FIXED-BED ADSORPTION OF CONGO RED ONTO TEA WASTE IN THE PRESENCE OF Fe2O3 NANOPARTICLES: AN EXPERIMENTAL AND MODELING STUDY

In this study, tea waste (TW) is employed for the removal of Congo red (CR) from aqueous solutions in a fixed-bed column at 30 °C. The breakthrough curves of the adsorption process of CR on TW at three different flow rates are determined. The results revealed that the breakthrough curves were depend...

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Format: Article
Language:English
Published: Reaserch Institute of Petroleum Industry 2013-10-01
Series:Journal of Petroleum Science and Technology
Subjects:
Online Access:https://jpst.ripi.ir/article_304_ad1dc5332ea39e990c3d66ea0382f86d.pdf
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spelling doaj-5ac772a839a94b35aca3e98c2628711a2020-11-25T02:53:17ZengReaserch Institute of Petroleum IndustryJournal of Petroleum Science and Technology2251-659X2645-33122013-10-0132354410.22078/jpst.2013.304304FIXED-BED ADSORPTION OF CONGO RED ONTO TEA WASTE IN THE PRESENCE OF Fe2O3 NANOPARTICLES: AN EXPERIMENTAL AND MODELING STUDYIn this study, tea waste (TW) is employed for the removal of Congo red (CR) from aqueous solutions in a fixed-bed column at 30 °C. The breakthrough curves of the adsorption process of CR on TW at three different flow rates are determined. The results revealed that the breakthrough curves were dependent on flow rates in a manner in which a lower flow rate was in favor of the CR adsorption in the column-mode process. As the flow rate increased from 4.6 to 6.6 mL/min, the amount of dye uptake capacity decreased from 1.78 to 1.53 mg/g. The effect of the presence of Fe<sub>2</sub>O<sub>3</sub> on the adsorption of CR on TW is also studied at 30 °C. The results showed that the presence of nanoparticles increased the adsorption uptake of CR by about 32%. Moreover, four novel models are developed for the prediction of the breakthrough curves resulted from the experimental data. The results of the models were in good agreement with experimental data (<em>R</em><sup>2</sup>>0.99). The statistical parameters confirm the suitability of the models.https://jpst.ripi.ir/article_304_ad1dc5332ea39e990c3d66ea0382f86d.pdftea wastecongo redadsorptionfixed-bed columnbreakthrough modelingfe2o3 nanoparticles
collection DOAJ
language English
format Article
sources DOAJ
title FIXED-BED ADSORPTION OF CONGO RED ONTO TEA WASTE IN THE PRESENCE OF Fe2O3 NANOPARTICLES: AN EXPERIMENTAL AND MODELING STUDY
spellingShingle FIXED-BED ADSORPTION OF CONGO RED ONTO TEA WASTE IN THE PRESENCE OF Fe2O3 NANOPARTICLES: AN EXPERIMENTAL AND MODELING STUDY
Journal of Petroleum Science and Technology
tea waste
congo red
adsorption
fixed-bed column
breakthrough modeling
fe2o3 nanoparticles
title_short FIXED-BED ADSORPTION OF CONGO RED ONTO TEA WASTE IN THE PRESENCE OF Fe2O3 NANOPARTICLES: AN EXPERIMENTAL AND MODELING STUDY
title_full FIXED-BED ADSORPTION OF CONGO RED ONTO TEA WASTE IN THE PRESENCE OF Fe2O3 NANOPARTICLES: AN EXPERIMENTAL AND MODELING STUDY
title_fullStr FIXED-BED ADSORPTION OF CONGO RED ONTO TEA WASTE IN THE PRESENCE OF Fe2O3 NANOPARTICLES: AN EXPERIMENTAL AND MODELING STUDY
title_full_unstemmed FIXED-BED ADSORPTION OF CONGO RED ONTO TEA WASTE IN THE PRESENCE OF Fe2O3 NANOPARTICLES: AN EXPERIMENTAL AND MODELING STUDY
title_sort fixed-bed adsorption of congo red onto tea waste in the presence of fe2o3 nanoparticles: an experimental and modeling study
publisher Reaserch Institute of Petroleum Industry
series Journal of Petroleum Science and Technology
issn 2251-659X
2645-3312
publishDate 2013-10-01
description In this study, tea waste (TW) is employed for the removal of Congo red (CR) from aqueous solutions in a fixed-bed column at 30 °C. The breakthrough curves of the adsorption process of CR on TW at three different flow rates are determined. The results revealed that the breakthrough curves were dependent on flow rates in a manner in which a lower flow rate was in favor of the CR adsorption in the column-mode process. As the flow rate increased from 4.6 to 6.6 mL/min, the amount of dye uptake capacity decreased from 1.78 to 1.53 mg/g. The effect of the presence of Fe<sub>2</sub>O<sub>3</sub> on the adsorption of CR on TW is also studied at 30 °C. The results showed that the presence of nanoparticles increased the adsorption uptake of CR by about 32%. Moreover, four novel models are developed for the prediction of the breakthrough curves resulted from the experimental data. The results of the models were in good agreement with experimental data (<em>R</em><sup>2</sup>>0.99). The statistical parameters confirm the suitability of the models.
topic tea waste
congo red
adsorption
fixed-bed column
breakthrough modeling
fe2o3 nanoparticles
url https://jpst.ripi.ir/article_304_ad1dc5332ea39e990c3d66ea0382f86d.pdf
_version_ 1724725598648008704