Download Acetic Acid and its Derivatives (Chemical Industries) by Victor H. Agreda PDF

By Victor H. Agreda

Impressive a stability among simple chemistry and chemical engineering, this up to date reference discusses vital elements of acetic acid and its significant derivatives, together with chemistry, tools of practise and manufacture, and synthesis, in addition to present and rising downstream technologies.;The ebook offers finished actual estate info for compounds and their separation, together with acetic acid-water separation. Describing 5 different types of concepts for the manufacture of acetic acid, it: examines thermophysical homes and aqueous strategies, with distinct motives of mathematical versions and correlations; provides a serious research of estate; outlines production charges and comparable financial components; reports the functions of acetic acid and derivatives; covers the chemistry and practise of the derivatives; elucidates contemporary issues resembling deicers, esters and new esterification applied sciences.

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Acetylene, Its Properties, Manufacture, and Uses, Vol. 2, Academic Press, New York, 1966, p. 148. 19. , in Ethylene and Its Industrial Derivatives (S. A. ), Ernest Benn, London, 1969, pp. 767770. 20. Webster, D. , and Player, J. , Eur. Pat. Appl. EP 272,846 (1988). page_23 < previous page page_23 next page > page_24 < previous page page_24 next page > Page 24 21. , Czech. CS 249,378 (1988). 22. Chhabra, M. , Yadav, B. , Ghosh, S. , Bhattacharyya, N. , and Sen, S. , in Adv. , Proc. 7th Natl. Symp.

The commercialization of the cobalt-catalyzed methanol carbonylation in the early 1960s was quickly followed by the introduction of the rhodium-catalyzed process at the end of the same decade. For this reason, only a few commercial plants were known to have operated processes based on this technology. The volume of literature describing this reaction is much smaller than for the corresponding rhodium-based process. This is also probably due to the rapid displacement of the cobalt-catalyzed process by the rhodium-based process, which undoubtedly led to a waning academic interest in this process.

19. Nieto, J. M. , and Fierro, J. L. , New Developments in Selective Oxidation, Elsevier, Amsterdam, 1990, pp. 295304. 20. Prokopchuk, S. , Abadzhev, S. , and Shevchuk, V. A. 110(10), 76099. 21. H. N. S. Patent 4,448,898 to Atlantic Richfield (May 15, 1984). 22. , European Patent Appl. A. (Dec. 16, 1981). 23. 24, 1967). 24. , Chem. , 38(10), 19391941 (1966). 25. , Industrial Organic Chemistry, Verlag Chemie, New York, 1978, pp. 153156. 26. , Japanese Patent 41-9173 to Bayer (May 16, 1966). 27. , British Patent 1,072,399 to Bayer (June 14, 1967).

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