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Application of thermal analysis to carbon black-elastomer systems
Authors:J A Azizi  D Dollimore  P J Dollimore  G R Heal  P Manley  W A Kneller  W Jin Yong
Institution:(1) Department of Chemistry, and College of Pharmacy, University of Toledo, 43606 Toledo, OH., USA;(2) Department of Chemistry and Applied Chemistry, University of Salford, Salford, UK;(3) Department of Geology, University of Toledo, 43606 Toledo, OH., USA;(4) Department of Chemistry, Nanjing Normal University, Nanjing, China
Abstract:In this study a relationship between the surface and textural properties of carbon blacks and the gasification process induced thermally in air is noted. A temperature jump method was used to follow the gasification in air and to establish the relevant Arrhenius parameters. This can be associated with the activity of ‘basal’ plane carbon atoms as well as ‘edge’ carbon atoms at the surface. This is based on a model of carbon black structure consisting of the irregular packing of small graphite carbon structures. The carbon black surface was measured using a single measurement of adsorption based essentially on the BET volumetric method. The carbon black surface had a rate of oxidation per unit are which clearly indicated that the lower area carbon blacks had a predominately active area of ‘edge’ atoms at the surface while the surface of the higher area carbon blacks had a predominate amount of ‘basal’ plane graphite carbon atoms.
Keywords:carbon black-elastomer system  oxidation kinetics
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