Degradation of chemical oxygen demand, suspended solids and ammoniacal nitrogen from sewage by sweet potato peel coagulant under the influence of pH

Coagulation is a common treatment stage included in conventional sewage treatment. Various chemical, synthetic and natural coagulants in the form of single, dual and composite were applied in this treatment stage. However, the application of natural coagulants made from food waste is still uncommon....

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Main Authors: Nur Shaylinda, Mohd Zin, Jismi, N M M N, Nazari, A N A, Akbar, N A, Mohd Fakhrurrazi, Ishak, Talib, S H A, Mohd-Salleh, S N A
Format: Conference or Workshop Item
Language:English
Published: IOP Publishing Ltd. 2024
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/42452/1/Degradation%20of%20chemical%20oxygen%20demand%202024.pdf
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author Nur Shaylinda, Mohd Zin
Jismi, N M M N
Nazari, A N A
Akbar, N A
Mohd Fakhrurrazi, Ishak
Talib, S H A
Mohd-Salleh, S N A
author_facet Nur Shaylinda, Mohd Zin
Jismi, N M M N
Nazari, A N A
Akbar, N A
Mohd Fakhrurrazi, Ishak
Talib, S H A
Mohd-Salleh, S N A
author_sort Nur Shaylinda, Mohd Zin
collection UMP
description Coagulation is a common treatment stage included in conventional sewage treatment. Various chemical, synthetic and natural coagulants in the form of single, dual and composite were applied in this treatment stage. However, the application of natural coagulants made from food waste is still uncommon. Thus, this study compares the ability of sweet potato peel as a composite coagulant (PACSPP), dual coagulant (PAC+SPP) and single coagulant (SPP) under the influence of pH in removing chemical oxygen demand (COD), suspended solids (SS) and ammoniacal nitrogen (AN) from sewage wastewater. Raw sewage sample before primary treatment was collected from University Tun Hussein Onn Sewage Treatment plant by using grab sampling method. Optimization study was conducted by using jar tester. At the optimum condition of PACSPP (pH 7), the percentage removal of COD, SS and AN was 54%, 95% and 39%. While a single SPP coagulant, at its optimal pH of 9, achieved 24%, 16% and 17% removals of COD, SS and AN, respectively. Meanwhile, optimisation of dual coagulant (pH 9) demonstrated 39%, 73% and 42% removals of COD, SS and AN, respectively. Thus, SPP, as a composite coagulant, outperformed the dual and single coagulant of SPP.
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spelling UMPir424522024-09-03T00:31:15Z http://umpir.ump.edu.my/id/eprint/42452/ Degradation of chemical oxygen demand, suspended solids and ammoniacal nitrogen from sewage by sweet potato peel coagulant under the influence of pH Nur Shaylinda, Mohd Zin Jismi, N M M N Nazari, A N A Akbar, N A Mohd Fakhrurrazi, Ishak Talib, S H A Mohd-Salleh, S N A TA Engineering (General). Civil engineering (General) Coagulation is a common treatment stage included in conventional sewage treatment. Various chemical, synthetic and natural coagulants in the form of single, dual and composite were applied in this treatment stage. However, the application of natural coagulants made from food waste is still uncommon. Thus, this study compares the ability of sweet potato peel as a composite coagulant (PACSPP), dual coagulant (PAC+SPP) and single coagulant (SPP) under the influence of pH in removing chemical oxygen demand (COD), suspended solids (SS) and ammoniacal nitrogen (AN) from sewage wastewater. Raw sewage sample before primary treatment was collected from University Tun Hussein Onn Sewage Treatment plant by using grab sampling method. Optimization study was conducted by using jar tester. At the optimum condition of PACSPP (pH 7), the percentage removal of COD, SS and AN was 54%, 95% and 39%. While a single SPP coagulant, at its optimal pH of 9, achieved 24%, 16% and 17% removals of COD, SS and AN, respectively. Meanwhile, optimisation of dual coagulant (pH 9) demonstrated 39%, 73% and 42% removals of COD, SS and AN, respectively. Thus, SPP, as a composite coagulant, outperformed the dual and single coagulant of SPP. IOP Publishing Ltd. 2024 Conference or Workshop Item PeerReviewed pdf en cc_by_4 http://umpir.ump.edu.my/id/eprint/42452/1/Degradation%20of%20chemical%20oxygen%20demand%202024.pdf Nur Shaylinda, Mohd Zin and Jismi, N M M N and Nazari, A N A and Akbar, N A and Mohd Fakhrurrazi, Ishak and Talib, S H A and Mohd-Salleh, S N A (2024) Degradation of chemical oxygen demand, suspended solids and ammoniacal nitrogen from sewage by sweet potato peel coagulant under the influence of pH. In: IOP Conference Series: Earth and Environmental Science. 7th International Conference on Civil and Environmental Engineering for Sustainability, IConCEES 2023 , 9 - 10 October 2023 , Kuala Lumpur. pp. 1-6., 1347 (1). ISSN 1755-1307 (Published) https://doi.org/10.1088/1755-1315/1347/1/012022
spellingShingle TA Engineering (General). Civil engineering (General)
Nur Shaylinda, Mohd Zin
Jismi, N M M N
Nazari, A N A
Akbar, N A
Mohd Fakhrurrazi, Ishak
Talib, S H A
Mohd-Salleh, S N A
Degradation of chemical oxygen demand, suspended solids and ammoniacal nitrogen from sewage by sweet potato peel coagulant under the influence of pH
title Degradation of chemical oxygen demand, suspended solids and ammoniacal nitrogen from sewage by sweet potato peel coagulant under the influence of pH
title_full Degradation of chemical oxygen demand, suspended solids and ammoniacal nitrogen from sewage by sweet potato peel coagulant under the influence of pH
title_fullStr Degradation of chemical oxygen demand, suspended solids and ammoniacal nitrogen from sewage by sweet potato peel coagulant under the influence of pH
title_full_unstemmed Degradation of chemical oxygen demand, suspended solids and ammoniacal nitrogen from sewage by sweet potato peel coagulant under the influence of pH
title_short Degradation of chemical oxygen demand, suspended solids and ammoniacal nitrogen from sewage by sweet potato peel coagulant under the influence of pH
title_sort degradation of chemical oxygen demand suspended solids and ammoniacal nitrogen from sewage by sweet potato peel coagulant under the influence of ph
topic TA Engineering (General). Civil engineering (General)
url http://umpir.ump.edu.my/id/eprint/42452/1/Degradation%20of%20chemical%20oxygen%20demand%202024.pdf
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