Oxyfuel Combustion for Clean Energy Applications

This book PDF is perfect for those who love Technology & Engineering genre, written by Medhat A. Nemitallah and published by Springer which was released on 11 February 2019 with total hardcover pages 378. You could read this book directly on your devices with pdf, epub and kindle format, check detail and related Oxyfuel Combustion for Clean Energy Applications books below.

Oxyfuel Combustion for Clean Energy Applications
Author : Medhat A. Nemitallah
File Size : 52,7 Mb
Publisher : Springer
Language : English
Release Date : 11 February 2019
ISBN : 9783030105884
Pages : 378 pages
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Oxyfuel Combustion for Clean Energy Applications by Medhat A. Nemitallah Book PDF Summary

This book aims to be the reference book in the area of oxyfuel combustion, covering the fundamentals, design considerations and current challenges in the field. Its first part provides an overview of the greenhouse gas emission problem and the current carbon capture and sequestration technologies. The second part introduces oxy-fuel combustion technologies with emphasis on system efficiency, combustion and emission characteristics, applications and related challenges. The third part focuses on the recent developments in ion transport membranes and their performance in both oxygen separation units and oxygen transport reactors (OTRs). The fourth part presents novel approaches for clean combustion in gas turbines and boilers. Computational modelling and optimization of combustion in gas turbine combustors and boiler furnaces are presented in the fifth part with some numerical results and detailed analyses.

Oxyfuel Combustion for Clean Energy Applications

This book aims to be the reference book in the area of oxyfuel combustion, covering the fundamentals, design considerations and current challenges in the field. Its first part provides an overview of the greenhouse gas emission problem and the current carbon capture and sequestration technologies. The second part introduces oxy-fuel

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Oxy-fuel combustion is currently considered to be one of the major technologies for carbon dioxide (CO2) capture in power plants. The advantages of using oxygen (O2) instead of air for combustion include a CO2-enriched flue gas that is ready for sequestration following purification and low NOx emissions. This simple

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