The extended monod model for microalgae growth and nutrient uptake in different wastewaters
Water pollution is a serious issue which always being concerned by public. Microalgae for wastewater treatment is an effective way to solve the problem due to its eco-friendly and apparently low cost. This research aims to investigate the efficiency of the mathematical model to estimate the microalg...
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my.uthm.eprints.40842021-11-25T01:03:14Z http://eprints.uthm.edu.my/4084/ The extended monod model for microalgae growth and nutrient uptake in different wastewaters Mohd Sadiq, Ummal Aisha Farhana En, Yow Meow Jamaian, Siti Suhana T57.6-57.97 Operations research. Systems analysis Water pollution is a serious issue which always being concerned by public. Microalgae for wastewater treatment is an effective way to solve the problem due to its eco-friendly and apparently low cost. This research aims to investigate the efficiency of the mathematical model to estimate the microalgae growth and nutrient uptake by microalgae in wastewaters. The extended Monod model is applied in the Verhulst model to describe the microalgae growth and nutrient uptake by microalgae whereas microalgae Botryococcus sp. is the species of microalgae used in this research. The microalgae Botryococcus sp. growth and nutrient uptake in domestic, agricultural and industrial wastewater are estimated and the results reveal that the extended Monod model is suitable for the estimation of microalgae growth and nutrient uptake by microalgae. In addition, microalgae Botryococcus sp. is promising for treating domestic, agricultural and industrial wastewater. Science Publishing Corporation 2018 Article PeerReviewed Mohd Sadiq, Ummal Aisha Farhana and En, Yow Meow and Jamaian, Siti Suhana (2018) The extended monod model for microalgae growth and nutrient uptake in different wastewaters. International Journal of Engineering and Technology, 7 (4.3). pp. 200-204. ISSN 2227-524X |
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T57.6-57.97 Operations research. Systems analysis Mohd Sadiq, Ummal Aisha Farhana En, Yow Meow Jamaian, Siti Suhana The extended monod model for microalgae growth and nutrient uptake in different wastewaters |
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Water pollution is a serious issue which always being concerned by public. Microalgae for wastewater treatment is an effective way to solve the problem due to its eco-friendly and apparently low cost. This research aims to investigate the efficiency of the mathematical model to estimate the microalgae growth and nutrient uptake by microalgae in wastewaters. The extended Monod model is applied in the Verhulst model to describe the microalgae growth and nutrient uptake by microalgae whereas microalgae Botryococcus sp. is the species of microalgae used in this research. The microalgae Botryococcus sp. growth and nutrient uptake in domestic, agricultural and industrial wastewater are estimated and the results reveal that the extended Monod model is suitable for the estimation of microalgae growth and nutrient uptake by microalgae. In addition, microalgae Botryococcus sp. is promising for treating domestic, agricultural and industrial wastewater. |
format |
Article |
author |
Mohd Sadiq, Ummal Aisha Farhana En, Yow Meow Jamaian, Siti Suhana |
author_facet |
Mohd Sadiq, Ummal Aisha Farhana En, Yow Meow Jamaian, Siti Suhana |
author_sort |
Mohd Sadiq, Ummal Aisha Farhana |
title |
The extended monod model for microalgae growth and nutrient uptake in different wastewaters |
title_short |
The extended monod model for microalgae growth and nutrient uptake in different wastewaters |
title_full |
The extended monod model for microalgae growth and nutrient uptake in different wastewaters |
title_fullStr |
The extended monod model for microalgae growth and nutrient uptake in different wastewaters |
title_full_unstemmed |
The extended monod model for microalgae growth and nutrient uptake in different wastewaters |
title_sort |
extended monod model for microalgae growth and nutrient uptake in different wastewaters |
publisher |
Science Publishing Corporation |
publishDate |
2018 |
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http://eprints.uthm.edu.my/4084/ |
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1738581205465432064 |
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13.211869 |