Modeling sulfur-Nitrogen chemistry indside a claus reaction furnace

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Publication Type report
School or College College of Engineering
Department Chemical and Biochemical Engineering
Research Institute American Flame Research Committee (AFRC)
Author Smith, Joseph
Other Author Ahti Suo-Anttila; Vikram Sreedharan; Zach Smith
Title Modeling sulfur-Nitrogen chemistry indside a claus reaction furnace
Description This paper describes a CFD analysis of a Sulfur Recovery Unit (SRU) considering transient turbulent reacting flow inside the SRU. Often, the SRU feedstock includes hydrocarbons together with nitrogen and sulfur species, which react with oxygen in the air to form various emissions including SO2, NH3 and NO2. This work used an LES based CFD code (C3d) to analyze the SRU performance for various feed conditions. This work includes detailed chemical reactions with transient fluid mixing to provide time-accurate results. The complex SRU reaction chemistry described by Ibrahim, et.al. 2020 [1] was simplified based on previous work by Sebbar et.al. (2018) [2] and Andoglu, et.al. (2019) [3] to integrate detailed kinetics with transient fluid flow. Since the SRU feedstock involves hydrocarbons reacting with air, a previously validated C3d combustion model accurately describes the hydrocarbon-oxygen chemistry.
Type Text
Publisher American Flame Research Committee (AFRC)
Language eng
Conference Title American Flame Research Committee (AFRC)
Rights Management (c) Joseph Smith
Format Medium application/pdf
ARK ark:/87278/s64takes
Setname ir_eua
ID 2098096
Reference URL https://collections.lib.utah.edu/ark:/87278/s64takes
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