Kinetics Study of Oxidative Desulfurization of Real Diesel Fuel Over Uncoated and Coated Nano-catalysts in an Oscillatory Helical Baffled Reactor

The oxidative desulfurization (ODS) of real diesel fuel (RDF) was evaluated in a modified design oscillatory helical baffled reactor (OHBR). Peracetic acid was produced from hydrogen peroxide and acetic acid and used as an oxidant. Following that, a new design was made using nano-catalyst (uncoated...

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Main Authors: Amer Nawaf, Basma Abdul Majeed
Format: Article
Language:English
Published: University of Tehran 2024-12-01
Series:Journal of Chemical and Petroleum Engineering
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Online Access:https://jchpe.ut.ac.ir/article_98554_d82eea5c137d17565ec392875331b633.pdf
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author Amer Nawaf
Basma Abdul Majeed
author_facet Amer Nawaf
Basma Abdul Majeed
author_sort Amer Nawaf
collection DOAJ
description The oxidative desulfurization (ODS) of real diesel fuel (RDF) was evaluated in a modified design oscillatory helical baffled reactor (OHBR). Peracetic acid was produced from hydrogen peroxide and acetic acid and used as an oxidant. Following that, a new design was made using nano-catalyst (uncoated and coated). The experimental work of the oxidative desulfurization process was utilized in an oscillatory helical baffled reactor under moderate conditions: residence times 3-9 min, oxidation temperatures 50-80 ℃, amplitude of oscillation 2-8 mm, and frequency of oscillation 0.5-2 min with 0.4 g of nano-catalyst with constant pressure. The optimal conversion of sulfur was 98.42% for the uncoated catalyst and 96.57% for the coated catalyst under 80 ℃, 8 mm, and 2.5 Hz. The purpose of this manuscript is to determine the ODS kinetic parameters and sulfur compound concentration profile in RDF. The model developed was according to the properties of the real diesel fuel, types of nano-catalysts, and operation conditions inside the OHBR based on the experimental observations. The optimal kinetic model and the half-life period of the nano-composites for the pertinent reactions have also been examined. This study also estimates the best kinetic model parameters of the oxidation reactions using the pseudo-first-order technique, which is based on the experimental data.
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publishDate 2024-12-01
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series Journal of Chemical and Petroleum Engineering
spelling doaj-art-4a934fcc7b064836b6797179391d30732025-01-21T14:29:49ZengUniversity of TehranJournal of Chemical and Petroleum Engineering2423-673X2423-67212024-12-0158235937410.22059/jchpe.2024.377539.152298554Kinetics Study of Oxidative Desulfurization of Real Diesel Fuel Over Uncoated and Coated Nano-catalysts in an Oscillatory Helical Baffled ReactorAmer Nawaf0Basma Abdul Majeed1College of Petroleum Process Engineering, Tikrit University, Iraq.Department of chemical engineering, College of engineering, University of Baghdad, Baghdad, Iraq.The oxidative desulfurization (ODS) of real diesel fuel (RDF) was evaluated in a modified design oscillatory helical baffled reactor (OHBR). Peracetic acid was produced from hydrogen peroxide and acetic acid and used as an oxidant. Following that, a new design was made using nano-catalyst (uncoated and coated). The experimental work of the oxidative desulfurization process was utilized in an oscillatory helical baffled reactor under moderate conditions: residence times 3-9 min, oxidation temperatures 50-80 ℃, amplitude of oscillation 2-8 mm, and frequency of oscillation 0.5-2 min with 0.4 g of nano-catalyst with constant pressure. The optimal conversion of sulfur was 98.42% for the uncoated catalyst and 96.57% for the coated catalyst under 80 ℃, 8 mm, and 2.5 Hz. The purpose of this manuscript is to determine the ODS kinetic parameters and sulfur compound concentration profile in RDF. The model developed was according to the properties of the real diesel fuel, types of nano-catalysts, and operation conditions inside the OHBR based on the experimental observations. The optimal kinetic model and the half-life period of the nano-composites for the pertinent reactions have also been examined. This study also estimates the best kinetic model parameters of the oxidation reactions using the pseudo-first-order technique, which is based on the experimental data.https://jchpe.ut.ac.ir/article_98554_d82eea5c137d17565ec392875331b633.pdfmathematical modelperacetic acidoscillatory baffled reactoroxidative desulfurization
spellingShingle Amer Nawaf
Basma Abdul Majeed
Kinetics Study of Oxidative Desulfurization of Real Diesel Fuel Over Uncoated and Coated Nano-catalysts in an Oscillatory Helical Baffled Reactor
Journal of Chemical and Petroleum Engineering
mathematical model
peracetic acid
oscillatory baffled reactor
oxidative desulfurization
title Kinetics Study of Oxidative Desulfurization of Real Diesel Fuel Over Uncoated and Coated Nano-catalysts in an Oscillatory Helical Baffled Reactor
title_full Kinetics Study of Oxidative Desulfurization of Real Diesel Fuel Over Uncoated and Coated Nano-catalysts in an Oscillatory Helical Baffled Reactor
title_fullStr Kinetics Study of Oxidative Desulfurization of Real Diesel Fuel Over Uncoated and Coated Nano-catalysts in an Oscillatory Helical Baffled Reactor
title_full_unstemmed Kinetics Study of Oxidative Desulfurization of Real Diesel Fuel Over Uncoated and Coated Nano-catalysts in an Oscillatory Helical Baffled Reactor
title_short Kinetics Study of Oxidative Desulfurization of Real Diesel Fuel Over Uncoated and Coated Nano-catalysts in an Oscillatory Helical Baffled Reactor
title_sort kinetics study of oxidative desulfurization of real diesel fuel over uncoated and coated nano catalysts in an oscillatory helical baffled reactor
topic mathematical model
peracetic acid
oscillatory baffled reactor
oxidative desulfurization
url https://jchpe.ut.ac.ir/article_98554_d82eea5c137d17565ec392875331b633.pdf
work_keys_str_mv AT amernawaf kineticsstudyofoxidativedesulfurizationofrealdieselfueloveruncoatedandcoatednanocatalystsinanoscillatoryhelicalbaffledreactor
AT basmaabdulmajeed kineticsstudyofoxidativedesulfurizationofrealdieselfueloveruncoatedandcoatednanocatalystsinanoscillatoryhelicalbaffledreactor