Dense continuous cultivation of Chlorella under various illumination conditions
Determination of optimal illumination for dense continuous cultivation of Chlorella
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Determination of optimal illumination for dense continuous cultivation of Chlorella
Utilization of elements of mineral nutrition by Chlorella cells in intensive cultivation
Difference spectra of glucose cultures of Chlorella vulgaris beyernick indicate increased pigmentation in white light and monochromatic light over dark controls
Photoillumination effect on growth rate of Chlorella vulgaris, discussing action spectrum and mechanism of light requirement for heterotrophic growth
Mixed cultures of chlorella pyrenoidosa tx 71105 and various microorganisms-alga effects on growth of microorganisms
Mixed cultures of Chlorella pyrenoidosa TX 71105 and various bacteria and use in closed systems for support of man
Growth rate limitations with interactions of light and carbon dioxide investigated for two species of Chlorella
Detection of oxidative enzymes in hexose and triose sugar metabolism in green alga, chlorella pyrenoidosa
Microalgae cultivation is a promising technology for carbon sequestration and wastewater remediation. It is economically and logistically critical to find viable applications for the large quantities of produced biomass. In current research, a structural material is developed by using nearly 100% Chlorella sorokiniana. The otherwise non-cohesive microalgae cells are first surface-activated and then compacted under a relatively high pressure. The resulting material is a dense solid, stronger than typical steel-reinforced concrete in flexural tests. The processing procedure is simple and fast, and the setup is scalable. This technique may be useful for next-generation green construction and provide a use-case for sustainable microalgae biomass.
A draft metagenome-assembled genome (MAG) of a Salinarimonas species was obtained from a sequenced metagenome of Chlorella sp. SLA-04, an alkaliphilic green alga.
Physiology and biochemistry of algae, and culture growth technique for Chlorella
Chlorella vulgaris sterols isolated by column chromatography and identified by gas chromatography
Interfacial phenomena in adhesion of Chlorella alga strain to glass surfaces in simple ionic solutions, discussing zeta potential and additives effect
Sterol biosynthesis pathways in Chlorella ellipsoidea, discussing fucosterol conversion to clionasterol
Dialyzable and nondialyzable Chlorella pyrenoidosa culture filtrates analyzed to identify excretory products
Bacteria utilization of excretory products of Chlorella pyrenoidosa, considering ecological implications
Replacement of biologically important isotopes in the alga Chlorella by corresponding heavier stable isotopes produces increasingly greater deviations from the normal cell size and changes the quality and distribution of certain cellular components. The usefulness of isotopically altered organisms increases interest in the study of such permuted organisms.
Chlorella species found to contain ergosterol as major sterol