Download Analytical Pyrolysis Of Synthetic Organic Polymers by Serban C. Moldoveanu PDF

By Serban C. Moldoveanu

Analytical Pyrolysis of man-made natural Polymers is a follow-up to Analytical Pyrolysis of common natural Polymers, that is quantity 20 of the sequence. the focus of the ebook is on sensible functions of analytical pyrolysis in man made natural polymer id and characterization.

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19. L. S. Ettre, A. Zlatkis, The Practice of Gas Chromatography, Interscience, New York, 1967. 20. C. P. Fenimore, F. J. Martin, Modern Plastics 44 (1966) 141. 21. E. M. Anderson, I. Ericsson, J. Anal. Appl. , 2 (1980) 97. 22. H. Itagaki, K. Horie, I. Mito, Prog. Polym. , 15 (1990) 361. 1 THE CHEMISTRY OF POLYMER THERMAL DECOMPOSITION - General aspects Thermal decomposition of polymers is a subject of considerable interest for many practical purposes. 6, a number of analytical techniques including analytical pyrolysis are used for polymer thermal characterization.

An important class of polymers that is not discussed here is that of chemically modified natural polymers (or semisynthetic polymers). ), modified starches, casein plastics (Galalith), etc. These types of compounds were discussed in the book on pyrolysis of natural organic polymers [2]. copolymers The multitude of copolymers is considerable, due to the large number of monomer combinations that can be used in their synthesis. This multitude is further extended by the possibility to obtain from the same comonomers a variety of structures such as random copolymers, alt- copolymers, per- copolymers, block- copolymers, graftcopolymers, etc.

Modified starches, casein plastics (Galalith), etc. These types of compounds were discussed in the book on pyrolysis of natural organic polymers [2]. copolymers The multitude of copolymers is considerable, due to the large number of monomer combinations that can be used in their synthesis. This multitude is further extended by the possibility to obtain from the same comonomers a variety of structures such as random copolymers, alt- copolymers, per- copolymers, block- copolymers, graftcopolymers, etc.

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