LAPSE:2019.1259
Published Article
LAPSE:2019.1259
Mass and Heat Integration in Ethanol Production Mills for Enhanced Process Efficiency and Exergy-Based Renewability Performance
Pablo A. Silva Ortiz, Rubens Maciel Filho, John Posada
December 3, 2019
Abstract
This paper presents the process design and assessment of a sugarcane-based ethanol production system that combines the usage of both mass and heat integration (pinch analysis) strategies to enhance the process efficiency and renewability performance. Three configurations were analyzed: (i) Base case: traditional ethanol production (1G); (ii) mass-integrated (1G2G); and (iii) mass and heat-integrated system (1G2G-HI). The overall assessment of these systems was based on complementary approaches such as mass and mass−heat integration, energy and exergy analysis, exergy-based greenhouse gas (GHG) emissions, and renewability exergy criteria. The performances of the three cases were assessed through five key performance indicators (KIPs) divided into two groups: one is related to process performance, namely, energy efficiency, exergy efficiency, and average unitary exergy cost (AUEC), and the other one is associated to environmental performance i.e., exergy-based CO2-equation emissions and renewability exergy index. Results showed a higher exergy efficiency of 50% and the lowest AUEC of all the systems (1.61 kJ/kJ) for 1G2G-HI. Furthermore, the destroyed exergy in 1G2G-HI was lower by 7% and 9% in comparison to the 1G and 1G2G cases, respectively. Regarding the exergy-based GHG emissions and renewability performance (λindex), the 1G2G-HI case presented the lowest impacts in terms of the CO2-equivalent emissions (94.10 gCO2-eq/MJ products), while λindex was found to be environmentally unfavorable (λ = 0.77). However, λindex became favorable (λ > 1) when the useful exergy of the byproducts was considered.
Keywords
exergy analysis, heat integration, integrated first- and second-generation ethanol, lignocellulosic ethanol, renewability exergy index
Suggested Citation
Silva Ortiz PA, Maciel Filho R, Posada J. Mass and Heat Integration in Ethanol Production Mills for Enhanced Process Efficiency and Exergy-Based Renewability Performance. (2019). LAPSE:2019.1259
Author Affiliations
Silva Ortiz PA: School of Chemical Engineering, Laboratory of Optimization, Design and Advanced Process Control-LOPCA, University of Campinas, Campinas 13083-852, Brazil; Department of Biotechnology, Faculty of Applied Sciences, Delft University of Technology, 2629 HZ De
Maciel Filho R: School of Chemical Engineering, Laboratory of Optimization, Design and Advanced Process Control-LOPCA, University of Campinas, Campinas 13083-852, Brazil
Posada J: Department of Biotechnology, Faculty of Applied Sciences, Delft University of Technology, 2629 HZ Delft, The Netherlands [ORCID]
Journal Name
Processes
Volume
7
Issue
10
Article Number
E670
Year
2019
Publication Date
2019-09-27
ISSN
2227-9717
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Original Submission
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PII: pr7100670, Publication Type: Journal Article
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LAPSE:2019.1259
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https://doi.org/10.3390/pr7100670
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Dec 3, 2019
 
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Calvin Tsay
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