Synthesis and Operability Strategies for Computer-Aided Modular Process Intensification

Synthesis and Operability Strategies for Computer-Aided Modular Process Intensification

N Pistikopoulos, Efstratios; Tian, Yuhe

Elsevier - Health Sciences Division

04/2022

336

Mole

Inglês

9780323855877

15 a 20 dias

700

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1. Introduction to process intensification
2. Towards computer-aided process intensification
3. Phenomena-based synthesis for process intensification
4. Process synthesis, optimization and intensification
5. Process synthesis, intensification and heat integration
6. Material selection, process synthesis and intensification
7. Operability and control challenges in process intensification
8. Steady-state and dynamic flexibility analysis
9. Inherent safety analysis
10. Advanced model-based control
11. Synthesis and optimization of operable process intensification systems
12. Identification of performance limits for olefin metathesis reactive separation process
13. Synthesis of ethanol-water extractive separation systems with ionic liquid solvents selection
14. Process design and intensification of an industrial dividing wall column for methyl methacrylate separation
15. Steady-state synthesis and design of methyl tert-butyl ether production process with safety and operability considerations
16. Simultaneous design and control of a methyl tert-butyl ether reactive distillation system
17. A framework for synthesis of operable and intensified systems
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Process Design; Optimization; Control; Process Operability; Process safety; Process intensification; Modular design; Energy Systems; Circular Economy