Klassen, V., Blifernez-Klassen, O., Wobbe, L., Schlüter, A., Kruse, O., & Mussgnug, J. H. (2016).
Efficiency and biotechnological aspects of biogas production from microalgal substrates.
Journal of Biotechnology, 234, 7–26.
Lardon, L., Helias, A., Sialve, B., Steyer, J. P., & Bernard, O. (2009). Life-cycle assessment of
biodiesel production from microalgae. Environmental Science and Technology, 43(17), 6475–
6481.
Lee, E., Cumberbatch, J., Wang, M., & Zhang, Q. (2017). Kinetic parameter estimation model for
anaerobic co-digestion of waste activated sludge and microalgae. Bioresource technology, 228,
9–17.
Loos, E., & Meindl, D. (1982). Composition of the cell wall of Chlorellafusca. Planta, 156(3),
270–273.
Mahdy, A., Mendez, L., Ballesteros, M., & González-Fernández, C. (2015). Protease pretreated
Chlorella vulgaris biomass conversion to methane via semi-continuous anaerobic digestion.
Fuel, 158, 35–41.
Mahdy, A., Fotidis, I. A., Mancini, E., Ballesteros, M., González-Fernández, C., & Angelidaki, I.
(2017). Ammonia tolerant inocula provide a good base for anaerobic digestion of microalgae in
third generation biogas process. Bioresource Technology, 225, 272–278.
Mairet, F., Bernard, O., Cameron, E., Ras, M., Lardon, L., Steyer, J.-P., et al. (2012).
Three-reaction model for the anaerobic digestion of microalgae. Biotechnology and
Bioengineering, 109, 415–425.
Mairet, F., Bernard, O., Ras, M., Lardon, L., & Steyer, J.-P. (2011). Modeling anaerobic digestion
of microalgae using ADM1. Bioresource Technology, 102, 6823–6829.
Mata, T. M., Martins, A. A., & Caetano, N. S. (2010). Microalgae for biodiesel production and
other applications: A review. Renewable and Sustainable Energy Reviews, 14(1), 217–232.
Mata-Alvarez, J., Dosta, J., Romero-Güiza, M. S., Fonoll, X., Peces, M., & Astals, S. (2014).
A critical review on anaerobic co-digestion achievements between 2010 and 2013. Renewable
and Sustainable Energy Reviews, 36, 412–427.
Meier, L., Pérez, R., Azócar, L., Rivas, M., & Jeison, D. (2015). Photosynthetic CO 2 uptake by
microalgae: An attractive tool for biogas upgrading. Biomass and Bioenergy, 73, 102–109.
Montingelli, M. E., Tedesco, S., & Olabi, A. G. (2015). Biogas production from algal biomass: A
review. Renewable and Sustainable Energy Reviews, 43, 961–972.
Muñoz, R., Meier, L., Diaz, I., & Jeison, D. (2015). A critical review on the state-of-the-art of
physical/chemical and biological technologies for an integral biogas upgrading. Reviews in
Environmental Science and Biotechnology, 14, 727–759.
Neumann, P., Torres, A., Fermoso, F. G., Borja, R., & Jeison, D. (2015). Anaerobic co-digestion
of lipid-spent microalgae with waste activated sludge and glycerol in batch mode. International
Biodeterioration and Biodegradation, 100, 85–88.
Okuda, K. (2002). Structure and phylogeny of cell coverings. Journal of Plant Research, 115,
283–288.
Ometto, F., Quiroga, G., Psenicka, P., Whitton, R., Jefferson, B., & Villa, R. (2014). Impacts of
microalgae pre-treatments for improved anaerobic digestion: Thermal treatment, thermal
hydrolysis, ultrasound and enzymatic hydrolysis. Water Research, 65, 350–361.
Park, J. B. K., Craggs, R. J., & Shilton, A. N. (2011). Wastewater treatment high rate algal ponds
for biofuel production. Bioresource Technology, 102(1), 35–42.
Park, S., & Li, Y. (2012). Evaluation of methane production and macronutrient degradation in the
anaerobic co-digestion of algae biomass residue and lipid waste. Bioresource Technology, 111,
42–48.
Passos, F., Uggetti, E., Carrère, H., & Ferrer, I. (2014a). Pretreatment of microalgae to improve
biogas production: A review. Bioresource Technology, 172, 403–412.
Passos, F., Hernández-Mariné, M., García, J., & Ferrer, I. (2014b). Long-term anaerobic digestion
of microalgae grown in HRAP for wastewater treatment. Effect of microwave pretreatment.
