Sulfur Dioxide Removal in Coal Slurry Reactor

The objective of this work was to study the feasibility of using coalslurry for the removal of SO2 from simulated flue gas stream (air,SO2). The effect of gas rate, temperature, and initial SO2concentration on the overall removal efficiency was investigated atwet and dry bed conditions. The results...

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Main Authors: Neran K. Ibrahim, Zainab A. Jawad
Format: Article
Language:English
Published: Unviversity of Technology- Iraq 2008-04-01
Series:Engineering and Technology Journal
Subjects:
Online Access:https://etj.uotechnology.edu.iq/article_26467_648b95902800375677196dd107522d55.pdf
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author Neran K. Ibrahim
Zainab A. Jawad
author_facet Neran K. Ibrahim
Zainab A. Jawad
author_sort Neran K. Ibrahim
collection DOAJ
description The objective of this work was to study the feasibility of using coalslurry for the removal of SO2 from simulated flue gas stream (air,SO2). The effect of gas rate, temperature, and initial SO2concentration on the overall removal efficiency was investigated atwet and dry bed conditions. The results indicated that the optimumgas rate was 60 l /min. The SO2 removal efficiency was highlytemperature sensitive, and increases with increasing the bedtemperature especially at wet bed conditions and decreases withincreasing SO2 initial concentration. A mathematical model for thedesulfurization process was proposed based on the material balancefor gaseous and solid phase streams. The model was found to give avery good description of the experimental data with 95% confidencelevel.
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spelling doaj.art-19ec0166fdc54dd383d502f023b619212024-02-04T17:53:53ZengUnviversity of Technology- IraqEngineering and Technology Journal1681-69002412-07582008-04-0126446247710.30684/etj.29.4.826467Sulfur Dioxide Removal in Coal Slurry ReactorNeran K. IbrahimZainab A. JawadThe objective of this work was to study the feasibility of using coalslurry for the removal of SO2 from simulated flue gas stream (air,SO2). The effect of gas rate, temperature, and initial SO2concentration on the overall removal efficiency was investigated atwet and dry bed conditions. The results indicated that the optimumgas rate was 60 l /min. The SO2 removal efficiency was highlytemperature sensitive, and increases with increasing the bedtemperature especially at wet bed conditions and decreases withincreasing SO2 initial concentration. A mathematical model for thedesulfurization process was proposed based on the material balancefor gaseous and solid phase streams. The model was found to give avery good description of the experimental data with 95% confidencelevel.https://etj.uotechnology.edu.iq/article_26467_648b95902800375677196dd107522d55.pdfremovalcoal slurry reactorfgdmodeling
spellingShingle Neran K. Ibrahim
Zainab A. Jawad
Sulfur Dioxide Removal in Coal Slurry Reactor
Engineering and Technology Journal
removal
coal slurry reactor
fgd
modeling
title Sulfur Dioxide Removal in Coal Slurry Reactor
title_full Sulfur Dioxide Removal in Coal Slurry Reactor
title_fullStr Sulfur Dioxide Removal in Coal Slurry Reactor
title_full_unstemmed Sulfur Dioxide Removal in Coal Slurry Reactor
title_short Sulfur Dioxide Removal in Coal Slurry Reactor
title_sort sulfur dioxide removal in coal slurry reactor
topic removal
coal slurry reactor
fgd
modeling
url https://etj.uotechnology.edu.iq/article_26467_648b95902800375677196dd107522d55.pdf
work_keys_str_mv AT nerankibrahim sulfurdioxideremovalincoalslurryreactor
AT zainabajawad sulfurdioxideremovalincoalslurryreactor