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Journal > Makara Journal of Technology > Biomass Production Chlorella Vulgaris Buitenzorg Using Series of Bubble Column Photo Bioreactor with a Periodic Illumination

 

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Makara Journal of Technology
Vol 12, No 1 (2008)
Biomass Production Chlorella Vulgaris Buitenzorg Using Series of Bubble Column Photo Bioreactor with a Periodic Illumination
Wijanarko, Anondho ( Department of Chemical Engineering, Faculty of Engineering, University of Indonesia, Depok 16424, Indonesia)
Dianursanti, Dianursanti ( Department of Chemical Engineering, Faculty of Engineering, University of Indonesia, Depok 16424, Indonesia)
Muryanto, Muryanto ( Department of Chemical Engineering, Faculty of Engineering, University of Indonesia, Depok 16424, Indonesia)
Simanjuntak, Josia ( Department of Chemical Engineering, Faculty of Engineering, University of Indonesia, Depok 16424, Indonesia)
Wulan, Praswasti ( Department of Chemical Engineering, Faculty of Engineering, University of Indonesia, Depok 16424, Indonesia)
Hermansyah, Heri ( Department of Chemical Engineering, Faculty of Engineering, University of Indonesia, Depok 16424, Indonesia)
Gozan, Misri ( Department of Chemical Engineering, Faculty of Engineering, University of Indonesia, Depok 16424, Indonesia)
Soemantojo, Roekmijati ( Department of Chemical Engineering, Faculty of Engineering, University of Indonesia, Depok 16424, Indonesia)
Article Info   ABSTRACT
Published date:
16 Oct 2010
 
Chlorella vulgaris Buitenzorg cultivation using three bubble column photo bioreactors arranged in series with a volume of 200 mL for 130 hours shows an increase of biomass production of Chlorella vulgaris Buitenzorg up to 1.20 times and a decrease of the ability of CO2 fixation compared to single reactor at a periodic sun illumination cycle. The operation conditions on cultivation are as following: T, 29.0oC; P,1 atm.; UG, 2.40 m/h; CO2, 10%; Benneck medium; and illumination source by Phillip Halogen Lamp 20W /12V/ 50Hz. Other research parameters such as microbial carbon dioxide transferred rate (qco2), CO2 transferred rate (CTR), energy consumption for cellular formation (Ex), and cultural bicarbonate species concentration [HCO3] also give better results on series of reactor.
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