Cyclic Separating Reactors

Cyclic Separating Reactors
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DOI:
10.1002/9780470988688
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发表时间:
2005
期刊:
--
影响因子:
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通讯作者:
Takashi Aida;P. L. Silveston
Takashi Aida;P. L. Silveston
中科院分区:
其他
文献类型:
--
作者:
Takashi Aida;P. L. Silveston

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关于作者。前言。致谢。我的介绍。第一章:分离反应器。1.1它们是什么?1.2过程强化和多功能化。1.3分离反应器的潜在优势。1.4捕集反应器。1.5分离反应器的一些例子。第二章:周期操作。2.1周期分离反应器的操作选择。2.2周期过程的特点。2.3周期过程的优点与选择依据。2.4移动床系统。2.5周期过程的忽略。2。色谱反应堆。第3章:色谱反应器简介。3.1概念和类型。3.2一般模型。3.3循环稳态。第四章:色谱反应器。4.1模型研究。4.2实验研究。第五章:逆流移动床色谱反应器(cmcr)。5.1引言。5.2模型研究。5.3实验研究。第6章:移动床色谱反应器的变化。6.1概念。6.2建模和设计研究。第七章:模拟逆流移动床色谱反应器(scmcr)。7.1概念。7.2等温建模。7.3非等温建模。7.4分离催化剂和吸附剂床。7.5实验研究。7.6非分离应用。第八章:色谱反应器:概述、评估、挑战和可能性。8.1概述和评估。8.2建模。8.3设计。8.4研究需求。8.5研究机会。3。摇摆不定的反应堆。第9章:变压反应器。9.1变压反应器简介。9.2概念和类型。9.3变压反应器的一般模型。9.4计算考虑。9.5等温建模研究。9.6非等温建模研究。9.7实验研究。第十章:变温反应器。10.1简介。10.2建模。10.3模拟。10.4实验。第11章:组合式变压变温反应器。11.1概念。11.2模拟。第12章:周期性脉冲,捕获和萃取反应器。12.1简介。12.2周期性脉冲反应器。12.3周期性操作捕获反应器。12.4循环萃取反应器。第13章:摇摆反应器:概述、评估、挑战和可能性。13.1概述和评估。13.2建模。13.3设计。13.4研究需求。13.5研究机会。四、系统筛选和开发。第14章:筛选反应器。14.1分离反应器的要求。14.2筛选反应器。14.3实验研究。14.4评估。第15章:循环分离反应器的开发。15.1开发循环操作的分离反应器系统。15.2模型。15.3参数估计。15.4示范装置和性能测试。15.5扩大规模和经济评估。15.6开发实例。15.7反应器+分离器替代方案。诉概述。第16章:周期性操作的分离反应器:现状。16.1分离堆在反应堆工程中的作用。16.2不同类型循环分离堆的发展现状。16.3对未来的预测。16.4循环分离堆研究的预期方向。16.5结束语符号列表。参考文献。作者索引。主题索引。
About the Authors. Preface. Acknowledgements. I. INTRODUCTION. Chapter 1: Separating Reactors. 1.1 What Are They?. 1.2 Process Intensification and Multifunctionality. 1.3 Potential Advantages of Separating Reactors. 1.4 The Trapping Reactor. 1.5 Some Examples of Separating Reactors. Chapter 2: Periodic Operation. 2.1 operations Options for Periodic Separating Reactors. 2.2 Characteristics of Periodic Process. 2.3 Advantages of Periodic Processes & Basis for Choice. 2.4 Moving Bed Systems. 2.5 Neglect of Periodic Processes. II. CHROMATOGRAPHIC REACTORS. Chapter 3: Introduction to Chromatographic Reactors. 3.1 Concept and Types. 3.2 General Models. 3.3 Cyclic Steady State. Chapter 4: Chromatographic Reactors (CRs). 4.1 Modeling Studies. 4.2 Experimental Studies. Chapter 5: Countercurrent Moving Bed Chromatographic Reactors (CMCRs). 5.1 Introduction. 5.2 Modeling Studies. 5.3 Experimental Studies. Chapter 6: Variations of Moving Bed Chromatographic Reactors. 6.1 Concepts. 6.2 Modeling and Design Studies. Chapter 7: Simulated Countercurrent Moving Bed Chromatographic Reactors (SCMCRs). 7.1 Concept. 7.2 Isothermal Modeling. 7.3 Non-isothermal Modeling. 7.4 Separate Catalyst and Adsorbent Beds. 7.5 Experimental Studies. 7.6 Non-separation Applications. Chapter 8: Chromatographic Reactors: Overview, Assessment, Challenges and Possibilities. 8.1 Overview and Assessment. 8.2 Modeling. 8.3 Design. 8.4 Research Needs. 8.5 Research Opportunities. III. SWING REACTORS. Chapter 9: Pressure Swing Reactors. 9.1 Introduction to Swing Reactors. 9.2 Concepts and Types. 9.3 General Models for Pressure Swing Reactors. 9.4 Computational Considerations. 9.5 Isothermal Modeling Studies. 9.6 Non-isothermal Modeling Studies. 9.7 Experimental Studies. Chapter 10: Temperature Swing Reactors. 10.1 Introduction. 10.2 Modeling. 10.3 Simulations. 10.4 Experimental. Chapter 11: Combined Pressure and Temperature Swing Reactors. 11.1 Concept. 11.2 Simulation. Chapter 12: Periodically Pulsed, Trapping and Extractive Reactors. 12.1 Introduction. 12.2 Periodically Pulsed Reactors. 12.3 The Periodically Operated Trapping Reactor. 12.4 Cyclic Extractive Reactor. Chapter 13: Swing Reactors: Overview, Assessment, Challenges and Possibilities. 13.1 Overview and Assessment. 13.2 Modeling. 13.3 Design. 13.4 Research Needs,. 13.5 Research Opportunities. IV. SYSTEM SCREENING AND DEVELOPMENT.. Chapter 14: Screening Reactors. 14.1 Requirements for Separating Reactors. 14.2 Screening Reactors. 14.3 Experimental Studies. 14.4 Assessment. Chapter 15: Development of a Cyclic Separating Reactor. 15.1 Developing the Cyclically Operated Separating Reactor System. 15.2 Models. 15.3 Parameter Estimation. 15.4 Demonstration Unit and Performance Testing. 15.5 Scale Up and Economic Evaluation. 15.6 A Development Example. 15.7 Reactor + Separator Alternative. V. OVERVIEW. Chapter 16: Periodically Operated Separating Reactors: Quo Vadis?. 16.1 The Role of Separating Reactors in Reactor Engineering. 16.2 Current Development Status of Different Types of Cyclic Separating Reactors. 16.3 Predictions for the Future. 16.4 Expected Direction of Research on Cyclic Separating Reactors. 16.5 Final Word. List of Symbols. References. Author Index. Subject Index.