Journal of Engineering and Applied Sciences

Year: 2017
Volume: 12
Issue: 10 SI
Page No. 8774 - 8779

Reducing Environmental Impact Through Trigeneration: A Case Study

Authors : Eduard Minciuc, Ioana Diaconescu and Roxana Patrascu

References

Ahmadi, P., M.A. Rosen and I. Dincer, 2011. Greenhouse gas emission and exergo-environmental analyses of a trigeneration energy system. Int. J. Greenhouse Gas Control, 5: 1540-1549.
Direct Link  |  

Basrawi, F., T. Yamada and S.Y. Obara, 2014. Economic and environmental based operation strategies of a hybrid photovoltaic-microgas turbine trigeneration system. Appl. Energy, 121: 174-183.
Direct Link  |  

Borg, S.P., N.J. Kelly and V. Buhagiar, 2014. Energetic, environmental and economic modeling of a solar-assisted residential micro-trigeneration system in a mediterranean climate. ASHRAE. Trans., 120: 1-8.
Direct Link  |  

Chicco, G. and P. Mancarella, 2008. Assessment of the greenhouse gas emissions from cogeneration and trigeneration systems: Part I; Models indicators. Energy, 33: 410-417.
Direct Link  |  

Freschi, F., L. Giaccone, P. Lazzeroni and M. Repetto, 2013. Economic and environmental analysis of a trigeneration system for food-industry: A case study. Appl. Energy, 107: 157-172.
Direct Link  |  

Fumo, N., P.J. Mago and L.M. Chamra, 2009. Emission operational strategy for combined cooling, heating and power systems. Applied Energy, 86: 2344-2350.
CrossRef  |  Direct Link  |  

Goyal, R., D. Sharma, S.L. Soni, P.K. Gupta and D. Johar et al., 2015. Performance and emission analysis of CI engine operated micro-trigeneration system for power, heating and space cooling. Appl. Therm. Eng., 75: 817-825.
Direct Link  |  

Lozano, M.A., M. Carvalho and L.M. Serra, 2014. Tackling environmental impacts in simple trigeneration systems operating under variable conditions. Int. J. Life Cycle Assess., 19: 1087-1098.
CrossRef  |  Direct Link  |  

Mago, P.J. and L.M. Chamra, 2009. Analysis and optimization of CCHP systems based on energy, economical and environmental considerations. Energy Build., 41: 1099-1106.
Direct Link  |  

Mancarella, P. and G. Chicco, 2008. Assessment of the greenhouse gas emissions from cogeneration and trigeneration systems: Part II; Analysis techniques and application cases. Energy, 33: 418-430.
Direct Link  |  

Maraver, D., A. Sin, F. Sebastian and J. Royo, 2013. Environmental assessment of CCHP (combined cooling heating and power) systems based on biomass combustion in comparison to conventional generation. Energy, 57: 17-23.
Direct Link  |  

Parise, J.A., L.C.C. Martinez, R.P. Marques, J.B. Mena and J.V. Vargas, 2011. A study of the thermodynamic performance and CO 2 emissions of a vapour compression bio-trigeneration system. Appl. Therm. Eng., 31: 1411-1420.
Direct Link  |  

Shukla, A., 2015. Combined Cooling, Heating and Power or Trigeneration Technology: An Approach Toward Higher Energy Efficiency, Emission Reduction Potential and Policy. In: Energy Sustainability Through Green Energy, Atul, S. and K.K. Sanjay (Eds.). Springer, India, South Asia, ISBN:978-81-322-2336-8, pp: 493-506.

Sugiartha, N., S.A. Tassou, I. Chaer and D. Marriott, 2009. Trigeneration in food retail: An energetic, economic and environmental evaluation for a supermarket application. Appl. Therm. Eng., 29: 2624-2632.
Direct Link  |  

Design and power by Medwell Web Development Team. © Medwell Publishing 2024 All Rights Reserved