Search


Current filters:

Start a new search
Add filters:

Use filters to refine the search results.


Results 1-10 of 16 (Search time: 0.003 seconds).
Item hits:
Issue DateTitleAuthor(s)
2018Conceptual design and life cycle assessment of decentralized power generation by HT-PEMFC system with sorption enhanced water gas shift loopSuwanmanee U.; Saebea D.; Hacker V.; Assabumrungrat S.; Arpornwichanop A.; Authayanun S.
2016SOFC running on steam reforming of biogas: External and internal reformingAuthayanun S.; Pornjarungsak T.; Prukpraipadung T.; Saebea D.; Arpornwichanop A.; Patcharavorachot Y.
2017Performance analysis of solid-oxide electrolysis cells for syngas production by H2O/CO2 co-electrolysisSaebea D.; Authayanun S.; Patcharavorachot Y.; Soisuwan S.; Assabumrungrat S.; Arpornwichanop A.
2018Hydrogen and power generation from supercritical water reforming of glycerol and pressurized SOFC integrated system: Use of different CO2 adsorption processPatcharavorachot Y.; Saebea D.; Authayanun S.; Arpornwichanop A.
2019Thermodynamic analysis of the novel chemical looping process for two-grade hydrogen production with CO2 captureSaithong N.; Authayanun S.; Patcharavorachot Y.; Arpornwichanop A.
2019Comparative analysis of biomass and coal based co-gasification processes with and without CO2 capture for HT-PEMFCsMongkolsiri P.; Jitkeaw S.; Patcharavorachot Y.; Arpornwichanop A.; Assabumrungrat S.; Authayanun S.
2018Performance and environmental study of a biogas-fuelled solid oxide fuel cell with different reforming approachesChatrattanawet N.; Saebea D.; Authayanun S.; Arpornwichanop A.; Patcharavorachot Y.
2014Enhancement of hydrogen production for steam reforming of biogas in fluidized bed membrane reactorSaebea D.; Authayanun S.; Patcharavorachot Y.; Arpornwichanop A.
2017Modeling and analysis of sorption enhanced chemical looping biomass gasificationDetchusananard T.; Ponpesh P.; Saebea D.; Authayanun S.; Arpornwichanop A.
2016Enhanced performance of solid oxide electrolysis cells by integration with a partial oxidation reactor: Energy and exergy analysesVisitdumrongkul N.; Tippawan P.; Authayanun S.; Assabumrungrat S.; Arpornwichanop A.