Title of article :
Development of a thermoeconomic methodology for optimizing biodiesel production. Part II: Manufacture exergetic cost and biodiesel production cost incorporating carbon credits, a Brazilian case study
Author/Authors :
Coronado، نويسنده , , Christian Rodriguez and Tuna، نويسنده , , Celso Eduardo and Zanzi، نويسنده , , Rolando and Vane، نويسنده , , Lucas F. and Silveira، نويسنده , , José Luz، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2014
Pages :
8
From page :
565
To page :
572
Abstract :
The purpose of this study is to carry on a thermoeconomic analysis at a biodiesel production plant considering the irreversibilities in each step (part I: biodiesel plant under study and functional thermoeconomic diagram [1]), making it possible to calculate the thermoeconomic cost in US$/kWh and US$/l of the biodiesel production, and the main byproduct generated, glycerin, incorporating the credits for the CO2 that is not emitted into the atmosphere (carbon credits). Assuming a sale price for both the biodiesel and the byproduct (glycerin), the annual revenue of the total investment in a plant with a capacity of 8000 t/year of biodiesel operating at 8000 h/year was calculated. The variables that directly or indirectly influence the final thermoeconomic cost include total annual biodiesel production, hours of operation, manufacturing exergy cost, molar ratio in the transesterification reaction, reaction temperature and pressure in the process. Depending on the increase or decrease in sale prices for both biodiesel and glycerin, the payback is going to significantly increase or decrease. It is evident that, in exergy terms, the sale of glycerin is of vital importance in order to reduce the biodiesel price, getting a shorter payback period for the plant under study.
Keywords :
Thermoeconomic analysis , biodiesel , Glycerin , Exergetic costs , scenarios
Journal title :
Renewable and Sustainable Energy Reviews
Serial Year :
2014
Journal title :
Renewable and Sustainable Energy Reviews
Record number :
1503857
Link To Document :
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