Application of trigeneration with direct co-combustion of poultry waste and coal: A case study in the poultry industry from Turkey
This study implies the significance of a trigeneration (TG) system, which converts a single fuel source into three useful energy products (i. e. power, heating, and cooling), and focuses on the simulation of a TG system with direct co-combustion of poultry wastes. The methodology is applied to a cas...
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VINCA Institute of Nuclear Sciences
2018-01-01
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doaj-6dcf895ac4e342179db99a4dd9ba45d32021-01-02T05:14:55ZengVINCA Institute of Nuclear SciencesThermal Science0354-98362334-71632018-01-01226 Part B3073308210.2298/TSCI170210137T0354-98361700137TApplication of trigeneration with direct co-combustion of poultry waste and coal: A case study in the poultry industry from TurkeyTopal Huseyin0Taner Tolga1Altinsoy Yelda2Amirabedin Ehsan3Gazi University, Engineering Faculty, Department of Mechanical Engineering, Ankara, TurkeyAksaray University, Vocational School of Technical Sciences, Department of Motor Vehicles and Transportation Technology, Aksaray, TurkeyGazi University, Engineering Faculty, Department of Mechanical Engineering, Ankara, TurkeyGazi University, Engineering Faculty, Department of Mechanical Engineering, Ankara, TurkeyThis study implies the significance of a trigeneration (TG) system, which converts a single fuel source into three useful energy products (i. e. power, heating, and cooling), and focuses on the simulation of a TG system with direct co-combustion of poultry wastes. The methodology is applied to a case study in northwest of Turkey to investigate how local poultry manure and environmental conditions can be effective in the production of energy. In addition, thermodynamic assessment of the system is performed, and the performance of the TG system is assessed by using energy, exergy, and parametric analysis methods. Poultry litter to coal ratio was 50% at the beginning, then poultry litter ratio in the mixture was increased to 90%, and this has led to less CO2 emissions from the TG and combined heat and power systems co-firing with poultry litter. With rice husk however the consumptions of TG and combined heat and power increased from 6533-6624 tonne per year, and 6549-6640 tonne per year, respectively. As a result, co-combustion of poultry waste can be considered as the best environmentally-friendly remedy to dispose chicken farm wastes, while catering the energy demand of the facility.http://www.doiserbia.nb.rs/img/doi/0354-9836/2018/0354-98361700137T.pdfclean energypower plantcombined heat and powertrigeneration systemCO2 emissionsexergy |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Topal Huseyin Taner Tolga Altinsoy Yelda Amirabedin Ehsan |
spellingShingle |
Topal Huseyin Taner Tolga Altinsoy Yelda Amirabedin Ehsan Application of trigeneration with direct co-combustion of poultry waste and coal: A case study in the poultry industry from Turkey Thermal Science clean energy power plant combined heat and power trigeneration system CO2 emissions exergy |
author_facet |
Topal Huseyin Taner Tolga Altinsoy Yelda Amirabedin Ehsan |
author_sort |
Topal Huseyin |
title |
Application of trigeneration with direct co-combustion of poultry waste and coal: A case study in the poultry industry from Turkey |
title_short |
Application of trigeneration with direct co-combustion of poultry waste and coal: A case study in the poultry industry from Turkey |
title_full |
Application of trigeneration with direct co-combustion of poultry waste and coal: A case study in the poultry industry from Turkey |
title_fullStr |
Application of trigeneration with direct co-combustion of poultry waste and coal: A case study in the poultry industry from Turkey |
title_full_unstemmed |
Application of trigeneration with direct co-combustion of poultry waste and coal: A case study in the poultry industry from Turkey |
title_sort |
application of trigeneration with direct co-combustion of poultry waste and coal: a case study in the poultry industry from turkey |
publisher |
VINCA Institute of Nuclear Sciences |
series |
Thermal Science |
issn |
0354-9836 2334-7163 |
publishDate |
2018-01-01 |
description |
This study implies the significance of a trigeneration (TG) system, which converts a single fuel source into three useful energy products (i. e. power, heating, and cooling), and focuses on the simulation of a TG system with direct co-combustion of poultry wastes. The methodology is applied to a case study in northwest of Turkey to investigate how local poultry manure and environmental conditions can be effective in the production of energy. In addition, thermodynamic assessment of the system is performed, and the performance of the TG system is assessed by using energy, exergy, and parametric analysis methods. Poultry litter to coal ratio was 50% at the beginning, then poultry litter ratio in the mixture was increased to 90%, and this has led to less CO2 emissions from the TG and combined heat and power systems co-firing with poultry litter. With rice husk however the consumptions of TG and combined heat and power increased from 6533-6624 tonne per year, and 6549-6640 tonne per year, respectively. As a result, co-combustion of poultry waste can be considered as the best environmentally-friendly remedy to dispose chicken farm wastes, while catering the energy demand of the facility. |
topic |
clean energy power plant combined heat and power trigeneration system CO2 emissions exergy |
url |
http://www.doiserbia.nb.rs/img/doi/0354-9836/2018/0354-98361700137T.pdf |
work_keys_str_mv |
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