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Você está em: Start > Publications > View > The Effect of Light Wavelength on CO2 Capture, Biomass Production and Nutrient Uptake by Green Microalgae: A Step Forward on Process Integration and Optimisation
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The Effect of Light Wavelength on CO2 Capture, Biomass Production and Nutrient Uptake by Green Microalgae: A Step Forward on Process Integration and Optimisation

Title
The Effect of Light Wavelength on CO2 Capture, Biomass Production and Nutrient Uptake by Green Microalgae: A Step Forward on Process Integration and Optimisation
Type
Article in International Scientific Journal
Year
2020
Authors
Ana F. Esteves
(Author)
Other
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Vítor Vilar
(Author)
FEUP
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Ana L. Gonçalves
(Author)
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Journal
Title: EnergiesImported from Authenticus Search for Journal Publications
Vol. 13 No. 1
Pages: 1-333
ISSN: 1996-1073
Publisher: MDPI
Other information
Authenticus ID: P-00R-KGB
Abstract (EN): Microalgae have drawn the attention of several researchers as an alternative to the traditional physicochemical CO2 capture methods, since they can convert CO2 and water into organic matter and release oxygen into the atmosphere. Microalgal growth can be improved by changing light supply, such as light intensity, wavelength, and photoperiod. In this study, the effect of different light wavelengths on CO2 capture, nutrient removal from a synthetic effluent and biomass production of Chlorella vulgaris, Tetradesmus obliquus and Neochloris oleoabundans was studied. The experiments were conducted with light-emitting diodes (LEDs) with different wavelengths: 380-750 nm (white), 620-750 nm (red) and 450-495 nm (blue). The maximum specific growth rate was obtained by N. oleoabundans with white LEDs (0.264 +/- 0.005 d(-1)), whereas the maximum biomass productivity (14 +/- 4 mg(dw) L-1 d(-1)) and CO2 fixation rate (11.4 mg(CO2) L-1 d(-1)) were obtained by C. vulgaris (also with white LEDs). Nitrogen and phosphorus removal efficiencies obtained under white light conditions were also the highest for the three studied microalgae.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 14
Documents
File name Description Size
2020. Microalgae - Light spectrum 863.47 KB
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