Water Quality Improvement through Reductions of Pollutant Loads on Small Scale of Bioretention System
Climate models; Pollution; Storms; Water management; Water quality; Assessment of results; Reference modeling; Total phosphorus; Total suspended solids; Tropical climates; Urban stormwater; Urban stormwater management; Water quality improvements; Water pollution; bioaccumulation; comparative study;...
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2023
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my.uniten.dspace-227632023-05-29T14:12:06Z Water Quality Improvement through Reductions of Pollutant Loads on Small Scale of Bioretention System Elyza Muha N. Mohd Sidek L. Jajarmizadeh M. 57189250128 35070506500 55251767200 Climate models; Pollution; Storms; Water management; Water quality; Assessment of results; Reference modeling; Total phosphorus; Total suspended solids; Tropical climates; Urban stormwater; Urban stormwater management; Water quality improvements; Water pollution; bioaccumulation; comparative study; guideline; nitrogen; performance assessment; phosphorus; pollutant removal; prediction; software; stormwater; tropical region; water quality; Malaysia Bioretention system is introduced as an important topic namely Urban Storm Water Management Manual for Malaysia (MSMA) by the Department of Irrigation and Drainage Malaysia (DID) in May 2012. The main objective of this paper is to evaluate the performance of water quality for small scale bioretention system under tropical climate via MUSIC model. Two bioretention systems 1 and 2 are observed based on the difference media depth. The result of bioretention system is compared with a reference model which has infrastructure with Urban Stormwater Improvement Conceptualisation (MUSIC) for pollutants load reduction and water quality results. Assessment of results via MUSIC software indicates a significant percentage of reduction for Total Suspended Solid (TSS), Total Phosphorus (TP) and Total Nitrogen (TN). The prediction of pollutant reduction via using MUSIC has the harmony for requirement in MSMA. TSS pollutant reduction is more than 80%, while for TP and TN more than 50%. The outcome of this study can be helpful for improvement of the existing MSMA guidelines for application of bioretention systems in Malaysia. Final 2023-05-29T06:12:06Z 2023-05-29T06:12:06Z 2016 Conference Paper 10.1088/1755-1315/32/1/012010 2-s2.0-84966643428 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84966643428&doi=10.1088%2f1755-1315%2f32%2f1%2f012010&partnerID=40&md5=764bac94f8e0c436abd3be1c84cc4852 https://irepository.uniten.edu.my/handle/123456789/22763 32 1 12010 All Open Access, Gold Institute of Physics Publishing Scopus |
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Climate models; Pollution; Storms; Water management; Water quality; Assessment of results; Reference modeling; Total phosphorus; Total suspended solids; Tropical climates; Urban stormwater; Urban stormwater management; Water quality improvements; Water pollution; bioaccumulation; comparative study; guideline; nitrogen; performance assessment; phosphorus; pollutant removal; prediction; software; stormwater; tropical region; water quality; Malaysia |
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57189250128 |
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57189250128 Elyza Muha N. Mohd Sidek L. Jajarmizadeh M. |
format |
Conference Paper |
author |
Elyza Muha N. Mohd Sidek L. Jajarmizadeh M. |
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Elyza Muha N. Mohd Sidek L. Jajarmizadeh M. Water Quality Improvement through Reductions of Pollutant Loads on Small Scale of Bioretention System |
author_sort |
Elyza Muha N. |
title |
Water Quality Improvement through Reductions of Pollutant Loads on Small Scale of Bioretention System |
title_short |
Water Quality Improvement through Reductions of Pollutant Loads on Small Scale of Bioretention System |
title_full |
Water Quality Improvement through Reductions of Pollutant Loads on Small Scale of Bioretention System |
title_fullStr |
Water Quality Improvement through Reductions of Pollutant Loads on Small Scale of Bioretention System |
title_full_unstemmed |
Water Quality Improvement through Reductions of Pollutant Loads on Small Scale of Bioretention System |
title_sort |
water quality improvement through reductions of pollutant loads on small scale of bioretention system |
publisher |
Institute of Physics Publishing |
publishDate |
2023 |
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1806428496714530816 |