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T.T. Chen Honorary Symposium on Hydrometallurgy, Electrometallurgy and Materials Characterization (Wang/T.T. Chen) || Thermal Decomposition Kinetics of the Thermal Decomposition Products of Ammonium Heptamolybdate Tetrahydrate in Air and Inert Gas Atmospheres

โœ Scribed by Wang, Shijie; Dutrizac, John E.; Free, Michael L.; Hwang, James Y.; Kim, Daniel


Book ID
118251362
Publisher
John Wiley & Sons, Inc.
Year
2012
Tongue
English
Weight
809 KB
Edition
1
Category
Article
ISBN
1118291239

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โœฆ Synopsis


In this study, ammonium tetramolybdate (ATM) was obtained as the intermediate product of ammonium heptamolybdate tetrahydrate (AHM). The thermal decomposition mechanism of ATM was investigated under nonisothermal and isothermal conditions in air and inert gas atmospheres. Nonisothermal experiments were carried out by TGA/DTA/MS while TG was used for isothermal conditions. Characterization of the decomposition products were carried out by XRD and FT-IR. The thermal decomposition of ATM in air proceeds in a single step and forms M0O3 while [(ฮฮ— 4 )2ฮธ]ฮฟฮฟฮฟ83ฮœฮฟฮธ3 and molybdenum suboxide (ฮœฮฟฮธ3. ฯ‡ , ฯ‡=0.025) were obtained in the first and the second steps of thermal decomposition in He, respectively. Activation energies, frequency factors and kinetic model equations were determined for thermal decomposition reactions. Fractional conversion-time diagrams were compared with diagrams drawn according to kinetic model equation.


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