Process Systems and Materials for CO2 Capture Modelling Design Control and Integration 1st Edition by Athanasios I. Papadopoulos, Panos Seferlis – Ebook PDF Instant Download/Delivery: 1119106443, 978-1119106449
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Product details:
ISBN 10: 1119106443
ISBN 13: 978-1119106449
Author: Athanasios I. Papadopoulos, Panos Seferlis
This comprehensive volume brings together an extensive collection of systematic computer-aided tools and methods developed in recent years for CO2 capture applications, and presents a structured and organized account of works from internationally acknowledged scientists and engineers, through:
Modeling of materials and processes based on chemical and physical principles
Design of materials and processes based on systematic optimization methods
Utilization of advanced control and integration methods in process and plant-wide operations
The tools and methods described are illustrated through case studies on materials such as solvents, adsorbents, and membranes, and on processes such as absorption / desorption, pressure and vacuum swing adsorption, membranes, oxycombustion, solid looping, etc.
Process Systems and Materials for CO2 Capture: Modelling, Design, Control and Integration should become the essential introductory resource for researchers and industrial practitioners in the field of CO2 capture technology who wish to explore developments in computer-aided tools and methods. In addition, it aims to introduce CO2 capture technologies to process systems engineers working in the development of general computational tools and methods by highlighting opportunities for new developments to address the needs and challenges in CO2 capture technologies.
Table of contents:
Section 1: Modelling and Design of Materials
1. The Development of a Molecular Systems Engineering Approach to the Design of Carbon-Capture Solvents
2. Methods and Modelling for Post-combustion CO₂ Capture
3. Molecular Simulation Methods for CO₂ Capture and Gas Separation with Emphasis on Ionic Liquids
4. Thermodynamics of Aqueous Methyldiethanolamine/Piperazine for CO₂ Capture
5. Kinetics of Aqueous Methyldiethanolamine/Piperazine for CO₂ Capture
6. Uncertainties in Modelling the Environmental Impact of Solvent Loss through Degradation for Amine Screening Purposes in Post-combustion CO₂ Capture
7. Computer-aided Molecular Design of CO₂ Capture Solvents and Mixtures
8. Ionic Liquid Design for Biomass-based Tri-generation System with Carbon Capture
Section 2: From Material to Process Modelling, Design and Intensification
9. Multiscale Process Systems Engineering for Carbon Capture, Utilization, and Storage: A Review
10. Membrane System Design for CO₂ Capture: From Molecular Modeling to Process Simulation
11. Process Modelling and Integration for CO₂ Capture
12. Innovative Computational Tools and Models for the Design, Optimization and Control of Carbon Capture Processes
13. Modeling and Optimization of Pressure Swing Adsorption (PSA) Processes for Post-combustion CO₂ Capture from Flue Gas
14. Joule Thomson Effect in a Two-dimensional Multi-component Radial Crossflow Hollow Fiber Membrane Applied for CO₂ Capture in Natural Gas Sweetening
15. The Challenge of Reducing the Size of an Absorber Using a Rotating Packed Bed
Section 3: Process Operation and Control
16. Plantwide Design and Operation of CO₂ Capture Using Chemical Absorption
17. Multi-period Design of Carbon Capture Systems for Flexible Operation
18. Improved Design and Operation of Post-combustion CO₂ Capture Processes with Process Modelling
19. Advanced Control Strategies for IGCC Plants with Membrane Reactors for CO₂ Capture
20. An Integration Framework for CO₂ Capture Processes
21. Operability Analysis in Solvent-based Post-combustion CO₂ Capture Plants
22. Process Systems Engineering for Optimal Design and Operation of Oxycombustion
23. Energy Integration of Processes for Solid Looping CO₂ Capture Systems
24. Process Simulation of a Dual-stage Selexol Process for Pre-combustion Carbon Capture at an Integrated Gasification Combined Cycle Power Plant
25. Optimized Lignite-fired Power Plants with Post-combustion CO₂ Capture
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Athanasios I Papadopoulos,Panos Seferlis,Process Systems,Materials,Capture Modelling,Design Control,Integration