Enhancing efficiency and reducing CO2 emission of a geothermal-driven polygeneration system: Environmental analysis and optimization
The limitations of the single-flash cycle (SFC) include low efficiency, limited power output, and the inability to produce multiple products simultaneously. Additionally, the SFC requires a large amount of water and can have negative environmental impacts. In this study, to improve performance and p...
Published in: | Process Safety and Environmental Protection |
---|---|
Main Author: | Hai T.; Ali M.A.; Younus M.D.; Chauhan B.S.; Metwally A.S.M.; Ullah M. |
Format: | Article |
Language: | English |
Published: |
Institution of Chemical Engineers
2023
|
Online Access: | https://www.scopus.com/inward/record.uri?eid=2-s2.0-85152669986&doi=10.1016%2fj.psep.2023.03.055&partnerID=40&md5=b4126b26a0d106abd1f27adba1a3a495 |
Similar Items
-
Combination of a geothermal-driven double-flash cycle and a Kalina cycle to devise a polygeneration system: Environmental assessment and optimization
by: Hai T.; El-Shafay A.S.; Alizadeh A.; Singh Chauhan B.; Fahad Almojil S.; Ibrahim Almohana A.; Fahmi Alali A.
Published: (2023) -
Thermo-economic and environmental assessment of a combined cycle fueled by MSW and geothermal hybrid energies
by: Hai T.; Zhou J.; Almashhadani Y.S.; Chaturvedi R.; Alshahri A.H.; Almujibah H.R.; Metwally A.S.M.; Ullah M.
Published: (2023) -
Multi-aspect optimization of a geothermal-based integrated Kalina-proton exchange membrane fuel cell with ejector cooling and desalination systems
by: Hai T.; El-Shafay A.S.; Mohammed A.S.; Singh P.K.; Metwally A.S.M.; Ullah M.; Alizadeh A.
Published: (2023) -
Dual-objective optimization of a novel hybrid power generation system based on hydrogen production unit for emission reduction
by: Hai T.; Alenizi F.A.; Flaih L.R.; Singh Chauhan B.; Metwally A.S.M.
Published: (2024) -
3E investigation and artificial neural network optimization of a new triple-flash geothermally-powered configuration
by: Hai T.; Asadollahzadeh M.; Chauhan B.S.; AlQemlas T.; Elbadawy I.; Salah B.; Feyzbaxsh M.
Published: (2023)