Design of a pilot scale outdoor photobioreactor

Presently microalgae are considered as an alternative biodiesel source and have been cultivated in large scale for commercial use. However, there is lack of efficient systems which utilize solar energy effectively for mass cultivation of microalgae. In this study, a scaled up 280 L flat panel airlif...

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Main Authors: Rachel Fran Mansa, Azrinah Tahir, Lu, Mee Hua
Format: Article
Language:English
Published: Springer-Verlag 2012
Subjects:
Online Access:https://eprints.ums.edu.my/id/eprint/19342/1/Design%20of%20a%20pilot%20scale%20outdoor%20photobioreactor.pdf
https://eprints.ums.edu.my/id/eprint/19342/
https://www.researchgate.net/publication/235987286_Design_of_a_Pilot_Scale_Outdoor_Photobioreactor_for_Mass_Cultivation_of_Local_Microalga
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Institution: Universiti Malaysia Sabah
Language: English
id my.ums.eprints.19342
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spelling my.ums.eprints.193422018-03-22T02:14:17Z https://eprints.ums.edu.my/id/eprint/19342/ Design of a pilot scale outdoor photobioreactor Rachel Fran Mansa Azrinah Tahir Lu, Mee Hua TP Chemical technology Presently microalgae are considered as an alternative biodiesel source and have been cultivated in large scale for commercial use. However, there is lack of efficient systems which utilize solar energy effectively for mass cultivation of microalgae. In this study, a scaled up 280 L flat panel airlift photobioreactor (FP-ALPBR), based on previous work by Issarapayup and co-workers [1], was designed and constructed fiberglass as an alternative system for the large scale outdoor cultivation of microalgae in Malaysia. A local strain, Chlorella sp. was used to assess the growth productivity. The 280 L FP-ALPBR was capable of giving cell productivity of 2.63×105 cells ml-1 d-1, maximum cell density of 6.01×106 cells ml-1 and specific growth rate of 0.15 day-1. The performance of this photobioreactor was compared with the 17 L FP-ALPBR and 90 L FP-ALPBR of the same design. The 280 L FP-ALPBR gave a better performance in terms of maximum cell density, but as expected for large scale it resulted in a considerable decrease in specific growth. This photobioreactor was found to produce a larger harvesting volume and cell density but could not compare in growth rate produced by the smaller 17 L FP-ALPBR and the 90 L FP−ALPBR. Springer-Verlag 2012-01 Article PeerReviewed text en https://eprints.ums.edu.my/id/eprint/19342/1/Design%20of%20a%20pilot%20scale%20outdoor%20photobioreactor.pdf Rachel Fran Mansa and Azrinah Tahir and Lu, Mee Hua (2012) Design of a pilot scale outdoor photobioreactor. An International Journal for Physical and Engineering Sciences, 6. pp. 348-352. ISSN 1434-565X https://www.researchgate.net/publication/235987286_Design_of_a_Pilot_Scale_Outdoor_Photobioreactor_for_Mass_Cultivation_of_Local_Microalga
institution Universiti Malaysia Sabah
building UMS Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Sabah
content_source UMS Institutional Repository
url_provider http://eprints.ums.edu.my/
language English
topic TP Chemical technology
spellingShingle TP Chemical technology
Rachel Fran Mansa
Azrinah Tahir
Lu, Mee Hua
Design of a pilot scale outdoor photobioreactor
description Presently microalgae are considered as an alternative biodiesel source and have been cultivated in large scale for commercial use. However, there is lack of efficient systems which utilize solar energy effectively for mass cultivation of microalgae. In this study, a scaled up 280 L flat panel airlift photobioreactor (FP-ALPBR), based on previous work by Issarapayup and co-workers [1], was designed and constructed fiberglass as an alternative system for the large scale outdoor cultivation of microalgae in Malaysia. A local strain, Chlorella sp. was used to assess the growth productivity. The 280 L FP-ALPBR was capable of giving cell productivity of 2.63×105 cells ml-1 d-1, maximum cell density of 6.01×106 cells ml-1 and specific growth rate of 0.15 day-1. The performance of this photobioreactor was compared with the 17 L FP-ALPBR and 90 L FP-ALPBR of the same design. The 280 L FP-ALPBR gave a better performance in terms of maximum cell density, but as expected for large scale it resulted in a considerable decrease in specific growth. This photobioreactor was found to produce a larger harvesting volume and cell density but could not compare in growth rate produced by the smaller 17 L FP-ALPBR and the 90 L FP−ALPBR.
format Article
author Rachel Fran Mansa
Azrinah Tahir
Lu, Mee Hua
author_facet Rachel Fran Mansa
Azrinah Tahir
Lu, Mee Hua
author_sort Rachel Fran Mansa
title Design of a pilot scale outdoor photobioreactor
title_short Design of a pilot scale outdoor photobioreactor
title_full Design of a pilot scale outdoor photobioreactor
title_fullStr Design of a pilot scale outdoor photobioreactor
title_full_unstemmed Design of a pilot scale outdoor photobioreactor
title_sort design of a pilot scale outdoor photobioreactor
publisher Springer-Verlag
publishDate 2012
url https://eprints.ums.edu.my/id/eprint/19342/1/Design%20of%20a%20pilot%20scale%20outdoor%20photobioreactor.pdf
https://eprints.ums.edu.my/id/eprint/19342/
https://www.researchgate.net/publication/235987286_Design_of_a_Pilot_Scale_Outdoor_Photobioreactor_for_Mass_Cultivation_of_Local_Microalga
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