Investigation of Oxy-Fuel Combustion through Reactor Network and Residence Time Data

Author:

Agizza Maria AngelaORCID,Bagheri GhobadORCID,Bürkle Sebastian,Faravelli Tiziano,Wagner StevenORCID,Dreizler Andreas

Abstract

Oxy-fuel combustion is a promising strategy to minimize the environmental impact of combustion-based energy conversion. Simple and flexible tools are required to facilitate the successful integration of such strategies at the industrial level. This study couples measured residence time distribution with chemical reactor network analysis in a close-to-reality combustor. This provides detailed knowledge about the various mixing and reactive characteristics arising from the use of the two different oxidizing streams.

Funder

CRC/Transregio 129 Oxy-flame

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous)

Reference65 articles.

1. Energy and Air Pollution,2016

2. World Energy Outlook 2020,2020

3. Natural Gas-Fired Power,2020

4. Comprehensive kinetic study of combustion technologies for low environmental impact: MILD and OXY-fuel combustion of methane

5. Carbon Capture and Storage,2005

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