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Modelling of growth conditions for cyanobacterium Spirulina platensis in microcosms
by
Linde, G.A
, Atala, D.I.P
, Costa, J.A.V
in
algal culture
/ Bacteria
/ Biological and medical sciences
/ bioreactors
/ Biotechnology
/ Cultivation
/ Experimental design
/ Fundamental and applied biological sciences. Psychology
/ Growth conditions
/ Methods. Procedures. Technologies
/ Microbial engineering. Fermentation and microbial culture technology
/ Nitrogen
/ photobioreactors
/ Spirulina platensis
2000
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Modelling of growth conditions for cyanobacterium Spirulina platensis in microcosms
by
Linde, G.A
, Atala, D.I.P
, Costa, J.A.V
in
algal culture
/ Bacteria
/ Biological and medical sciences
/ bioreactors
/ Biotechnology
/ Cultivation
/ Experimental design
/ Fundamental and applied biological sciences. Psychology
/ Growth conditions
/ Methods. Procedures. Technologies
/ Microbial engineering. Fermentation and microbial culture technology
/ Nitrogen
/ photobioreactors
/ Spirulina platensis
2000
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Modelling of growth conditions for cyanobacterium Spirulina platensis in microcosms
by
Linde, G.A
, Atala, D.I.P
, Costa, J.A.V
in
algal culture
/ Bacteria
/ Biological and medical sciences
/ bioreactors
/ Biotechnology
/ Cultivation
/ Experimental design
/ Fundamental and applied biological sciences. Psychology
/ Growth conditions
/ Methods. Procedures. Technologies
/ Microbial engineering. Fermentation and microbial culture technology
/ Nitrogen
/ photobioreactors
/ Spirulina platensis
2000
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Modelling of growth conditions for cyanobacterium Spirulina platensis in microcosms
Journal Article
Modelling of growth conditions for cyanobacterium Spirulina platensis in microcosms
2000
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Overview
The influence of cultivation conditions on the growth of the cyanobacterium Spirulina platensis was investigated by using two types of photobioreactors. In a rotative photobioreactor the doubling time (t^sub d^) was 3.54 days. The better value found for t^sub d^ in an aerated photobioreactor by changing the initial nitrogen concentration (NaNO^sub 3^) at 0.003, 0.015, 0.030 and 0.060M was 2.5 days. A factorial experimental design was performed in order to estimate the contributions of initial nitrogen concentration, inoculum and cultivation time as well as their interactions. All three factors and their interactions proved to be significant in influencing the cellular concentration of S. platensis. [PUBLICATION ABSTRACT]
Publisher
Springer,Springer Nature B.V
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