Tài liệu Chemical Micro Process Engineering pptx

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Tài liệu Chemical Micro Process Engineering pptx

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[...]... Booster Pumps 593 Process Simulation 594 Simulation 1 [S 1]: Micro Reaction Simulation Toolkit 596 Simulation 2 [S 2]: Steady-state Process Simulator 598 Simulation 3 [S 3]: Reactor Modeling for a Homogeneous Catalytic Reaction 598 Process Engineering 599 Basic Engineering 599 Detailed Engineering 601 Engineering 1 [E 1]: Computer-aided Plant Design Software 601 Engineering 2 [E 2]: Process Analyzer... may be considered later In the meantime, the topic chemical micro processing engineering and microreactor technology have gained even more attention in the scientific world There is hardly any conference in chemical engineering which has not micro- reactor technology as key topic and gives an own session to it Scientific publishing houses know that micro- reactor articles are of major interest for their... need to have a description about micro- reactor process design” for finally gathering cost calculations, now that the first part of the book series about micro- reactor design” has been released – thus, the new book part is subtitled “Processing and Plants” Facing the (unit) operations of chemical engineering, microstructured devices offer improvements of existing processing and even completely novel... Signal Dispersion 489 References 498 4 Micro Structured Reactor Plant Concepts 4.1 4.2 Micro Reactor or Micro Structured Reactor Plant (MRP) 505 Applicable Principles for Micro Structured Reactor Plant (MRP) Design 507 Miniplant Technology – A Model for the Micro Structured Reactor Plant Concept 510 The Micro Unit Operations Concept 511 Design Problems of Chemical Micro Structured Reactor Plants 511 4.2.1... Online Reactor Manufacturing 622 Continuous Coating Processes in the Polymer Industry 622 Adaptation of Industrial Online Processes to Micro Structured Reactor Manufacturing 622 Production Modules 624 Monolithic Heat Exchanger Manufacturing 629 References 630 Subject Index 639 XXI XXIII Preface About one year ago the book Chemical Micro Process Engineering – Fundamentals, Modelling, and Reactions”... Water-gas Shift 353 Micro Structured Membranes for CO Clean-up 2 [MMem 2]: Palladium Membrane Micro Reactor 353 Micro Structured Membranes for CO Clean-up 3 [MMem 3]: Palladium Membranes in Micro Slits 355 Micro Structured Membranes for CO Clean-up 4 [MMem 4]: Supported Palladium Membrane 355 Micro Structured Membranes for CO Clean-up 5 [MMem 5]: Sputtered Tantalum Membrane 355 Micro Structured Membranes... Characterization 410 Automated Measurement and Analysis 410 Data Handling 411 In Situ Surface Science Studies to Provide Micro Kinetics 411 Multidisciplinary Knowledge Beyond Chemistry and Chemical Engineering Needed for Future Catalyst Screening 413 Features of Chemical Micro Process Engineering to Impact on Catalyst Screening 413 Flow Conditions in Small-sized Reactors 413 Analytical Expressions of... the new possibilities Chemical micro process engineering is deeply interdisciplinary and a knowledge-based technology; there is considerable capital investment on the side of the traditional chemical engineering One cannot simply “buy” the new technology; it is more a strategic and long-lasting decision to do so On the other side, it is sometimes very simple to have profits from micro reactors, as e.g... stretching Micro electro discharge machining Dynamic fluid viscosity Industrial platform for modular micro process engineering Micro total analysis system Density Lyapunov exponent Stream function Zeta potential 1 1 Mixing of Miscible Fluids 1.1 Mixing in Micro Spaces – Drivers, Principles, Designs and Uses 1.1.1 ‘Mixing Fields’, a Demand Towards a more Knowledge-based Approach – Room for Micro Mixers?... is advised to have it as a separate topic here Microstructured reactors pose their individual needs on interface development, process control, tubing and other peripherals, and all other aspects of plant built-up The provision of robust plants is the final step needed for a commercial acceptance of the novel technology The series Chemical Micro Process Engineering is, accordingly, not complete now; . Müller, G. Kolb Chemical Micro Process Engineering 1264vch00.pmd 25.01.2005, 15:251 Hessel, V., Hardt, S., Löwe, H. Chemical Micro Process Engineering Fundamentals,. (Eds.) Membrane Technology in the Chemical Industry 2001 ISBN 3-527-28485-0 1264vch00.pmd 25.01.2005, 15:252 Chemical Micro Process Engineering Processing and Plants Volker

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Mục lục

  • Chemical Micro Process Engineering

    • Contents

    • Preface

    • Abbreviations and Symbols

    • 1 Mixing of Miscible Fluids

      • 1.1 Mixing in Micro Spaces – Drivers, Principles, Designs and Uses

        • 1.1.1 ‘Mixing Fields’, a Demand Towards a more Knowledge-based Approach – Room for Micro Mixers?

        • 1.1.2 Drivers for Mixing in Micro Spaces

        • 1.1.3 Mixing Principles

        • 1.1.4 Means for Mixing of Micro Spaces

        • 1.1.5 Generic Microstructured Elements for Micro-mixer Devices

        • 1.1.6 Experimental Characterization of Mixing in Microstructured Devices

        • 1.1.7 Application Fields and Types of Micro Channel Mixers

        • 1.2 Active Mixing

          • 1.2.1 Electrohydrodynamic Translational Mixing

            • 1.2.1.1 Mixer 1 [M 1]: Electrohydrodynamic Micro Mixer (I)

            • 1.2.1.2 Mixer 2 [M 2]: Electrohydrodynamic Micro Mixer (II)

            • 1.2.1.3 Mixer 3 [M 3]: Electrokinetic Instability Electroosmotic Flow Micro Mixer, First-generation Device

            • 1.2.1.4 Mixer 4 [M 4]: Electrokinetic Instability Electroosmotic Flow Micro Mixer, Second-generation Device

            • 1.2.1.5 Mixer 5 [M 5]: Electrokinetic Instability Micro Mixer by Zeta-potential Variation

            • 1.2.1.6 Mixer 6 [M 6]: Electrokinetic Dielectrophoresis Micro Mixer

            • 1.2.1.7 Mixing Characterization Protocols/Simulation

            • 1.2.1.8 Typical Results

            • 1.2.2 Electro Rotational Mixing

              • 1.2.2.1 Mixer 7 [M 7]: Coupled Electrorotation Micro Mixer

              • 1.2.2.2 Mixing Characterization Protocols/Simulation

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