Water Research, 49, 351–359.
268
F. Passos et al.
Efficiency and biotechnological aspects of biogas production from microalgal substrates.
Journal of Biotechnology, 234, 7–26.
Lardon, L., Helias, A., Sialve, B., Steyer, J. P., & Bernard, O. (2009). Life-cycle assessment of
biodiesel production from microalgae. Environmental Science and Technology, 43(17), 6475–
6481.
Lee, E., Cumberbatch, J., Wang, M., & Zhang, Q. (2017). Kinetic parameter estimation model for
anaerobic co-digestion of waste activated sludge and microalgae. Bioresource technology, 228,
9–17.
Loos, E., & Meindl, D. (1982). Composition of the cell wall of Chlorellafusca. Planta, 156(3),
270–273.
Mahdy, A., Mendez, L., Ballesteros, M., & González-Fernández, C. (2015). Protease pretreated
Chlorella vulgaris biomass conversion to methane via semi-continuous anaerobic digestion.
Fuel, 158, 35–41.
Mahdy, A., Fotidis, I. A., Mancini, E., Ballesteros, M., González-Fernández, C., & Angelidaki, I.
(2017). Ammonia tolerant inocula provide a good base for anaerobic digestion of microalgae in
third generation biogas process. Bioresource Technology, 225, 272–278.
Mairet, F., Bernard, O., Cameron, E., Ras, M., Lardon, L., Steyer, J.-P., et al. (2012).
Three-reaction model for the anaerobic digestion of microalgae. Biotechnology and
Bioengineering, 109, 415–425.
Mairet, F., Bernard, O., Ras, M., Lardon, L., & Steyer, J.-P. (2011). Modeling anaerobic digestion
of microalgae using ADM1. Bioresource Technology, 102, 6823–6829.
Mata, T. M., Martins, A. A., & Caetano, N. S. (2010). Microalgae for biodiesel production and
other applications: A review. Renewable and Sustainable Energy Reviews, 14(1), 217–232.
Mata-Alvarez, J., Dosta, J., Romero-Güiza, M. S., Fonoll, X., Peces, M., & Astals, S. (2014).
A critical review on anaerobic co-digestion achievements between 2010 and 2013. Renewable
and Sustainable Energy Reviews, 36, 412–427.
Meier, L., Pérez, R., Azócar, L., Rivas, M., & Jeison, D. (2015). Photosynthetic CO 2 uptake by
microalgae: An attractive tool for biogas upgrading. Biomass and Bioenergy, 73, 102–109.
Montingelli, M. E., Tedesco, S., & Olabi, A. G. (2015). Biogas production from algal biomass: A
review. Renewable and Sustainable Energy Reviews, 43, 961–972.
Muñoz, R., Meier, L., Diaz, I., & Jeison, D. (2015). A critical review on the state-of-the-art of
physical/chemical and biological technologies for an integral biogas upgrading. Reviews in
Environmental Science and Biotechnology, 14, 727–759.
Neumann, P., Torres, A., Fermoso, F. G., Borja, R., & Jeison, D. (2015). Anaerobic co-digestion
of lipid-spent microalgae with waste activated sludge and glycerol in batch mode. International
Biodeterioration and Biodegradation, 100, 85–88.
Okuda, K. (2002). Structure and phylogeny of cell coverings. Journal of Plant Research, 115,
283–288.
Ometto, F., Quiroga, G., Psenicka, P., Whitton, R., Jefferson, B., & Villa, R. (2014). Impacts of
microalgae pre-treatments for improved anaerobic digestion: Thermal treatment, thermal
hydrolysis, ultrasound and enzymatic hydrolysis. Water Research, 65, 350–361.
Park, J. B. K., Craggs, R. J., & Shilton, A. N. (2011). Wastewater treatment high rate algal ponds
for biofuel production. Bioresource Technology, 102(1), 35–42.
Park, S., & Li, Y. (2012). Evaluation of methane production and macronutrient degradation in the
anaerobic co-digestion of algae biomass residue and lipid waste. Bioresource Technology, 111,
42–48.
Passos, F., Uggetti, E., Carrère, H., & Ferrer, I. (2014a). Pretreatment of microalgae to improve
biogas production: A review. Bioresource Technology, 172, 403–412.
Passos, F., Hernández-Mariné, M., García, J., & Ferrer, I. (2014b). Long-term anaerobic digestion
of microalgae grown in HRAP for wastewater treatment. Effect of microwave pretreatment.
Water Research, 49, 351–359.
268
F. Passos et al.