Advances In Chemical Engineering: Characterization Of Flow, Particles And Interfaces

Hardcover | August 27, 2009

byJinghai Li

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Multi-scale analysis and simulation of chemical processing and reactions have received unprecedented attention in recent years; however, measurement technology focused on multi-scale structures, particularly on meso-scale phenomena, has not been sufficiently addressed. This volume of Advances in Chemical Engineering focuses on the "Characterization of Flow, Particles and Interfaces" to alert the chemical engineering community to this challenging issue presenting six meso-scale measurement technologies.

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Multi-scale analysis and simulation of chemical processing and reactions have received unprecedented attention in recent years; however, measurement technology focused on multi-scale structures, particularly on meso-scale phenomena, has not been sufficiently addressed. This volume of Advances in Chemical Engineering focuses on the "Cha...

Jinghai LI is Professor in Chinese Academy of Sciences (CAS). He also serves as the VP of CAS and China Association of Science and Technology, VP of International Council for Science (ICSU) and the Executive VP of Chemical Industry and Engineering Society of China. He established the Energy-Minimization Multi-Scale (EMMS) model for gas...

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Format:HardcoverDimensions:286 pages, 8.9 × 5.9 × 1.1 inPublished:August 27, 2009Publisher:Academic PressLanguage:English

The following ISBNs are associated with this title:

ISBN - 10:0123747384

ISBN - 13:9780123747389

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Table of Contents

1. Ultrasound based Gas-liquid interface detection in Gas-Liquid two-phase flows, Gonzalez and Takeda

2. Micromanipulation in Mechanicla Characterization of Single Particles, Zhang

3. Particle Image Velocimetry techniques and its application in mulitphase systems, Hishida

4. Positron Emission Imaging in Chemical Engineering, Seville

5. Electrical Capacitance, Electrocial Resistance, and Positron Emission Tomography Techniques and their applications in multiphase flow systems, Williams and Fan

6. Time-resolved laser-induced incandescence, Leipertz