By Vassilis Inglezakis, Stavros Poulopoulos
Adsorption, Ion trade and Catalysis is largely a mix of environmental technology and chemical reactor engineering. extra particularly, 3 very important heterogeneous tactics, specifically, adsorption, ion trade and catalysis, are analysed, from basic kinetics to reactor layout with emphasis on their environmental functions. In bankruptcy 1, the topic of air and water pollutants is handled. information approximately toxins and emission resources are given and the therapy equipment are almost immediately provided. In bankruptcy 2, the very fundamentals and ancient improvement of adsorption, ion trade and catalysis are awarded in addition to their environmental purposes. bankruptcy three is dedicated to heterogeneous procedures and reactor research. all kinds of reactors are defined extensive and reactor modelling, hydraulics and mass/heat move phenomena are tested for every kind of reactor. Chapters four and five are devoted to adsorption & ion alternate and catalysis, respectively. the elemental ideas are offered together with kinetics, equilibrium, mass/heat move phenomena in addition to the analytical suggestions of the reactor types provided in bankruptcy three. within the 6th bankruptcy, the topic of scale up is approached.The Annexes on the finish of the booklet comprise actual houses of gear of environmental curiosity in addition to unit conversion tables. eventually, approximately the entire examples contained are in keeping with actual experimental information present in literature with environmental curiosity. lots of the examples ponder all features of operation layout - kinetics, hydraulics and mass transfer.* presents simple wisdom of significant environmental difficulties and connects them to chemicalengineering
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Additional info for Adsorption, Ion Exchange and Catalysis: Design of Operations and Environmental Applications (2006)
R. Morris M. A. Peterson, H. A. Sober Development of cellulose ion exchangers. 1956-58 Preparation and studies of nonsiliceous inorganic ion exchangers—insoluble salts, heteropolyacids F. Helfferich Foundations laid for the new theoretical treatment of ion exchange. T. R. E. Kressmann Invention and development of isoporous ion-exchange J. R. Millar resins. J. Weiss Thermally regenerable ion-exchange resins and water desalination based on them. Year 1952–1971 1956 1956 1959 1960 1964 clay plates many millennia ago.
Not only could they be used in the sodium cycle when regenerated with salt, but also in the hydrogen cycle when regenerated with an acid. One group of these cation exchangers was the carbonaceous type, which was made by the sulfonation of coal. Synthesis of the first organic ion exchanger. H. S. Thompson J. T. Way J. Spence H. Eichorn J. Lemberg F. Harm A. Rumpler S. Mayert K. Halse R. Gans O. Folin, R. Bell J. Whitehorn A. Bahrdt O. Liebknecht P. Smit B. A. Adams E. L. Holmes G. F. D’Alelio G.
S. Thompson J. T. Way J. Spence H. Eichorn J. Lemberg F. Harm A. Rumpler S. Mayert K. Halse R. Gans O. Folin, R. Bell J. Whitehorn A. Bahrdt O. Liebknecht P. Smit B. A. Adams E. L. Holmes G. F. D’Alelio G. E. Boyd J. W. Adamson C. H. McBurney A. Skogseid J. A. Marinsky L. E. Glendenin C. D. Coryell D. K. Hale D. Reichenberg N. E. Topp C. G. Thomas R. M. Barrer D. W. Breck Invention of sulfonated polystyrene polymerization cation exchangers. Demonstration of the applicability of ion exchange for adsorption of fission products in trace amounts (lanthanides).
Adsorption, Ion Exchange and Catalysis: Design of Operations and Environmental Applications (2006) by Vassilis Inglezakis, Stavros Poulopoulos
Categories: Fluid Dynamics