Document Type : Original Article

Authors

1 Researcher of Tea Research Center

2 Researcher of Tea Research Institute

3 Agricultural Engineering Research Institute, Karaj

Abstract

This study was carried out to determine energy consumption in various stages of processing of black tea in tea factories at Guilan province in Iran. Direct energy (thermal energy and electric energy) and indirect energy (man power, depreciation, and lubricants) were measured and evaluated in 9 tea factories; four factories using diesel fuel and the remaining five used natural gas. The results showed that approximately 70 percent of the energy consumed in tea processing is thermal energy of which 31 percent used in withering and remaining 69 percent used in drying stage. The amount of thermal energy consumed in tea factories with natural gas fuel is about 5 percent less than that in factories used diesel fuel. Electric energy has contributed 28 percent of total energy consumed in production of black tea. Withering, rolling and air heaters used 58.16, 16.58 and 11.39 percent of energy consumption in tea factories, respectively. Man power has contributed the lowest percentage of energy consumption in tea processing. Inappropriate designing, burnout ovens, lack of proper insulation, and improper structures of mechanical parts are responsible for significant energy losses at tea factories. The following steps could help reducing energy consumption in tea processing: installation of new designed furnaces, insulation the present furnaces and drying machines, and improving power supplying systems.

Keywords

Anon. 2002a. Small and medium scale industries in Asia. School of Environment Resources and Development. Asian Institute of Technology, Thailand.
 
Anon, 2002b. Small and medium scale Industries in Asia: Energy and Environment, Tea sector. Asian Institute of Technology, Thailand.
 
Anon. 2006. Benchmarking Energy Use in Canadian pulp and paper mills. Canadian Industry Program for Energy Conservation (CIPEC). Available at: www.nrcan.gc.ca.
 
Anon. 2012. Process document on energy conservation in smallholder sector tea processing units in India. Environmental Management Centre, Mumbai. Available at: www.faculty.ait.ac.
 
Baruah, B., Pujakhare, P. and Rao, P. G. 2012. The energy utilization pattern in tea industries of NE India and environmental issues. Two Bud. 59(2): 9-13.
 
Bhutia, K. L. 2010. Manual on energy conservation measures in tea cluster JORHAT. Bureau of Energy Efficiency (BEE). Ministry of Power, Government of India.
 
Dagistan, E., Akcaoz, H., Demirtas, B. and Yilmaz, Y. 2009. Energy usage and benefit-cost analysis of cotton production in Turkey. Afr. J. Agr. Res. 4(7): 599-604.
 
Dinh Son, L. 2000. Application of natural withering in tea production in VIET-MONG tea factory. Asian Regional Research Program in Energy, Environment and Climate, Vietnam.
 
Doering, O. C. 1980. Accounting for energy in farm machinery and buildings. In: Handbook of Energy Utilization in Agriculture. United States, Florida, Boca Raton: CRC Press.
 
Fluck, R. C. and Baird, C. D. 1980. Agricultural Ener­getics. AVI Publishing Company Inc., West Port, Connecticut.
 
Ganapathy Sundaram, E. and Senthil Kumar, K. R. 2002. Energy and environmental issues in tea industries, a case study. Department of Mechanical Engineering, Velammal Engineering College, Tamil Nadu, India.
 
Jayah, H. T., Aye, U. L., Fuller, R. J. and Stewart, F. D. 1999. Wood gasifies for drying tea in Sri Lanka. International Technologies Center, University of Melbourne, Australia. Available at: www.solar.org.au.
 
John Mwenda, I., Joseph Ngugi, K and Jeremiah, K.2015. Energy consumption trends in smallholder tea factories in Kenya. Int. J. Emerg. Technol. Res. 2(2): 30-43.
 
Kitani, O. 1999. Energy and Biomass Engineering. CIGR Handbook of Agricultural Engineering. Vol. V. American Society of Agricultural Engineers.
 
Kumar, S. P. C., Velavan, R. and Sivasubramanian, S. 2004. Innovative measures for energy management in tea industry. Energy Engineering Division, Department of Mechanical Engineering PSG College of Technology, Coimbatore. Available at: www.faculty.
 
Nagy, C. N. 1999. Energy coefficients for agriculture inputs in Western Canada. CSALE Working Paper Series 2. Centre for Studies in Agriculture, Law and the Environment, University of Saskatchewan, Saskatoon, Sask.
 
Rudramoorthy, R., Sunil Kumar, C. P., Velavan, R. and Sivasubramaniam, S. 2008. Innovative measures for energy management in tea industry. Energy Engineering Division, Department of Mechanical Engineering, PSG College of Technology, Coimbatore, India.
 
Singh, S. and Chandra, H. 2001. Technological impact energy consumption in rain fed soybean cultivation in Madhya Paradesh. Appl. Energy. 70, 193-213.