | 2637.28 | 2637.28 | 2637.28 | 2637.28 |
(c) Potassium | 1438.35 | 1438.35 | 1438.35 | 1438.35 | 1438.35 | 1438.35 | 1438.35 |
Herbicides | 357 | 357 | 357 | 357 | 357 | 357 | 357 |
Water | 3570 | 2366.4 | 2315.4 | 2162.4 | 2295 | 2193 | 2295 |
Electricity | 7374.362 | 4887.864 | 4782.522 | 4466.497 | 4740.386 | 4529.702 | 4740.386 |
Seeds | 1837.5 | 1837.5 | 1837.5 | 1837.5 | 1837.5 | 1837.5 | 1837.5 |
Total energy input (MJ ha−1) | 27,702.15 | 24,012.05 | 23,855.71 | 23,386.69 | 23,793.17 | 23,480.49 | 23,793.17 |
Output | |||||||
Grain Yield | 49,980 | 63,945 | 62,328 | 57,918 | 59,241 | 53,949 | 48,804 |
Straw Yield | 111,092.5 | 115,625 | 113,590 | 111,462.5 | 112,110 | 109,242.5 | 106,837.5 |
Total energy output (MJ ha−1) | 161,072.5 | 179,570 | 175,918 | 169,380.5 | 171,351 | 163,191.5 | 155,641.5 |
Indices | Farmer | T1 | T2 | T3 | T4 | T5 | T6 |
---|---|---|---|---|---|---|---|
Net Energy (MJ ha−1) | 133,370.35 | 155,557.95 | 152,062.29 | 145,993.81 | 147,557.82 | 139,711.01 | 131,848.32 |
Energy Use Efficiency | 5.814 | 7.478 | 7.374 | 7.243 | 7.202 | 6.950 | 6.541 |
Energy Productivity (kg MJ−1) | 0.123 | 0.181 | 0.178 | 0.168 | 0.169 | 0.156 | 0.139 |
Specific Energy (MJ kg−1) | 8.148 | 5.520 | 5.626 | 5.936 | 5.904 | 6.398 | 7.167 |
Water productivity (kg m−3) | 0.971 | 1.875 | 1.868 | 1.858 | 1.791 | 1.707 | 1.475 |
Treatments | Farmer | T1 | T2 | T3 | T4 | T5 | T6 |
---|---|---|---|---|---|---|---|
INPUT: | |||||||
Seed (a) | 2335 | 2335 | 2335 | 2335 | 2335 | 2335 | 2335 |
Fertilizers | |||||||
Urea (b) | 4150 | 4150 | 4150 | 4150 | 4150 | 4150 | 4150 |
DAP (c) | 9880 | 9880 | 9880 | 9880 | 9880 | 9880 | 9880 |
MOP (c) | 17,000 | 17,000 | 17,000 | 17,000 | 17,000 | 17,000 | 17,000 |
Spray | |||||||
Topic | 250 | 250 | 250 | 250 | 250 | 250 | 250 |
Bacterial Super | 1350 | 1350 | 1350 | 1350 | 1350 | 1350 | 1350 |
Irrigation (Energy cost) (d) | 3300 | 2186 | 2152 | 1996 | 2120 | 2026 | 2120 |
Fuel (Bed preparation + Sowing + Threshing) (e) | 18,500 | 18,500 | 18,500 | 18,500 | 18,500 | 18,500 | 18,500 |
Labor | 15,000 | 15,000 | 15,000 | 15,000 | 15,000 | 15,000 | 15,000 |
Total Cost of Production | 71,765 | 70,651 | 70,617 | 70,461 | 70,585 | 70,491 | 70,585 |
OUTPUT: | |||||||
Grain Yield (f) | 110,500 | 141,375 | 137,800 | 128,050 | 126,425 | 119,275 | 103,675 |
Straw Yield (g) | 60,050 | 62,500 | 61,400 | 60,250 | 60,600 | 59,050 | 57,750 |
Total Value of Production | 170,550 | 203,875 | 199,200 | 188,300 | 187,025 | 178,325 | 161,425 |
Net Return | 98,785 | 133,224 | 128,583 | 117,839 | 116,440 | 107,834 | 90,840 |
Benefit to Cost Ratio (--) | 1.38 | 1.88 | 1.82 | 1.67 | 1.65 | 1.53 | 1.29 |
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Ansari, R.; Liaqat, M.U.; Khan, H.I.; Mushtaq, S. Energy Efficiency Analysis of Wheat Crop under Different Climate- and Soil-Based Irrigation Schedules. Proceedings 2018, 2, 184. https://doi.org/10.3390/ecws-2-04953
Ansari R, Liaqat MU, Khan HI, Mushtaq S. Energy Efficiency Analysis of Wheat Crop under Different Climate- and Soil-Based Irrigation Schedules. Proceedings. 2018; 2(5):184. https://doi.org/10.3390/ecws-2-04953
Chicago/Turabian StyleAnsari, Rubina, Muhammad Usman Liaqat, Hafiz Ihsan Khan, and Sumra Mushtaq. 2018. "Energy Efficiency Analysis of Wheat Crop under Different Climate- and Soil-Based Irrigation Schedules" Proceedings 2, no. 5: 184. https://doi.org/10.3390/ecws-2-04953
APA StyleAnsari, R., Liaqat, M. U., Khan, H. I., & Mushtaq, S. (2018). Energy Efficiency Analysis of Wheat Crop under Different Climate- and Soil-Based Irrigation Schedules. Proceedings, 2(5), 184. https://doi.org/10.3390/ecws-2-04953