Matches in SemOpenAlex for { <https://semopenalex.org/work/W1998692718> ?p ?o ?g. }
- W1998692718 endingPage "107" @default.
- W1998692718 startingPage "100" @default.
- W1998692718 abstract "Interest in the use of microalgae for the production of biofuels has grown in recent years. Biomethane is a biofuel that can be obtained with high efficiency from anaerobic digestion of various organic feedstocks. In this study, a selection of freshwater (n = 15) and marine (n = 5) microalgae were tested in order to identify a microalgal strain that could be used as a model for large scale production of methane. Analysis of pH, volatile suspended solids and ammonium at the end of the assay ranged between 6.98–7.66, 16.0–25.9 g/L and 495–1622 mg/L respectively. No significant differences in these values were detected between freshwater and marine strains. There was no significant difference in the methane yield from freshwater microalgae (329 ± 43 mL CH4/g TVS) and marine microalgae (298 ± 83 mL CH4/g TVS) although it varied greatly within the tested strains. A statistical analysis of the microalgae grown under two different culture media showed that the type of medium was more determinant than the type of microalgae (freshwater or marine) for the methane yield, with 310 ± 35, 365 ± 25 and 303 ± 77 mL CH4/g TVS for the freshwater microalgae grown in Bold’s-3NV, f/2 and marine microalgae grown in f/2 media, respectively. The strains Scenedesmus sp.-AMDD, Isochrysis sp. and Scenedesmus dimorphus displayed the best methane yield with 410 ± 6, 408 ± 4 and 397 ± 10 mL CH4/g TVS, respectively. The strain Scenedesmus sp.-AMDD was chosen as a model strain for future work development with continuously fed digesters." @default.
- W1998692718 created "2016-06-24" @default.
- W1998692718 creator A5014625617 @default.
- W1998692718 creator A5027127816 @default.
- W1998692718 creator A5031138741 @default.
- W1998692718 creator A5039826704 @default.
- W1998692718 creator A5048551636 @default.
- W1998692718 creator A5068510307 @default.
- W1998692718 date "2013-08-01" @default.
- W1998692718 modified "2023-10-18" @default.
- W1998692718 title "Screening microalgae strains for their productivity in methane following anaerobic digestion" @default.
- W1998692718 cites W1965349255 @default.
- W1998692718 cites W1972956013 @default.
- W1998692718 cites W1979754465 @default.
- W1998692718 cites W1980733427 @default.
- W1998692718 cites W1981445721 @default.
- W1998692718 cites W1997167522 @default.
- W1998692718 cites W1998961159 @default.
- W1998692718 cites W2004082927 @default.
- W1998692718 cites W2011229003 @default.
- W1998692718 cites W2011961698 @default.
- W1998692718 cites W2021243607 @default.
- W1998692718 cites W2034975584 @default.
- W1998692718 cites W2044317390 @default.
- W1998692718 cites W2046495385 @default.
- W1998692718 cites W2047385089 @default.
- W1998692718 cites W2060578464 @default.
- W1998692718 cites W2061672640 @default.
- W1998692718 cites W2061917685 @default.
- W1998692718 cites W2062989416 @default.
- W1998692718 cites W2074214201 @default.
- W1998692718 cites W2075227122 @default.
- W1998692718 cites W2075668193 @default.
- W1998692718 cites W2078013379 @default.
- W1998692718 cites W2079163307 @default.
- W1998692718 cites W2081456615 @default.
- W1998692718 cites W2082784977 @default.
- W1998692718 cites W2086008201 @default.
- W1998692718 cites W2091398298 @default.
- W1998692718 cites W2136402963 @default.
- W1998692718 cites W2153922477 @default.
- W1998692718 cites W2154758621 @default.
- W1998692718 cites W2156004961 @default.
- W1998692718 cites W2334121721 @default.
- W1998692718 cites W4248857699 @default.
- W1998692718 doi "https://doi.org/10.1016/j.apenergy.2013.02.051" @default.
- W1998692718 hasPublicationYear "2013" @default.
- W1998692718 type Work @default.
- W1998692718 sameAs 1998692718 @default.
- W1998692718 citedByCount "115" @default.
- W1998692718 countsByYear W19986927182013 @default.
- W1998692718 countsByYear W19986927182014 @default.
- W1998692718 countsByYear W19986927182015 @default.
- W1998692718 countsByYear W19986927182016 @default.
- W1998692718 countsByYear W19986927182017 @default.
- W1998692718 countsByYear W19986927182018 @default.
- W1998692718 countsByYear W19986927182019 @default.
- W1998692718 countsByYear W19986927182020 @default.
- W1998692718 countsByYear W19986927182021 @default.
- W1998692718 countsByYear W19986927182022 @default.
- W1998692718 countsByYear W19986927182023 @default.
- W1998692718 crossrefType "journal-article" @default.
- W1998692718 hasAuthorship W1998692718A5014625617 @default.
- W1998692718 hasAuthorship W1998692718A5027127816 @default.
- W1998692718 hasAuthorship W1998692718A5031138741 @default.
- W1998692718 hasAuthorship W1998692718A5039826704 @default.
- W1998692718 hasAuthorship W1998692718A5048551636 @default.
- W1998692718 hasAuthorship W1998692718A5068510307 @default.
- W1998692718 hasBestOaLocation W19986927182 @default.
- W1998692718 hasConcept C115540264 @default.
- W1998692718 hasConcept C150903083 @default.
- W1998692718 hasConcept C185592680 @default.
- W1998692718 hasConcept C18903297 @default.
- W1998692718 hasConcept C2778219479 @default.
- W1998692718 hasConcept C31903555 @default.
- W1998692718 hasConcept C499616599 @default.
- W1998692718 hasConcept C516920438 @default.
- W1998692718 hasConcept C53991642 @default.
- W1998692718 hasConcept C559758991 @default.
- W1998692718 hasConcept C59822182 @default.
- W1998692718 hasConcept C6557445 @default.
- W1998692718 hasConcept C75212476 @default.
- W1998692718 hasConcept C86803240 @default.
- W1998692718 hasConceptScore W1998692718C115540264 @default.
- W1998692718 hasConceptScore W1998692718C150903083 @default.
- W1998692718 hasConceptScore W1998692718C185592680 @default.
- W1998692718 hasConceptScore W1998692718C18903297 @default.
- W1998692718 hasConceptScore W1998692718C2778219479 @default.
- W1998692718 hasConceptScore W1998692718C31903555 @default.
- W1998692718 hasConceptScore W1998692718C499616599 @default.
- W1998692718 hasConceptScore W1998692718C516920438 @default.
- W1998692718 hasConceptScore W1998692718C53991642 @default.
- W1998692718 hasConceptScore W1998692718C559758991 @default.
- W1998692718 hasConceptScore W1998692718C59822182 @default.
- W1998692718 hasConceptScore W1998692718C6557445 @default.
- W1998692718 hasConceptScore W1998692718C75212476 @default.
- W1998692718 hasConceptScore W1998692718C86803240 @default.
- W1998692718 hasLocation W19986927181 @default.