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  4. Reduction of process steam demand and water-usage through heat integration in sugar and ethanol production from sugarcane - Evaluation of different plant configurations
 
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research article

Reduction of process steam demand and water-usage through heat integration in sugar and ethanol production from sugarcane - Evaluation of different plant configurations

Pina, Eduardo A.
•
Palacios-Bereche, Reynaldo
•
Chavez-Rodriguez, Mauro F.
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2017
Energy

The sugarcane industry represents one of the most important economic activities in Brazil producing sugar and ethanol for the internal and external markets. There are also plants dedicated only to ethanol production. The aim of this study is to accomplish a joint assessment to evaluate the reduction of process steam demand and water usage obtained through heat integration and an exergy analysis to quantify the reduction in irreversibility generation owing to heat integration procedure. Two configurations of plant were analysed Case I - all sugarcane juice is destined to produce ethanol without sugar production and Case II - distribution of 50%/50% of total recoverable sugars in sugar and ethanol production. Simulations in ASPEN PLUS (R) software were performed in order to evaluate the mass and energy balances and heat integration using the Pinch Method was applied in order to minimize the utilities consumption. The results showed that heat integration promoted a reduction in steam consumption of 35% approximately, while the reduction in water consumption (water collecting requirement) was 24 and 13% in comparison to the conventional cases without heat integration. (c) 2015 Elsevier Ltd. All rights reserved.

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Type
research article
DOI
10.1016/j.energy.2015.06.054
Web of Science ID

WOS:000415769300101

Author(s)
Pina, Eduardo A.
•
Palacios-Bereche, Reynaldo
•
Chavez-Rodriguez, Mauro F.
•
Ensinas, Adriano V.
•
Modesto, Marcelo
•
Nebra, Silvia A.
Date Issued

2017

Published in
Energy
Volume

138

Start page

1263

End page

1280

Subjects

Biomass

•

Ethanol

•

Sugar

•

Sugarcane

•

Heat integration

Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
IPESE  
Available on Infoscience
January 15, 2018
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/143910
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