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Titlebook: Cavitation Reaction Engineering; Y. T. Shah,A. B. Pandit,V. S. Moholkar Book 1999 Springer Science+Business Media New York 1999 chemistry.

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書目名稱Cavitation Reaction Engineering
編輯Y. T. Shah,A. B. Pandit,V. S. Moholkar
視頻videohttp://file.papertrans.cn/223/222686/222686.mp4
叢書名稱The Plenum Chemical Engineering Series
圖書封面Titlebook: Cavitation Reaction Engineering;  Y. T. Shah,A. B. Pandit,V. S. Moholkar Book 1999 Springer Science+Business Media New York 1999 chemistry.
描述The literature on cavitation chemistry is ripe with conjectures, possibilities, heuris- tic arguments, and intelligent guesses. The chemical effects of cavitation have been explained by means of many theories, consisting of empirical constants, adjustable parameters, and the like. The chemists working with cavitation chemistry agree that the phenomenon is very complex and system specific. Mathematicians and physi- cists have offered partial solutions to the observed phenomena on the basis of cavitation parameters, whereas chemists have attempted explanations based on the modes of reaction and the detection of intermediate chemical species. Nevertheless, no one has been able to formulate a unified theme, however crude, for its effects on the basis of the known parameters, such as cavitation and transient chemistry involving extremely high temperatures of nanosecond durations. When one surveys the literature on cavitation-assisted reactions, it is clear that the approach so far has been "Edisonian" in nature. While a large number of reactions have showed either enhanced yields or reduced reaction times, many reactions have remained unaffected in the presence of cavitation. The succes
出版日期Book 1999
關鍵詞chemistry; health; heat transfer; industry; polymer; scaling; temperature; transport; water; air pollution an
版次1
doihttps://doi.org/10.1007/978-1-4615-4787-7
isbn_softcover978-1-4613-7168-7
isbn_ebook978-1-4615-4787-7Series ISSN 1566-7944
issn_series 1566-7944
copyrightSpringer Science+Business Media New York 1999
The information of publication is updating

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Factors Affecting Cavitation Behavior,aluate the effects of various physical parameters on cavitation behavior. This knowledge is very important from the point of view of controlling the parameters that affect cavitation chemistry as well as performance of the cavitation reactor. In this chapter, we discuss the effects of various system
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Gas-Liquid-Solid Cavitation Chemistry,d to hydrodynamic cavitation, it is clear that a three-phase flow through an orifice or a pressure expansion device may lead to some operational drawbacks. The literature for the application of hydrodynamic cavitation to three-phase reactions is therefore sparse. Similarly, the application of optica
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Operationelle Risiken in Finanzinstitutenum along with the motion of the bubble wall under the influence of time-dependent (hydrodynamic, acoustic, or optical) pressure. In this chapter, differential equations describing the motion of a single cavity and a cluster of cavities are developed which indicate how the radius of a cavity (or clus
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