Thermal decomposition of ammonium nitrate (AN) in the presence of the optimized nano-ternary transition metal ferrite CoNiZnFe2O4

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Abstract

CoNiZnFe2O4 was synthesized and characterized using techniques such as powder XRD, Raman spectroscopy, and infrared (IR) spectroscopy. The optical band-gap energy and thermal stability of CoNiZnFe2O4 were also explored. The effect of 2% by mass of CoNiZnFe2O4 on the thermal decomposition of ammonium nitrate (AN) was studied using simultaneous thermal analysis (TG-DTA). The presence of CoNiZnFe2O4 in AN converts the endothermic curve of AN into an exothermic curve with a reduction in the peak temperature by 20 °C. The kinetic investigations suggest that the thermal decomposition of AN + CoNiZnFe2O4 occurs at a lower activation energy (by 76 kJ mol-1) with a decreased pre-exponential factor (by 0.4 min-1), suggesting a faster decomposition of AN in the presence of CoNiZnFe2O4. The findings of the present work suggest that AN + CoNiZnFe2O4 can be used in place of pure AN as an oxidizer in military applications.

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Dave, P. N., & Sirach, R. (2022). Thermal decomposition of ammonium nitrate (AN) in the presence of the optimized nano-ternary transition metal ferrite CoNiZnFe2O4. Energy Advances, (10), 690–696. https://doi.org/10.1039/d2ya00146b

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