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dc.contributor.authorKorkmaz, Fatih
dc.contributor.authorCetinkaya, Senol
dc.contributor.authorEroglu, Serafettin
dc.date.accessioned2021-03-05T13:07:05Z
dc.date.available2021-03-05T13:07:05Z
dc.date.issued2016
dc.identifier.citationKorkmaz F., Cetinkaya S., Eroglu S., "Thermodynamic Analysis and Reduction of Bismuth Oxide by Ethanol", METALLURGICAL AND MATERIALS TRANSACTIONS B-PROCESS METALLURGY AND MATERIALS PROCESSING SCIENCE, cilt.47, ss.2378-2385, 2016
dc.identifier.issn1073-5615
dc.identifier.otherav_b09d9fc2-8e75-46a7-abaa-5753e10fe4dc
dc.identifier.othervv_1032021
dc.identifier.urihttp://hdl.handle.net/20.500.12627/117723
dc.identifier.urihttps://doi.org/10.1007/s11663-016-0686-x
dc.description.abstractIn this study, ethanol (C2H5OH) was used as an alternative reducing agent for Bi2O3 because ethanol is renewable, increasingly available, and low in toxicity. Thermodynamic analysis was performed to predict experimental conditions for Bi formation in the Bi2O3-C2H5OH-Ar system at Ar/C2H5OH molar ratio of 10.5. Ar was used as a carrier gas for ethanol. Bi2O3 reduction kinetics was investigated at 600 K to 800 K (327 A degrees C to 527 A degrees C) at Ar flow rate 85 sccm. Ar flow rate was also varied at 600 K and 800 K (327 A degrees C and 527 A degrees C) in order to clarify the mechanism controlling the process. Mass measurements and XRD analyses were carried out to determine the extent of reduction. Fractional conversion increased with time and temperature. Full reduction time decreased from similar to 180 minutes at 600 K (327 A degrees C) to similar to 30 minutes at 700 K and 800 K (427 A degrees C and 527 A degrees C). The reduction process was external mass transfer limited (Q (a) = 7.2 kJ/mole) above 700 K (427 A degrees C). It was controlled by intrinsic chemical kinetics (Q (a) = 54.7 kJ/mole) below 700 K (427 A degrees C). In the mass-transport-controlled regime, the extent of reduction increased with flow rate as predicted by a mass-transport theory. Possible reaction pathways were discussed using the thermodynamic and experimental results.
dc.language.isoeng
dc.subjectMühendislik, Bilişim ve Teknoloji (ENG)
dc.subjectMetalurji ve Malzeme Mühendisliği
dc.subjectMALZEME BİLİMİ, MULTIDISCIPLINARY
dc.subjectMalzeme Bilimi
dc.subjectMETALURJİ VE METALURJİ MÜHENDİSLİĞİ
dc.subjectMühendislik ve Teknoloji
dc.titleThermodynamic Analysis and Reduction of Bismuth Oxide by Ethanol
dc.typeMakale
dc.relation.journalMETALLURGICAL AND MATERIALS TRANSACTIONS B-PROCESS METALLURGY AND MATERIALS PROCESSING SCIENCE
dc.contributor.departmentİstanbul Üniversitesi , ,
dc.identifier.volume47
dc.identifier.issue4
dc.identifier.startpage2378
dc.identifier.endpage2385
dc.contributor.firstauthorID81534


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