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Title

Effects of Temperature and Other Operational Parameters on Chlorella vulgaris Mass Cultivation in a Simple and Low-Cost Column Photobioreactor.

Authors

Bamba, Bio; Lozano, Paul; Adjé, Félix; Ouattara, Allassane; Vian, Maryline; Tranchant, Carole; Lozano, Yves

Abstract

Mass production of microalgae worldwide, and even more so in developing countries, is strongly contingent upon the availability of economical and efficient photobioreactors (PBRs) that are amenable for use in resource-limited environments. Such options are limited. This work assesses the effects of temperature, CO enrichment, and mixing by air + CO bubbling on Chlorella vulgaris biomass production in a simple, low-cost 84-L column PBR. Cultivation at 25, 30, and 35 °C in a batch process showed that biomass production was negatively affected above 30 °C. Specific growth rates at each temperature were 0.75, 0.76, and 0.63 day, respectively, with batch productivities of 70.50, 81.67, and 35.83 mg L day. While a relatively low CO/air ratio (1 %) seemed beneficial during the early stages of cultivation, higher concentrations were required to maintain growth rate and achieve higher biomass concentrations around 1000 mg L. Cultivation with air + CO bubbling rates of 100, 200, and 400 L h led to specific growth rates (and batch productivities) of 0.64 day (59.58 mg L day), 0.74 day (81.67 mg L day), and 0.80 day (86.67 mg L day), respectively. The results indicate that high biomass productivities of C. vulgaris can be obtained up to 30 °C with moderate (2 %) to high (10 %) CO in a fairly simple PBR.

Subjects

CHLORELLA vulgaris; BIOMASS production; BUBBLE column reactors; TEMPERATURE; PHOTOBIOREACTORS; MICROALGAE

Publication

Applied Biochemistry & Biotechnology, 2015, Vol 177, Issue 2, p389

ISSN

0273-2289

Publication type

Academic Journal

DOI

10.1007/s12010-015-1751-7

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