Correlations between biochemical composition and biogas production during anaerobic digestion of microalgae and cyanobacteria isolated from different sources of Turkey

[Display omitted] •BMP of Desertifilum tharense, Phormidium animale and Anabeana variabilis were studied first time.•BMP of Desertifilum tharense, Phormidium animale and Anabeana variabilis were found 308, 293 and 229 mLCH4.gVS−1.•Statistical assessment between composition and BMP of species is the...

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Veröffentlicht in:Bioresource technology 2019-06, Vol.281, p.209-216
Hauptverfasser: Perendeci, N.A., Yılmaz, V., Ertit Taştan, B., Gökgöl, S., Fardinpoor, M., Namlı, A., Steyer, J.P.
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Sprache:eng
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Zusammenfassung:[Display omitted] •BMP of Desertifilum tharense, Phormidium animale and Anabeana variabilis were studied first time.•BMP of Desertifilum tharense, Phormidium animale and Anabeana variabilis were found 308, 293 and 229 mLCH4.gVS−1.•Statistical assessment between composition and BMP of species is the first contribution.•Glucose, Kjeldahl nitrogen and chlorophyll content of species are positively correlated with methane potential. Twenty one species of microalgae and Cyanobacteria were isolated from different ecosystems in Turkey to investigate the relation between biochemical methane potential (BMP) and biochemical characterization. Since the highest dry weight (X), specific growth rate (µ) and maximum productivity (Pmax) were obtained from the five species, identification of species and BMP tests with the composition analyzes were examined. BMP values were determined 308, 293, 242, 229 and 230 mLCH4/gVS for Desertifilum tharense, Phormidium animale, Chlorella sp., Anabeana variabilis and Chlorophyta uncultured. The Pearson correlation and principal component analysis (PCA) were applied to extract and clarify the correlation between composition of species and their methane production. Pearson correlation shows that glucose, Kjeldahl nitrogen and chlorophyll are highly and positively correlated with BMP. PCA revealed that Chlorella sp., Chlorophyta uncultured and Desertifilum tharense were placed against Phormidium animale distinguished by its extreme and different profile because of Kjeldahl nitrogen and glucose content.
ISSN:0960-8524
1873-2976
DOI:10.1016/j.biortech.2019.02.086