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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 success or failure of cavitation reactions ultimately depends on the collapse of the cavity. Cavitation chemistry is based on the principles of the formation of small transient cavities, their growth and implosion, which produce chemical reactions caused by the generation of extreme pressures and temperatures and a high degree of micro turbulence.
Product Details :
Genre |
: Science |
Author |
: Y.T. Shah |
Publisher |
: Springer Science & Business Media |
Release |
: 2012-12-06 |
File |
: 363 Pages |
ISBN-13 |
: 9781461547877 |
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Hydrodynamic Cavitation A systematic introduction to critical technologies and applications of hydrodynamic cavitation In Hydrodynamic Cavitation: Devices, Design, and Applications, a distinguished team of researchers delivers an authoritative discussion of key aspects of hydrodynamic cavitation, including the design, characterization, and modeling of the devices. The book offers discussions of state-of-the-art applications of the technology, including the disinfection of water, wastewater treatment, biomass processing, and many other industrial applications. In addition to expansive case studies, the book provides an up-to-date exploration of emerging innovations and future applications of the technology. Readers will also find: A thorough introduction to hydrodynamic cavitation devices, including those based on axial and rotational flows An in-depth examination of the experimental characterization of cavitation devices and computational models Comprehensive explorations of the applications of hydrodynamic cavitation, including the disinfection of water and wastewater treatment Accessible discussions of industrial applications of hydrodynamic cavitation Perfect for chemical and process engineers, water chemists, mechanical engineers, and food chemists, Hydrodynamic Cavitation will also earn a place in the libraries of food and environmental technologists.
Product Details :
Genre |
: Technology & Engineering |
Author |
: Vivek V. Ranade |
Publisher |
: John Wiley & Sons |
Release |
: 2022-10-17 |
File |
: 357 Pages |
ISBN-13 |
: 9783527346431 |
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Renewable fuel research and process development requires interdisciplinary approaches involving chemists and physicists from both scientific and engineering backgrounds. Here is an important volume that emphasizes green chemistry and green engineering principles for sustainable process development from an interdisciplinary point of view. It creates an enriching knowledge base on green chemistry of biofuel production, sustainable process development, and green engineering principles for renewable fuel production. This book includes chapters contributed by both research scientists and research engineers with significant experience in biofuel chemistry and processes. The book offers an abundance of scientific experimental methods and analytical procedures and interpretation of the results that capture the state-of-the-art knowledge in this field. The wide range of topics make this book a valuable resource for academicians, researchers, industrial practitioners and scientists, and engineers in various renewable energy fields. Key features: • Emphasizes green chemistry and green engineering principles for sustainable process development for biofuel production • Discusses a wide array of biofuels from algal biomass to waste-to-energy technologies and wastewater treatment and activated sludge processes • Presents advances and developments in biofuel green chemistry and green engineering, including process intensification (microwaves/ultrasound), ionic liquids, and green catalysis • Looks at environmental assessment and economic impact of biofuel production
Product Details :
Genre |
: Science |
Author |
: Veera Gnaneswar Gude |
Publisher |
: CRC Press |
Release |
: 2018-05-24 |
File |
: 507 Pages |
ISBN-13 |
: 9781351582841 |
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Selected, peer reviewed papers from the 2nd International Conference on Chemical Engineering and Advanced Materials (CEAM 2012), July 13-15, 2012, Guangzhou, China
Product Details :
Genre |
: Technology & Engineering |
Author |
: Zi Li Liu |
Publisher |
: Trans Tech Publications Ltd |
Release |
: 2012-07-26 |
File |
: 3489 Pages |
ISBN-13 |
: 9783038138693 |
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Providing in-depth information on how to obtain high-performance materials by controlling their nanostructures, this ready reference covers both the bottom-up and the top-down approaches to the synthesis and processing of nanostructured materials. The focus is on advanced methods of mechanical nanostructuring such as severe plastic deformation, including high pressure torsion, equal channel angular processing, cyclic extrusion compression, accumulative roll bonding, and surface mechanical attrition treatment. As such, the contents are inherently application-oriented, with the methods presented able to be easily integrated into existing production processes. In addition, the structure-property relationships and ways of influencing the nanostructure in order to exhibit a desired functionality are reviewed in detail. The whole is rounded off by a look at future directions, followed by an overview of applications in various fields of structural and mechanical engineering. With its solutions for successful processing of complex-shaped workpieces and large-scale specimens with desired properties, this is an indispensable tool for purposeful materials design.
Product Details :
Genre |
: Technology & Engineering |
Author |
: Mahmood Aliofkhazraei |
Publisher |
: John Wiley & Sons |
Release |
: 2015-02-10 |
File |
: 816 Pages |
ISBN-13 |
: 9783527674978 |
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Product Details :
Genre |
: Polymerization |
Author |
: Thierry Meyer |
Publisher |
: |
Release |
: 2005 |
File |
: 596 Pages |
ISBN-13 |
: UOM:39015060844001 |
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BOOK EXCERPT:
Cavitation is a dangerous process which destroys objects in a fluid. Scientific description of this multifaceted phenomenon is based on almost every area of physics, and many interesting effects are connected with cavitation. The most intriguing of them is sonoluminescence – the light emitted from a cavitating fluid. This book presents a full-scale description of cavitation: from the basic thermodynamic principles to special phenomena associated with this complex process, from the dynamics of a single gas cavity to the catastrophic macroscopic manifestations, from the domestic observations to the nuances of X-ray spectroscopic research.
Product Details :
Genre |
: Science |
Author |
: Dmitry A. Biryukov |
Publisher |
: CRC Press |
Release |
: 2022-04-28 |
File |
: 392 Pages |
ISBN-13 |
: 9781000587388 |
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Product Details :
Genre |
: Breeder reactors |
Author |
: |
Publisher |
: |
Release |
: 1970 |
File |
: 982 Pages |
ISBN-13 |
: UOM:39015004451780 |
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Product Details :
Genre |
: Chemical engineering |
Author |
: |
Publisher |
: |
Release |
: 2001 |
File |
: 436 Pages |
ISBN-13 |
: UOM:39015047959054 |
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BOOK EXCERPT:
Product Details :
Genre |
: Chemistry, Technical |
Author |
: |
Publisher |
: |
Release |
: 2009 |
File |
: 528 Pages |
ISBN-13 |
: STANFORD:36105123664828 |