Effect of adiabatic flame temperature on nano alumina powders during solution combustion process

BN Sherikar, AM Umarji - Transactions of the Indian Ceramic …, 2011 - Taylor & Francis
Transactions of the Indian Ceramic Society, 2011Taylor & Francis
Materials Research Centre Indian Institute of Science Bangalore–560 012, IndiaNano
ceramic alumina powders are synthesized by solution combustion synthesis using
aluminium nitrate as oxidizer and urea as fuel with different fuel to oxidizer ratio. The
variation of adiabatic flame temperatures are calculated theoretically for different
fuel/oxidizer ratio according to thermodynamic concept and correlated with the observed
flame (reaction) temperatures. A “multi channel thermocouple setup connected to computer …
Materials Research Centre Indian Institute of Science Bangalore – 560 012, IndiaNano ceramic alumina powders are synthesized by solution combustion synthesis using aluminium nitrate as oxidizer and urea as fuel with different fuel to oxidizer ratio. The variation of adiabatic flame temperatures are calculated theoretically for different fuel/oxidizer ratio according to thermodynamic concept and correlated with the observed flame (reaction) temperatures. A “multi channel thermocouple setup connected to computer interfaced Keithley multi meter 2700” is used to monitor the thermal events occurring during the process. The combustion products, characterized by XRD, show that the powders are composed of polycrystalline oxides with crystallite size of 32 to 52 nm. An interpretation based on maximum combustion temperature and the amount of gases produced during reaction for various fuel to oxide ratio has been proposed for the nature of combustion and its correlation with the characteristics of as-synthesized powder.
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