ISSN: 2469-9764

Industrial Chemistry
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  • Mini Review   
  • Ind Chem,
  • DOI: 10.4172/2469-9764.1000256

Overcoming the Divide: A Comprehensive Assessment of Oxy-Coal Combustion Simulation at Semi-Industrial Level

Michael Müller*
Institute of Combustion and Power Plant Technology (IFK), University of Stuttgart, Germany
*Corresponding Author : Michael Müller, Institute of Combustion and Power Plant Technology (IFK), University of Stuttgart, Germany, Email: michaell@ifk.uniunistuttgart.de

Received Date: Nov 01, 2023 / Published Date: Nov 30, 2023

Abstract

Oxy-coal combustion has emerged as a forefront technology in the pursuit of cleaner energy, offering the potential for efficient carbon capture and storage. This article delves into the intricate realm of oxy-coal combustion modeling, specifically focusing on a semi-industrial scale. Through a meticulous evaluation of computational models against realworld data, we seek to assess the efficacy of these models in capturing the complexities inherent in semi-industrial oxy-coal combustion processes. This comprehensive examination not only refines theoretical frameworks but also provides crucial insights for optimizing oxy-coal combustion systems at a scale that mirrors practical applications [1].

Citation: Müller M (2023) Overcoming the Divide: A Comprehensive Assessmentof Oxy-Coal Combustion Simulation at Semi-Industrial Level. Ind Chem, 9: 256. Doi: 10.4172/2469-9764.1000256

Copyright: © 2023 Müller M. This is an open-access article distributed under theterms of the Creative Commons Attribution License, which permits unrestricteduse, distribution, and reproduction in any medium, provided the original author andsource are credited.

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