Production of natural coagulant from Moringa Oleifera Seed for application in treatment of low turbidity water
This study focused on developing an efficient and cost effective processing technique for Moringa oleifera seeds to produce natural coagulant for use in drinking water treatment. The produced natural coagulant can be used as an alternative to aluminum sulphate and other coagulants and used worldwide...
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Scientific Research
2010
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my.iium.irep.71062021-07-06T01:55:45Z http://irep.iium.edu.my/7106/ Production of natural coagulant from Moringa Oleifera Seed for application in treatment of low turbidity water Muyibi, Suleyman Aremu Ali , Eman N Salleh, Hamzah M. Alam, Md. Zahangir Salleh, Mohd Ramlan M. TD201 Water supply for domestic and industrial purposes This study focused on developing an efficient and cost effective processing technique for Moringa oleifera seeds to produce natural coagulant for use in drinking water treatment. The produced natural coagulant can be used as an alternative to aluminum sulphate and other coagulants and used worldwide for water treatment. This study investigates processing Moringa oleifera seeds to concentrate the bio-active constituents which have coagulation activity. Moringa oleifera seeds were processed for oil extraction using electro thermal soxhlet. Isolation and purification of bio-active constituents using chromatography technique were used to determine the molecular weight of the bio-active constituents. The molecular weight of bio-active constitu-ents found to be in a low molecular weight range of between 1000 – 6500 Dalton. The proposed method to isolate and purify the bio-active constituents was the cross flow filtration method, which produced the natu-ral coagulant with very simple technique (oil extraction; salt extraction; and microfiltration through 0.45 μm). The turbidity removal was up to 96.23 % using 0.4 mg/L of processed Moringa oleifera seeds to treat low initial turbidity river water between 34-36 Nephelometric Turbidity Units (NTU) without any additives. The microfiltration method is considered to be a practical method which needs no chemicals to be added com-pared to other researchers proposed methods. The natural coagulant produced was used with low dosages to get high turbidity removal which considered to be a breakthrough in this study and recommended to be scaled up for industry level. The product is commercially valuable at the same time it is minimizing the cost of water treatment. Scientific Research 2010-03 Article PeerReviewed application/pdf en http://irep.iium.edu.my/7106/1/SrEmanJWRP.pdf Muyibi, Suleyman Aremu and Ali , Eman N and Salleh, Hamzah M. and Alam, Md. Zahangir and Salleh, Mohd Ramlan M. (2010) Production of natural coagulant from Moringa Oleifera Seed for application in treatment of low turbidity water. Journal of Water Resource and Protection, 2. pp. 259-266. ISSN 1945-3108 (o) 1945-3094 http://www.scirp.org/journal/jwarp |
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TD201 Water supply for domestic and industrial purposes Muyibi, Suleyman Aremu Ali , Eman N Salleh, Hamzah M. Alam, Md. Zahangir Salleh, Mohd Ramlan M. Production of natural coagulant from Moringa Oleifera Seed for application in treatment of low turbidity water |
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This study focused on developing an efficient and cost effective processing technique for Moringa oleifera seeds to produce natural coagulant for use in drinking water treatment. The produced natural coagulant can be used as an alternative to aluminum sulphate and other coagulants and used worldwide for water treatment. This study investigates processing Moringa oleifera seeds to concentrate the bio-active constituents which have coagulation activity. Moringa oleifera seeds were processed for oil extraction using electro thermal soxhlet. Isolation and purification of bio-active constituents using chromatography technique were used to determine the molecular weight of the bio-active constituents. The molecular weight of bio-active constitu-ents found to be in a low molecular weight range of between 1000 – 6500 Dalton. The proposed method to isolate and purify the bio-active constituents was the cross flow filtration method, which produced the natu-ral coagulant with very simple technique (oil extraction; salt extraction; and microfiltration through 0.45 μm). The turbidity removal was up to 96.23 % using 0.4 mg/L of processed Moringa oleifera seeds to treat low initial turbidity river water between 34-36 Nephelometric Turbidity Units (NTU) without any additives. The microfiltration method is considered to be a practical method which needs no chemicals to be added com-pared to other researchers proposed methods. The natural coagulant produced was used with low dosages to get high turbidity removal which considered to be a breakthrough in this study and recommended to be scaled up for industry level. The product is commercially valuable at the same time it is minimizing the cost of water treatment. |
format |
Article |
author |
Muyibi, Suleyman Aremu Ali , Eman N Salleh, Hamzah M. Alam, Md. Zahangir Salleh, Mohd Ramlan M. |
author_facet |
Muyibi, Suleyman Aremu Ali , Eman N Salleh, Hamzah M. Alam, Md. Zahangir Salleh, Mohd Ramlan M. |
author_sort |
Muyibi, Suleyman Aremu |
title |
Production of natural coagulant from Moringa Oleifera Seed for application in treatment of low turbidity water |
title_short |
Production of natural coagulant from Moringa Oleifera Seed for application in treatment of low turbidity water |
title_full |
Production of natural coagulant from Moringa Oleifera Seed for application in treatment of low turbidity water |
title_fullStr |
Production of natural coagulant from Moringa Oleifera Seed for application in treatment of low turbidity water |
title_full_unstemmed |
Production of natural coagulant from Moringa Oleifera Seed for application in treatment of low turbidity water |
title_sort |
production of natural coagulant from moringa oleifera seed for application in treatment of low turbidity water |
publisher |
Scientific Research |
publishDate |
2010 |
url |
http://irep.iium.edu.my/7106/1/SrEmanJWRP.pdf http://irep.iium.edu.my/7106/ http://www.scirp.org/journal/jwarp |
_version_ |
1705056445554229248 |
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13.159267 |