Phosphorus and nitrogen treatment of reservoir water using zeolite

Eutrophication in reservoir and tributaries causes obstruction of water flow and increased concentration of organic matter and plant production. The purpose of this project is to research about development of a cost-effective, affordable, efficient and portable Total Phosphorus (TP) and Total Nitrog...

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Main Authors: Ainun S.B., Kugaann R., Chow M.F.
Other Authors: 57205241278
Format: Article
Published: Science Publishing Corporation Inc 2023
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spelling my.uniten.dspace-241152023-05-29T14:55:40Z Phosphorus and nitrogen treatment of reservoir water using zeolite Ainun S.B. Kugaann R. Chow M.F. 57205241278 57205240774 57214146115 Eutrophication in reservoir and tributaries causes obstruction of water flow and increased concentration of organic matter and plant production. The purpose of this project is to research about development of a cost-effective, affordable, efficient and portable Total Phosphorus (TP) and Total Nitrogen (TN) removal agent, transferrable across the target market to facility owners and individuals in the world. Two types of pellet composition were chosen for this project which is zeolite plus clay and the other one is clay only. Implementing a chemical adsorption technique of a clayzeolite media is unique to the industry. The project outcome was intended to create and test a bench scale apparatus with engineered adsorption clayzeolite media, and prepared for further field analysis, such as pH stabilization and many more. From the result analysis, we have found that as the contact time increases, the removal efficiency of the pellets also increases. It is clear that pellet with clay and zeolite composition has a better adsorption rate on removal efficiency about 53% for TP and 82% for TN rather than clay only pellet about 48% TP and 67% TN. Since the synthetic solution has a concentration of 5mg/L for both phosphorus and nitrogen, the only variables are pellet composition, pH, temperature and contact time. Both pellets have their pH increasing as the contact time increases. � 2018 Authors. Final 2023-05-29T06:55:39Z 2023-05-29T06:55:39Z 2018 Article 10.14419/ijet.v7i4.35.22756 2-s2.0-85059225694 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85059225694&doi=10.14419%2fijet.v7i4.35.22756&partnerID=40&md5=13a8219f7d1b55d0f38152a5c566f33a https://irepository.uniten.edu.my/handle/123456789/24115 7 4 333 337 Science Publishing Corporation Inc Scopus
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
description Eutrophication in reservoir and tributaries causes obstruction of water flow and increased concentration of organic matter and plant production. The purpose of this project is to research about development of a cost-effective, affordable, efficient and portable Total Phosphorus (TP) and Total Nitrogen (TN) removal agent, transferrable across the target market to facility owners and individuals in the world. Two types of pellet composition were chosen for this project which is zeolite plus clay and the other one is clay only. Implementing a chemical adsorption technique of a clayzeolite media is unique to the industry. The project outcome was intended to create and test a bench scale apparatus with engineered adsorption clayzeolite media, and prepared for further field analysis, such as pH stabilization and many more. From the result analysis, we have found that as the contact time increases, the removal efficiency of the pellets also increases. It is clear that pellet with clay and zeolite composition has a better adsorption rate on removal efficiency about 53% for TP and 82% for TN rather than clay only pellet about 48% TP and 67% TN. Since the synthetic solution has a concentration of 5mg/L for both phosphorus and nitrogen, the only variables are pellet composition, pH, temperature and contact time. Both pellets have their pH increasing as the contact time increases. � 2018 Authors.
author2 57205241278
author_facet 57205241278
Ainun S.B.
Kugaann R.
Chow M.F.
format Article
author Ainun S.B.
Kugaann R.
Chow M.F.
spellingShingle Ainun S.B.
Kugaann R.
Chow M.F.
Phosphorus and nitrogen treatment of reservoir water using zeolite
author_sort Ainun S.B.
title Phosphorus and nitrogen treatment of reservoir water using zeolite
title_short Phosphorus and nitrogen treatment of reservoir water using zeolite
title_full Phosphorus and nitrogen treatment of reservoir water using zeolite
title_fullStr Phosphorus and nitrogen treatment of reservoir water using zeolite
title_full_unstemmed Phosphorus and nitrogen treatment of reservoir water using zeolite
title_sort phosphorus and nitrogen treatment of reservoir water using zeolite
publisher Science Publishing Corporation Inc
publishDate 2023
_version_ 1806426331715469312
score 13.214268