LAPSE:2020.0767
Published Article
LAPSE:2020.0767
Design and Evaluation of the Lab-Scale Shell and Tube Heat Exchanger (STHE) for Poultry Litter to Energy Production
Xuejun Qian, Yulai Yang, Seong W. Lee
July 2, 2020
Poultry litter is one type of biomass and waste generated from the farming process. This study performed a performance and process analysis of poultry litter to energy using the lab-scale shell and tube heat exchanger (STHE) system along with a Stirling engine and a swirling fluidized bed combustor (SFBC). The effects of tube shape, flow direction, and water flow rates on water and trailer temperature changes were investigated during the poultry litter co-combustion process. Energy flow analysis and emissions were also studied. Results showed that the water outlet temperature of 62.8 ° C in the twisted tube was higher than the straight tube case (58.3 ° C ) after 130 min of the co-combustion process. It was found that the counter-current direction had higher water temperature changes, higher logarithmic mean temperature difference (LMTD), and higher trailer temperature changes than the co-current direction. A water flow rate of 4.54 L/min showed adequate heat absorption in the lab-scale STHE system and heat rejection in the trailer. Results indicated that the lab-scale STHE system has a conversion efficiency of 42.3% and produces hot water (at about 63.9 ° C ) along with lower emissions. This research study confirmed that poultry litter can be used to generate energy (e.g., hot water and electricity) by using a lab-scale biomass conversion system for space heating applications.
Keywords
analysis, design, electricity, Energy, hot water, poultry litter, shell tube heat exchanger, space heating, temperature change, trailer temperature
Suggested Citation
Qian X, Yang Y, Lee SW. Design and Evaluation of the Lab-Scale Shell and Tube Heat Exchanger (STHE) for Poultry Litter to Energy Production. (2020). LAPSE:2020.0767
Author Affiliations
Qian X: Industrial and Systems Engineering Department, Morgan State University, 1700 East Cold Spring Lane, Baltimore, MD 21251, USA; Center for Advanced Energy Systems and Environmental Control Technologies, School of Engineering, Morgan State University, 5200 P [ORCID]
Yang Y: Industrial and Systems Engineering Department, Morgan State University, 1700 East Cold Spring Lane, Baltimore, MD 21251, USA; Center for Advanced Energy Systems and Environmental Control Technologies, School of Engineering, Morgan State University, 5200 P
Lee SW: Industrial and Systems Engineering Department, Morgan State University, 1700 East Cold Spring Lane, Baltimore, MD 21251, USA; Center for Advanced Energy Systems and Environmental Control Technologies, School of Engineering, Morgan State University, 5200 P
Journal Name
Processes
Volume
8
Issue
5
Article Number
E500
Year
2020
Publication Date
2020-04-25
Published Version
ISSN
2227-9717
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Original Submission
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PII: pr8050500, Publication Type: Journal Article
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LAPSE:2020.0767
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doi:10.3390/pr8050500
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Jul 2, 2020
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CC BY 4.0
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Jul 2, 2020
 
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Calvin Tsay
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