Accesso libero

Non-Isothermal Kinetic Analysis of the Dehydroxylation of Kaolinite in Dynamic Air Atmosphere

INFORMAZIONI SU QUESTO ARTICOLO

Cita

Coats , A. W. - Redfern, J. P. 1964. Kinetic parameters from thermogravimetric data. In Nature, vol. 201, pp. 68-69.Search in Google Scholar

DAIRO, O. U. - ADERINLEWO, A. A. - ADEOSUN, O. J. - OLA, I. A. -SALAUDEEN, T. 2015. Solar drying kinetics of cassava slices in a mixed flow dryer. In Acta Technologica Agriculturae, vol. 18, no. 4, pp. 102-107.Search in Google Scholar

Drits , V. A. - Derkowski , A. 2015. Kinetic behavior of partially dehydroxylated kaolinite. In Mineralogical Society of America, vol. 100, pp. 883-896.Search in Google Scholar

Heide, K. - Foldvari , M. 2006. High temperature mass spectrometric gas-release studies of kaolinite Al2[Si2O5(OH)4] decomposition. In Thermochimica Acta, vol. 446, pp. 106-112.Search in Google Scholar

Iqbal, Y. - Lee, W.E. 2000. Microstructural evolution in triaxial porcelain. In Journal of the American Ceramic Society, vol. 83, pp. 3121-3127.Search in Google Scholar

Konta , J. 1995. Clay and man: clay raw materials in the service of man. In Applied Clay Science, vol. 10, pp. 275-335.Search in Google Scholar

Nahdi, K. - Llewellyn , P. - Rouquerol , F. - Rouquerol , J. - Ariguib, N. - Ayedi , M. 2002. Controlled rate thermal analysis of kaolinite dehydroxylation: effect of water vapour pressure on the mechanism. In Thermochimica Acta, vol. 390, pp. 123-132.Search in Google Scholar

Ondruška , J. - Štubňa, I. - Trnovcova , V. - Medveď, I. - Kaljuvee , T. 2015. Polarization and depolarization currents in kaolin. In Applied Clay Science, vol. 114, pp. 157-160.Search in Google Scholar

Prasad , M. S. - Reid, K. J. - Murray , H. H. 1991. Kaolin: processing, properties and applications. In Applied Clay Science, vol. 6, pp.87-119.Search in Google Scholar

Ptáček, P. - Kubatova , D. - Havlica , J. - Brand štetr , J. - Šoukal , F. - Opravil , T. 2010a. The non-isothermal kinetic analysis of the thermal decomposition of kaolinite by thermogravimetric analysis. In Powder Technology, vol. 204, pp. 222-227.Search in Google Scholar

Ptáček, P. - Šoukal , P. - Opravil , T. - Noskova , M. - Havlica , J. - Brand štetr , J. 2010b. The kinetics of Al-Si spinel phase crystallization from calcined kaolin. In Journal of Solid State Chemistry, vol. 183, pp. 2565-2569.Search in Google Scholar

Ptáček, P. - Kubatova , D. - Havlica , J. - Brand štetr , J. -Šoukal , F. - Opravil , T. 2010c. Isothermal kinetic analysis of the thermal decomposition of kaolinite: The thermogravimetric study. In Thermochimica Acta, vol. 501, pp. 24-29.Search in Google Scholar

Ptáček, P. - Šoukal , P. - Opravil , T. - Noskova , M. - Havlica , J. - Brand štetr , J. 2010d. The non-isothermal kinetics analysis of the thermal decomposition of kaolinite by Effluent Gas Analysis technique. In Powder Technology, vol. 203, pp. 272-276.Search in Google Scholar

Ptáček, P. - Šoukal , P. - Opravil , T. - Havlica , J. - Brand štetr , J. 2011. The kinetic analysis of the thermal decomposition of kaolinite by DTG technique. In Powder Technology, vol. 208, pp. 20-25.Search in Google Scholar

Ptáček, P. - Šoukal , F. - Opravil , T. - Havlica , J. - Brand štetr , J. 2013a. Crystallization of spinel phase from metakaoline: The nonisothermal thermodilatometric CRH study. In Powder Technology, vol. 243, pp. 40-45.Search in Google Scholar

Ptáček, P. - Opravil , T. - Šoukal , F. - Wasserbauer , F. - Masilko , J. - Bara ček, J. 2013b. The influence of structure order on the kinetics of dehydroxylation of kaolinite. In Journal of the European Ceramic Society, vol. 33, pp. 2793-2799.Search in Google Scholar

Saikia, N. - Sengupta , P. - Gogoi, P. K. - Borthakur , P. C. 2002. Kinetics of dehydroxylation of kaolin in presence of oil field effluent treatment plant sludge. In Applied Clay Science, vol. 22, pp. 93-102.Search in Google Scholar

Sbirrazzuoli , N. - Vincent, L. - Mija, A. - Guigo, N. 2009. Integral, differential and advanced isoconversional methods: Complex mechanisms and isothermal predicted conversion-time curves. In Chemometrics and Intelligent Laboratory Systems, vol. 96, pp. 219-226.Search in Google Scholar

Starink , M. J. 2003. The determination of activation energy from linear heating rate experiments: a comparison of the accuracy of isoconversion methods. In Thermochimica Acta, vol. 404, pp. 163-176.Search in Google Scholar

Traoré, K. - Gridi-Bennadji, F. - Blanchart , P. 2006. Significance of kinetic theories on the recrystallization of kaolinite. In Thermochimica Acta, vol. 451, pp. 99-104.Search in Google Scholar

Vyazovkin , S. - Wight, Ch. A. 1999. Model-free and model-fitting approaches to kinetic analysis of isothermal and nonisothermal data. In Thermochimica Acta, vol. 340-341, pp. 53-68.Search in Google Scholar

Vyazovkin , S. - Burnham , A. K. - Criado, J. M. - Perez- Maqueda , L. A. - Popescu, C. - Sbirrazzuoli , N. 2011. ICTAC kinetics committee recommendations for performing kinetic computations on thermal analysis data. In Thermochimica Acta, vol. 520, pp. 1-19.Search in Google Scholar

Vyazovkin , S. - Chrissafis, K. - Di Lorenzo , M. L. - Koga, N. - Pijolat , M. - Roduit, M. - Sbirrazzuoli , N. - Sunol, J. J.2014. ICTAC Kinetics Committee recommendations for collecting experimental thermal analysis data for kinetic computations. In Thermochimica Acta, vol. 590, pp. 1-23.Search in Google Scholar

eISSN:
1338-5267
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Engineering, Introductions and Overviews, other