LAPSE:2021.0063
Published Article
LAPSE:2021.0063
Scale-Up Cultivation of Phaeodactylum tricornutum to Produce Biocrude by Hydrothermal Liquefaction
Irene Megía-Hervás, Alejandra Sánchez-Bayo, Luis Fernando Bautista, Victoria Morales, Federico G. Witt-Sousa, María Segura-Fornieles, Gemma Vicente
February 22, 2021
Phaeodactylum tricornutum is an interesting source of biomass to produce biocrude by hydrothermal liquefaction (HTL). Its biochemical composition, along with its biomass productivity, can be modulated according to this specific application by varying the photoperiod, the addition of CO2 or the variation of the initial nitrate concentration. The lab-scale culture allowed the production of a P. tricornutum biomass with high biomass and lipid productivities using a 18:6 h light:dark photoperiod and a specific CO2 injection. An initial concentration of nitrates (11.8 mM) in the culture was also essential for the growth of this species at the lab scale. The biomass generated in the scale-up photoreactor had acceptable biomass and lipid productivities, although the values were higher in the biomass cultivated at the lab scale because of the difficulty for the light to reach all cells, making the cells unable to develop and hindering their growth. The biocrudes from a 90-L cultivated microalga (B-90L) showed lower yields than the ones obtained from the biomass cultivated at the lab scale (B-1L) because of the lower lipid and high ash contents in this biomass. However, the culture scaling-up did not affect significantly the heteroatom concentrations in the biocrudes. A larger-scale culture is recommended to produce a biocrude to be used as biofuel after a post-hydrotreatment stage.
Keywords
biocrude, culture, hydrothermal liquefaction, microalgae, Phaeodactylum tricornutum, scale-up
Suggested Citation
Megía-Hervás I, Sánchez-Bayo A, Bautista LF, Morales V, Witt-Sousa FG, Segura-Fornieles M, Vicente G. Scale-Up Cultivation of Phaeodactylum tricornutum to Produce Biocrude by Hydrothermal Liquefaction. (2021). LAPSE:2021.0063
Author Affiliations
Megía-Hervás I: Department of Chemical, Energy and Mechanical Technology, ESCET, Universidad Rey Juan Carlos, Móstoles, 28933 Madrid, Spain; AlgaEnergy S.A. Parque Empresarial La Moraleja, Avda. Europa, 19. Alcobendas, 28108 Madrid, Spain
Sánchez-Bayo A: Department of Chemical, Energy and Mechanical Technology, ESCET, Universidad Rey Juan Carlos, Móstoles, 28933 Madrid, Spain [ORCID]
Bautista LF: Department of Chemical and Environmental Technology, ESCET, Universidad Rey Juan Carlos, Móstoles, 28933 Madrid, Spain [ORCID]
Morales V: Department of Chemical and Environmental Technology, ESCET, Universidad Rey Juan Carlos, Móstoles, 28933 Madrid, Spain [ORCID]
Witt-Sousa FG: AlgaEnergy S.A. Parque Empresarial La Moraleja, Avda. Europa, 19. Alcobendas, 28108 Madrid, Spain
Segura-Fornieles M: AlgaEnergy S.A. Parque Empresarial La Moraleja, Avda. Europa, 19. Alcobendas, 28108 Madrid, Spain
Vicente G: Department of Chemical, Energy and Mechanical Technology, ESCET, Universidad Rey Juan Carlos, Móstoles, 28933 Madrid, Spain [ORCID]
Journal Name
Processes
Volume
8
Issue
9
Article Number
E1072
Year
2020
Publication Date
2020-09-01
Published Version
ISSN
2227-9717
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Original Submission
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PII: pr8091072, Publication Type: Journal Article
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LAPSE:2021.0063
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doi:10.3390/pr8091072
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Feb 22, 2021
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Feb 22, 2021
 
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Calvin Tsay
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