Algal fuel cells: Repeated nutrient recycling is demonstrated by reusing the aqueous phase obtained from the hydrothermal liquefaction (HTL) of microalgae. This is achieved, for the first time, by performing a complete set of four continuous growth–HTL cycles. Results show similar growth rates in each cycle, the potential of nutrient reduction, as well as cell morphology changes. This study demonstrates progress towards the standalone operation of algae biorefineries.

Recycling Nutrients in Algae Biorefinery / Laura Garcia Alba;Mathijs P. Vos;Cristian Torri;Daniele Fabbri;Sascha R. A. Kersten;Derk W. F. Brilman. - In: CHEMSUSCHEM. - ISSN 1864-5631. - STAMPA. - 6:(2013), pp. 1330-1333. [10.1002/cssc.201200988]

Recycling Nutrients in Algae Biorefinery

TORRI, CRISTIAN;FABBRI, DANIELE;
2013

Abstract

Algal fuel cells: Repeated nutrient recycling is demonstrated by reusing the aqueous phase obtained from the hydrothermal liquefaction (HTL) of microalgae. This is achieved, for the first time, by performing a complete set of four continuous growth–HTL cycles. Results show similar growth rates in each cycle, the potential of nutrient reduction, as well as cell morphology changes. This study demonstrates progress towards the standalone operation of algae biorefineries.
2013
Recycling Nutrients in Algae Biorefinery / Laura Garcia Alba;Mathijs P. Vos;Cristian Torri;Daniele Fabbri;Sascha R. A. Kersten;Derk W. F. Brilman. - In: CHEMSUSCHEM. - ISSN 1864-5631. - STAMPA. - 6:(2013), pp. 1330-1333. [10.1002/cssc.201200988]
Laura Garcia Alba;Mathijs P. Vos;Cristian Torri;Daniele Fabbri;Sascha R. A. Kersten;Derk W. F. Brilman
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/330950
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