Comparative study for activation of hydorgen peroxide by chemical reagents (Fe2+, Al3+) to reduce chemical oxygen demand in petrochemical wastewater

Environmental pollution by toxic compounds is gaining wider concern in modern developed society. The petroleum refining industry produces a large amount of wastewater due to the amount of water used in refining the processes, particularly for cooling systems and lead to increasing wastewater that wi...

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Main Authors: Bala, M.S., Abdul Aziz, Mohd Azoddein, Ahdash, M.I., Alshwal, B.Y.
Format: Article
Language:English
Published: Malaysian Technical Universities Network (MTUN) 2018
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Online Access:http://umpir.ump.edu.my/id/eprint/31442/1/COMPARATIVE%20STUDY%20FOR%20ACTIVATION%20OF%20%20%20HYDROGEN%20PEROXIDE%20BY%20CHEMICAL%20REAGENTS.pdf
http://umpir.ump.edu.my/id/eprint/31442/
https://journal.utem.edu.my/index.php/jet/article/view/1681/COMPARATIVE%20STUDY%20FOR%20ACTIVATION%20OF%20HYDROGEN%20PEROXIDE
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spelling my.ump.umpir.314422021-09-17T06:21:57Z http://umpir.ump.edu.my/id/eprint/31442/ Comparative study for activation of hydorgen peroxide by chemical reagents (Fe2+, Al3+) to reduce chemical oxygen demand in petrochemical wastewater Bala, M.S. Abdul Aziz, Mohd Azoddein Ahdash, M.I. Alshwal, B.Y. TP Chemical technology Environmental pollution by toxic compounds is gaining wider concern in modern developed society. The petroleum refining industry produces a large amount of wastewater due to the amount of water used in refining the processes, particularly for cooling systems and lead to increasing wastewater that will impact the environment. The aim of this research is to reduce chemical oxygen demand (COD) in petrochemical wastewater by activation of hydrogen peroxide using two different reagents (Fe2+, Al3+). In this research was compared several parameters to COD removals such as the effects of concentration / dosage of H2O2, concentration, and dosages of Al2(SO4)3 and concentration and dosages of FeSO4 on the removal efficiency of COD. In this study is proven the effect of Fenton’s reagent process besides the dosage between hydrogen peroxide (H2O2) and ferrous ion (Fe2+) in the reagent that Fenton process was highly efficient to decrease COD and total suspended solid (TSS) reduction. However, addition of aluminium with hydrogen peroxide does not have any effect to remove COD. The result found that overall removal was achieved by 70% in term of COD, and 88 % in term of TSS using Fenton’s reagent process. Malaysian Technical Universities Network (MTUN) 2018-07 Article PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/31442/1/COMPARATIVE%20STUDY%20FOR%20ACTIVATION%20OF%20%20%20HYDROGEN%20PEROXIDE%20BY%20CHEMICAL%20REAGENTS.pdf Bala, M.S. and Abdul Aziz, Mohd Azoddein and Ahdash, M.I. and Alshwal, B.Y. (2018) Comparative study for activation of hydorgen peroxide by chemical reagents (Fe2+, Al3+) to reduce chemical oxygen demand in petrochemical wastewater. Journal of Engineering and Technology, 9 (2). pp. 1-12. ISSN 2180-3811 (print); 2289-814X (online) https://journal.utem.edu.my/index.php/jet/article/view/1681/COMPARATIVE%20STUDY%20FOR%20ACTIVATION%20OF%20HYDROGEN%20PEROXIDE
institution Universiti Malaysia Pahang
building UMP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Pahang
content_source UMP Institutional Repository
url_provider http://umpir.ump.edu.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Bala, M.S.
Abdul Aziz, Mohd Azoddein
Ahdash, M.I.
Alshwal, B.Y.
Comparative study for activation of hydorgen peroxide by chemical reagents (Fe2+, Al3+) to reduce chemical oxygen demand in petrochemical wastewater
description Environmental pollution by toxic compounds is gaining wider concern in modern developed society. The petroleum refining industry produces a large amount of wastewater due to the amount of water used in refining the processes, particularly for cooling systems and lead to increasing wastewater that will impact the environment. The aim of this research is to reduce chemical oxygen demand (COD) in petrochemical wastewater by activation of hydrogen peroxide using two different reagents (Fe2+, Al3+). In this research was compared several parameters to COD removals such as the effects of concentration / dosage of H2O2, concentration, and dosages of Al2(SO4)3 and concentration and dosages of FeSO4 on the removal efficiency of COD. In this study is proven the effect of Fenton’s reagent process besides the dosage between hydrogen peroxide (H2O2) and ferrous ion (Fe2+) in the reagent that Fenton process was highly efficient to decrease COD and total suspended solid (TSS) reduction. However, addition of aluminium with hydrogen peroxide does not have any effect to remove COD. The result found that overall removal was achieved by 70% in term of COD, and 88 % in term of TSS using Fenton’s reagent process.
format Article
author Bala, M.S.
Abdul Aziz, Mohd Azoddein
Ahdash, M.I.
Alshwal, B.Y.
author_facet Bala, M.S.
Abdul Aziz, Mohd Azoddein
Ahdash, M.I.
Alshwal, B.Y.
author_sort Bala, M.S.
title Comparative study for activation of hydorgen peroxide by chemical reagents (Fe2+, Al3+) to reduce chemical oxygen demand in petrochemical wastewater
title_short Comparative study for activation of hydorgen peroxide by chemical reagents (Fe2+, Al3+) to reduce chemical oxygen demand in petrochemical wastewater
title_full Comparative study for activation of hydorgen peroxide by chemical reagents (Fe2+, Al3+) to reduce chemical oxygen demand in petrochemical wastewater
title_fullStr Comparative study for activation of hydorgen peroxide by chemical reagents (Fe2+, Al3+) to reduce chemical oxygen demand in petrochemical wastewater
title_full_unstemmed Comparative study for activation of hydorgen peroxide by chemical reagents (Fe2+, Al3+) to reduce chemical oxygen demand in petrochemical wastewater
title_sort comparative study for activation of hydorgen peroxide by chemical reagents (fe2+, al3+) to reduce chemical oxygen demand in petrochemical wastewater
publisher Malaysian Technical Universities Network (MTUN)
publishDate 2018
url http://umpir.ump.edu.my/id/eprint/31442/1/COMPARATIVE%20STUDY%20FOR%20ACTIVATION%20OF%20%20%20HYDROGEN%20PEROXIDE%20BY%20CHEMICAL%20REAGENTS.pdf
http://umpir.ump.edu.my/id/eprint/31442/
https://journal.utem.edu.my/index.php/jet/article/view/1681/COMPARATIVE%20STUDY%20FOR%20ACTIVATION%20OF%20HYDROGEN%20PEROXIDE
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score 13.160551