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Diameter-Transformed Fluidized Bed

Fundamentals and Practice

  • Youhao Xu
  • Bona Lu
  • Mingyuan He
  • Yujie Tian
  • Wei Wang
Book
  • 312 Downloads

Part of the Particle Technology Series book series (POTS, volume 27)

Table of contents

  1. Front Matter
    Pages i-xvii
  2. Youhao Xu, Mingyuan He
    Pages 1-47
  3. Yujie Tian, Wei Wang
    Pages 49-69
  4. Bona Lu, Wei Wang
    Pages 103-172
  5. Youhao Xu, Mingyuan He
    Pages 173-231
  6. Youhao Xu, Mingyuan He
    Pages 233-336
  7. Youhao Xu, Mingyuan He
    Pages 337-371
  8. Youhao Xu, Mingyuan He
    Pages 373-408

About this book

Introduction

This book puts forward the concept of the Diameter-Transformed Fluidized Bed (DTFB): a fluidized bed characterized by the coexistence of multiple flow regimes and reaction zones, achieved by transforming the bed into several sections of different diameters. It reviews fundamental aspects, including computational fluid dynamics simulations and industrial practices in connection with DTFB. In particular, it highlights an example concerning the development of maximizing iso-paraffins (MIP) reactors for regulating complex, fluid catalytic cracking reactions in petroleum refineries. The book is a must-have for understanding how academic and industrial researchers are now collaborating in order to develop novel catalytic processes.

Keywords

Fluid Catalytical Cracking Catalytic Reaction Fluidized Bed Diameter-Transformed Multiscale Modeling Multiphase Flow Gas-Solid-Two-Phase Flow Reactor Design Chemical Engineering Catalytic Reaction Process

Authors and affiliations

  • Youhao Xu
    • 1
  • Bona Lu
    • 2
  • Mingyuan He
    • 3
  • Yujie Tian
    • 4
  • Wei Wang
    • 5
  1. 1.Sinopec Research Institute of PetroleumBeijingChina
  2. 2.Institute of Process Engineering, Chinese Academy of Sciences, Beijing, ChinaUniversity of Chinese Academy of SciencesBeijingChina
  3. 3.Sinopec Research Institute of PetroleumBeijingChina
  4. 4.Institute of Process Engineering, Chinese Academy of Sciences, Beijing, ChinaUniversity of Chinese Academy of SciencesBeijingChina
  5. 5.Institute of Process Engineering, Chinese Academy of Sciences, Beijing, ChinaUniversity of Chinese Academy of SciencesBeijingChina

Bibliographic information

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