By Vassilis Inglezakis, Stavros Poulopoulos
Adsorption, Ion trade and Catalysis is largely a mix of environmental technological know-how and chemical reactor engineering. extra particularly, 3 vital heterogeneous procedures, specifically, adsorption, ion alternate and catalysis, are analysed, from basic kinetics to reactor layout with emphasis on their environmental purposes. In bankruptcy 1, the topic of air and water pollutants is handled. facts approximately toxins and emission assets are given and the remedy equipment are almost immediately provided. In bankruptcy 2, the very fundamentals and old improvement of adsorption, ion trade and catalysis are awarded in addition to their environmental purposes. bankruptcy three is dedicated to heterogeneous methods and reactor research. every kind 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 fundamental rules are offered together with kinetics, equilibrium, mass/heat move phenomena in addition to the analytical strategies 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 ebook comprise actual houses of drugs of environmental curiosity in addition to unit conversion tables. eventually, approximately all of the examples contained are in accordance with actual experimental information present in literature with environmental curiosity. lots of the examples give some thought to all elements of operation layout - kinetics, hydraulics and mass transfer.* presents easy 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)
In the following sections, a relationship between them will be attempted. e. they are basically diffusion processes. Ion exchange is also a sorption process, but ions are the sorbed species in contrast to adsorption, where electrically neutral species are sorbed (Noble and Terry, 2004; Perry and Green, 1999). It is generally accepted that adsorption and ion exchange can be grouped together as sorption for a unified treatment in practical applications. Most of the mathematical theories and approaches have been developed originally for sorption rather than ion exchange.
All in all, catalysts will continue to be a valuable asset in the effort to protect human health, the natural environment, and the existence of life on Earth. There are, however, some distinctive differences between the environmental and the other aspects of catalysis. First, the feed and operation conditions of environmental catalysts cannot be changed in order to increase conversion or selectivity, as commonly done for chemical production catalysts. Second, environmental catalysis has a role to play not only in industrial processes, but also in emission control (auto, ship, and flight emissions), and even in our daily life (water purifiers).
Ostwald process. J. Frenkel Publishes a theory of adsorption. H. S. Taylor Theory of catalysis. I. Langmuir Formulate the principles of Langmuir– W. Hinschelwood Hinschelwood kinetics. I. Langmuir Receives the Nobel prize in chemistry for his work on surface chemistry G. Damköhler Introduces the Damköhler group. E. W. Thiele Introduces the effectiveness factor and the Thiele modulus. H. Kramers Publishes the definitive treatment of kinetics. 5 (Continued) Scientist(s) name(s) Breakthrough Year G.
Adsorption, Ion Exchange and Catalysis: Design of Operations and Environmental Applications (2006) by Vassilis Inglezakis, Stavros Poulopoulos