Seite - 186 - in Advanced Chemical Kinetics
Bild der Seite - 186 -
Text der Seite - 186 -
[21] FilimonovVY,KorchaginMA,SmirnovEV,LyakhovNZ.Macrokinetics of solid-phase
synthesis of anactivated3Ni+Almixture in the thermal explosionmode.Combustion,
ExplosionandShockWaves. 2010;46(4):449-456
[22] LinYC,ShteinbergAS,McGinnPJ,MukasyanAS.Kinetics study inTi-Fe2O3systemby
electro-thermal explosionmethod. International Journal of Thermal Sciences. 2014;84:
369-378
[23] Shilyaev MI, Borzykh VÉ, Dorokhov AR, Ovcharenko VE. Determination of
thermokinetic parameters from the inverse problem of an electrothermal explosion.
Combustion,ExplosionandShockWaves. 1992;28(3):258-262
[24] BostandzhiyanS,Gordopolova I, ShcherbakovV.Modelingof anelectrothermal explo-
sion in gasless systemsplaced into an electroconductingmedium.Combustion, Explo-
sionandShockWaves. 2013;49(6):668-675
[25] BostandzhiyanSA,Gordopolova IS, ShcherbakovAV,ShcherbakovVA.Electrothermal
explosion in cylindrical Ti-C charges coveredwith aTiC shell:Amathematicalmodel.
International Journal of Self-PropagatingHigh-Temperature Synthesis. 2012;21(3):183-
188
[26] BostandzhiyanSA, ShcherbakovAV,ShcherbakovVA.Mathematicalmodelingof elec-
trothermal explosion in gasless systemsplaced in a hollowdielectric cylinder. Interna-
tional JournalofSelf-PropagatingHigh-TemperatureSynthesis. 2016;25(2):75-79
[27] KissingerHE. Reaction kinetics in differential thermal analysis. Analytical Chemistry.
1957;29(11):1702-1706
[28] BorchardtHJ,Daniels F. Theapplicationofdifferential thermal analysis to the studyof
reactionkinetics. Journalof theAmericanChemicalSociety.1957;79(1):41-46
[29] Friedman HL. Kinetics of thermal degradation of char‐forming plastics from
thermogravimetry.Application to aphenolic plastic. Journal of Polymer Science: Poly-
merSymposia. 1964;6(1):183-195
[30] OzawaT.Aquick, a newmethodof analyzing thermogravimetric data. Bulletin of the
ChemicalSocietyof Japan.1965;38(11):1881-1886
[31] Flynn JH, Wall LA. Direct method for the determination of activation energy from
thermogravimetric data. Journal of Polymer SciencePartC: PolymerLetters. 1966;4(5):
323-328
[32] OzawaT.Kineticsofnon-isothermal crystallization.Polymer. 1971;12(3):150-158
[33] StarinkMJ. A newmethod for the derivation of activation energies from experiments
performedatconstantheating rate.ThermochimicaActa. 1996;288(1–2):97-104
[34] VyazovkinS,WightCA.Model-freeandmodel-fittingapproaches tokinetic analysisof
isothermalandnonisothermaldata.ThermochimicaActa. 1999;340:53-68
Advanced Chemical
Kinetics186
zurück zum
Buch Advanced Chemical Kinetics"
Advanced Chemical Kinetics
- Titel
- Advanced Chemical Kinetics
- Autor
- Muhammad Akhyar Farrukh
- Herausgeber
- InTech
- Ort
- Rijeka
- Datum
- 2018
- Sprache
- englisch
- Lizenz
- CC BY 4.0
- ISBN
- 978-953-51-3816-7
- Abmessungen
- 18.0 x 26.0 cm
- Seiten
- 226
- Schlagwörter
- Engineering and Technology, Chemistry, Physical Chemistry, Chemical Kinetics
- Kategorien
- Naturwissenschaften Chemie