Advances in Chemical Engineering and Science

Volume 5, Issue 2 (April 2015)

ISSN Print: 2160-0392   ISSN Online: 2160-0406

Google-based Impact Factor: 1.41  Citations  h5-index & Ranking

Optimization of the Degradation of Hydroquinone, Resorcinol and Catechol Using Response Surface Methodology

HTML  XML Download Download as PDF (Size: 2636KB)  PP. 111-120  
DOI: 10.4236/aces.2015.52012    3,559 Downloads   5,269 Views  Citations

ABSTRACT

A clay catalyst (montmorillonite and kaolinite) was prepared and used to degrade three phenolic compounds: hydroquinone, resorcinol and catechol obtained from the treatment the Olive Mill Wastewater (OMW) generated in the production of olive oil. The operating conditions of the degradation of these compounds are optimized by the response surface methodology (RSM) which is an experimental design used in process optimization studies. The results obtained by the catalytic tests and analyses performed by different techniques showed that the modified montmorillonites have very interesting catalytic, structural and textural properties; they are more effective for the catalytic phenolic compound degradation, they present the highest specific surface and they may support iron ions. We also determined the optimal degradation conditions by tracing the response surfaces of each compound; for example, for the catechol, the optimal conditions of degradation at pH 4 are obtained after 120 min at a concentration of H2O2 equal to 0.3 M. Of the three phenolic compounds, the kinetic degradation study revealed that the hydroquinone is the most degraded compound in the least amount of time. Finally, the rate of the catalyst iron ions release in the reaction is lower when the Fe-modified montmorillonites are used.

Share and Cite:

Elboughdiri, N. , Mahjoubi, A. , Shawabkeh, A. , Khasawneh, H. and Jamoussi, B. (2015) Optimization of the Degradation of Hydroquinone, Resorcinol and Catechol Using Response Surface Methodology. Advances in Chemical Engineering and Science, 5, 111-120. doi: 10.4236/aces.2015.52012.

Cited by

[1] Comparative study of dihydroxybenzene isomers degradation and bioelectricity generation using CuO as cathodic catalyst in double chambered microbial fuel cell
Journal of Water …, 2022
[2] Synthesis of morphology-controlled N-doped porous carbon for simultaneous electrochemical sensing of dihydroxybenzene isomers
Microchimica Acta, 2022
[3] Development of a new bioprocess for clean diosgenin production through submerged fermentation of an endophytic fungus
2021
[4] Investigation of methylene blue adsorption from aqueous solution onto ZnO nanoparticles: equilibrium and Box-Behnken optimisation design
2021
[5] Solid-state synthesis and photodegradation property of anatase TiO2 micro-nanopowder by sodium replacement
2021
[6] Heterogeneous sono-photo-Fenton degradation of methyl violet 10B using Fe2O3-Al2O3-Ga2O3 as a new photocatalyst
2020
[7] Iron recovery from acid mine drainage sludge as Fenton source for municipal wastewater treatment
2020
[8] Montmorillonite Nanoclay Interaction with 2-Aminophenol and 2-Nitrophenol
2019
[9] Engineered nanostructured ZnO for water remediation: operational parameters effect, Box–Behnken design optimization and kinetic determinations
2019
[10] Optimization of Acid Orange II Degradation using Fe3-xMnxO4 Catalyst in UV assisted Fenton-like reaction
2019
[11] The Influence of Solution pH on the Kinetics of Resorcinol Electrooxidation (Degradation) on Polycrystalline Platinum
2019
[12] Optimization of solar degradation efficiency of bio-composting leachate using Nd: ZnO nanoparticles
Journal of Photochemistry and Photobiology A: Chemistry, 2018
[13] Biodegradation of γ-Hexachlorocyclohexane by Burkholderia sp. IPL04
Biocatalysis and Agricultural Biotechnology, 2018
[14] Application of Box–Behnken factorial design for parameters optimization of basic dye removal using nano-hematite photo-Fenton tool
Applied Water Science, 2018
[15] Optimization of Ultrasonic-Assisted Extraction by Response Surface Methodology with Maximal Phenolic Yield and Antioxidant Activity from Acer truncatum Leaves
Preprints, 2017
[16] Optimization of Engineering and Process Parameters for Electro-Chemical Treatment of Textile Wastewater
Materials, Energy and Environment Engineering, 2017
[17] Response Surface Methodology Optimization of Ultrasonic-Assisted Extraction of Acer Truncatum Leaves for Maximal Phenolic Yield and Antioxidant Activity
Molecules, 2017
[18] Enhancement of Halophilic Lipase Production by Virgibacillus alimentarius LBU20907 using a Statistical Approach and Scale-Up in a Fermenter
2017
[19] A Comparison of NaOH, Fenton, and Their Combined Pretreatments for Improving Saccharification of Corn Stalks
Energy & Fuels, 2017
[20] Removal of NAPL from columns by oxidation, sparging, surfactant and thermal treatment
Chemosphere, 2017
[21] Optimization of phenol degradation by the microalga Chlorella pyrenoidosa using Plackett–Burman Design and Response Surface Methodology
Bioresource technology, 2016
[22] Kinetic modeling and determination role of sono/photo nanocatalyst-generated radical species on degradation of hydroquinone in aqueous solution
Environmental Science and Pollution Research, 2016
[23] Optimization of endosulfan biodegradation using indigenous bacterial isolate bacillus Aryabhatti through response surface methodology
2016

Copyright © 2024 by authors and Scientific Research Publishing Inc.

Creative Commons License

This work and the related PDF file are licensed under a Creative Commons Attribution 4.0 International License.