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Kinetics of Heterogeneous Solid State Processes electronic resource by Pritam Deb.

By: Deb, Pritam [author.]Contributor(s): SpringerLink (Online service)Material type: TextTextSeries: SpringerBriefs in MaterialsPublication details: New Delhi : Springer India : Imprint: Springer, 2014Description: VII, 49 p. 27 illus. online resourceContent type: text Media type: computer Carrier type: online resourceISBN: 9788132217565Subject(s): Chemistry, Physical organic | Nanotechnology | Surfaces (Physics) | Materials Science | Characterization and Evaluation of Materials | Physical Chemistry | NanotechnologyDDC classification: 620.11 LOC classification: TA404.6Online resources: Click here to access online
Contents:
Fundamentals Concepts of Kinetics -- Material Development and Process -- Nonisothermal Kinetic Analysis -- Kinetics of Solid State Reaction -- Kinetics of Heterogeneous Solid State Process -- Summary -- References.
In: Springer eBooksSummary: Kinetic studies have traditionally being extremely useful in characterizing several physical and chemical phenomena in organic, inorganic and metallic systems. It provides valuable qualitative, quantitative and kinetic information on phase transformations, solid state precipitation, crystallization, oxidation and decomposition. Unfortunately, no single reference comprehensively presents nonisothermal kinetic analysis method for the study of complex processes, determining the actual mechanism and kinetic parameters. This book provides a new method for nonisothermal kinetics and its application in heterogeneous solid state processes. In the backdrop of limitations in existing methods, the book presents a brief review of the widely used isothermal and nonisothermal kinetic analysis methods.
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Fundamentals Concepts of Kinetics -- Material Development and Process -- Nonisothermal Kinetic Analysis -- Kinetics of Solid State Reaction -- Kinetics of Heterogeneous Solid State Process -- Summary -- References.

Kinetic studies have traditionally being extremely useful in characterizing several physical and chemical phenomena in organic, inorganic and metallic systems. It provides valuable qualitative, quantitative and kinetic information on phase transformations, solid state precipitation, crystallization, oxidation and decomposition. Unfortunately, no single reference comprehensively presents nonisothermal kinetic analysis method for the study of complex processes, determining the actual mechanism and kinetic parameters. This book provides a new method for nonisothermal kinetics and its application in heterogeneous solid state processes. In the backdrop of limitations in existing methods, the book presents a brief review of the widely used isothermal and nonisothermal kinetic analysis methods.

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