Application of Photo-Fenton Process for COD Removal from Wastewater Produced from Surfactant-Washed  Oil-Contaminated (TPH) Soils

Backgrounds and Objectives: The base structure of total petroleum hydrocarbons (TPH) is made of hydrogen and carbon. Widespread use, improper disposal and accidental spills of this compounds lead to long term remaining of contaminations such as organic solvents and poly aromatic hydrocarbons (PAHs)...

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Main Authors: Mohammad Reza Mehrasbi, Sorur Safa, Amir Hossein Mahvi, Ali Assadi, Hamed Mohammadi
Format: Article
Language:fas
Published: Tehran University of Medical Sciences 2012-10-01
Series:سلامت و محیط
Subjects:
Online Access:http://ijhe.tums.ac.ir/browse.php?a_code=A-10-25-12&slc_lang=en&sid=1
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spelling doaj-cebe617cc4074c649971aebabe632b2a2021-09-02T10:24:22ZfasTehran University of Medical Sciencesسلامت و محیط2008-20292008-37182012-10-0153295306Application of Photo-Fenton Process for COD Removal from Wastewater Produced from Surfactant-Washed  Oil-Contaminated (TPH) SoilsMohammad Reza MehrasbiSorur SafaAmir Hossein MahviAli AssadiHamed MohammadiBackgrounds and Objectives: The base structure of total petroleum hydrocarbons (TPH) is made of hydrogen and carbon. Widespread use, improper disposal and accidental spills of this compounds lead to long term remaining of contaminations such as organic solvents and poly aromatic hydrocarbons (PAHs) in the soil and groundwater resources, resulting in critical environmental issues. In this study, an oil-contaminated soil was washed using Tween 80 surfactant and the application of photo-Fenton process (UV/Fe2+/H2O2) for treatment of the produced wastewater was evaluated. Materials and Methods: Tween 80 is a yellow liquid with high viscosity and soluble in water. In order to determine of the photo-Fenton process efficiency, we studied effective variables including Fe concentration, pH, H2O2 concentration, and irradiation time. The UV irradiation source was a medium-pressure mercury vapor lamp (400 w) vertically immersed in the solution within 2L volume glass cylindrical reactor.Results: The results showed that efficiency of COD removal depends on the initial Fe concentration, pH, H2O2 concentration and irradiation time. Under optimum conditions, (Fe: 0.1mM, H2O2: 0.43 mM, pH: 3 and UV light irradiation time: 2 hours) the removal efficiency of COD was 67.3%. pH plays a crucial role in the photo-Fenton process such that the removal efficiency increased with decreasing of pH. Conclusion: According to the results of this study, under acidic condition, this process is an efficient method for COD removal from the wastewater studied.http://ijhe.tums.ac.ir/browse.php?a_code=A-10-25-12&slc_lang=en&sid=1Total Petroleum Hydrocarbon (TPH)Tween 80Advanced oxidationUV/Fe2+/H2O2 process
collection DOAJ
language fas
format Article
sources DOAJ
author Mohammad Reza Mehrasbi
Sorur Safa
Amir Hossein Mahvi
Ali Assadi
Hamed Mohammadi
spellingShingle Mohammad Reza Mehrasbi
Sorur Safa
Amir Hossein Mahvi
Ali Assadi
Hamed Mohammadi
Application of Photo-Fenton Process for COD Removal from Wastewater Produced from Surfactant-Washed  Oil-Contaminated (TPH) Soils
سلامت و محیط
Total Petroleum Hydrocarbon (TPH)
Tween 80
Advanced oxidation
UV/Fe2+/H2O2 process
author_facet Mohammad Reza Mehrasbi
Sorur Safa
Amir Hossein Mahvi
Ali Assadi
Hamed Mohammadi
author_sort Mohammad Reza Mehrasbi
title Application of Photo-Fenton Process for COD Removal from Wastewater Produced from Surfactant-Washed  Oil-Contaminated (TPH) Soils
title_short Application of Photo-Fenton Process for COD Removal from Wastewater Produced from Surfactant-Washed  Oil-Contaminated (TPH) Soils
title_full Application of Photo-Fenton Process for COD Removal from Wastewater Produced from Surfactant-Washed  Oil-Contaminated (TPH) Soils
title_fullStr Application of Photo-Fenton Process for COD Removal from Wastewater Produced from Surfactant-Washed  Oil-Contaminated (TPH) Soils
title_full_unstemmed Application of Photo-Fenton Process for COD Removal from Wastewater Produced from Surfactant-Washed  Oil-Contaminated (TPH) Soils
title_sort application of photo-fenton process for cod removal from wastewater produced from surfactant-washed  oil-contaminated (tph) soils
publisher Tehran University of Medical Sciences
series سلامت و محیط
issn 2008-2029
2008-3718
publishDate 2012-10-01
description Backgrounds and Objectives: The base structure of total petroleum hydrocarbons (TPH) is made of hydrogen and carbon. Widespread use, improper disposal and accidental spills of this compounds lead to long term remaining of contaminations such as organic solvents and poly aromatic hydrocarbons (PAHs) in the soil and groundwater resources, resulting in critical environmental issues. In this study, an oil-contaminated soil was washed using Tween 80 surfactant and the application of photo-Fenton process (UV/Fe2+/H2O2) for treatment of the produced wastewater was evaluated. Materials and Methods: Tween 80 is a yellow liquid with high viscosity and soluble in water. In order to determine of the photo-Fenton process efficiency, we studied effective variables including Fe concentration, pH, H2O2 concentration, and irradiation time. The UV irradiation source was a medium-pressure mercury vapor lamp (400 w) vertically immersed in the solution within 2L volume glass cylindrical reactor.Results: The results showed that efficiency of COD removal depends on the initial Fe concentration, pH, H2O2 concentration and irradiation time. Under optimum conditions, (Fe: 0.1mM, H2O2: 0.43 mM, pH: 3 and UV light irradiation time: 2 hours) the removal efficiency of COD was 67.3%. pH plays a crucial role in the photo-Fenton process such that the removal efficiency increased with decreasing of pH. Conclusion: According to the results of this study, under acidic condition, this process is an efficient method for COD removal from the wastewater studied.
topic Total Petroleum Hydrocarbon (TPH)
Tween 80
Advanced oxidation
UV/Fe2+/H2O2 process
url http://ijhe.tums.ac.ir/browse.php?a_code=A-10-25-12&slc_lang=en&sid=1
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