Références bibliographiques
Masojidek, J., Koblizek, M, et al. (2004). Photosynthesis in microalgae. In A. Richmond
(Ed.), Handbook of Microalgal Culture - Biotechnology and Applied Phycology, p. 566.
Blackwell Publishing Ltd.
Maziliak P. (1998). Physiologie végétale. Croissance et développement. Editions Hermann,
Tome 2. Paris, p .575.
Mehimeh, T., Bouldjedri, M. E. (2005). Evaluation spatio-temporelle de la qualité physicochimique des eaux du lac d'El Kennar.
Min, J., Lin, D, et al. (2021). Mercury, microcystins and Omega-3 polyunsaturated fatty acids
in farmed fish in eutrophic reservoir: Risk and benefit assessment. Environmental
Pollution.vol.270. https://doi.org/10.1016/j.envpol.2020.116047
Mollo P., Noury A. (2013). Le manuel du plancton. Éditions Charles Léopold Mayer,
Essai.vol.195, France, p. 198.
Monfet, E., Unc, A. (2017). Defining wastewaters used for cultivation of algae. Algal
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Morando-Grijalva, C. A., Vázquez-Larios, A. L, et al. (2020). Isolation of a freshwater
microalgae and its application for the treatment of wastewater and obtaining fatty acids from
tilapia cultivation.
Mullin, J. B., Riley, J. P. (1955). The colorimetric determination of silicate with special
reference to sea and natural waters.
Muñoz, R., Guieysse, B. (2006). Algal-bacterial processes for the treatment of hazardous
contaminants: a review.
Murphy, J., Riley, J. P. (1962). A modified single solution method for the determination of
phosphate in natural waters.
Murray, A. M., Fotidis, I. A et al, (2017). Wirelessly powered submerged-light illuminated
photobioreactors for efficient microalgae cultivation.
Nagarajan, D., Lee, D.-J, (2020). Resource recovery from wastewaters using microalgaebased approaches: a circular bioeconomy perspective. Bioresource Technology, 302, 122817.
https://doi.org/10.1016/j.biortech.2020.122817.
Neaud-Masson, N. (2020). Observation et dénombrement du phytoplancton marin par
microscopie optique photonique - Spécifications techniques et méthodologiques appliquées au
REPHY. Document de méthode
Nie, X., Mubashar, M, et al. (2020). Current progress, challenges and perspectives in
microalgae-based nutrient removal for aquaculture waste: A comprehensive review. Journal of
Cleaner Production, 277, 124209. https://doi.org/10.1016/j.jclepro.2020.124209
Nitsos, C., Filali, R, et al. (2020). Current and novel approaches to downstream processing of
microalgae:
A
review.
Biotechnology
Advances.vol.45.
https://doi.org/10.1016/j.biotechadv.2020.107650
Masojidek, J., Koblizek, M, et al. (2004). Photosynthesis in microalgae. In A. Richmond
(Ed.), Handbook of Microalgal Culture - Biotechnology and Applied Phycology, p. 566.
Blackwell Publishing Ltd.
Maziliak P. (1998). Physiologie végétale. Croissance et développement. Editions Hermann,
Tome 2. Paris, p .575.
Mehimeh, T., Bouldjedri, M. E. (2005). Evaluation spatio-temporelle de la qualité physicochimique des eaux du lac d'El Kennar.
Min, J., Lin, D, et al. (2021). Mercury, microcystins and Omega-3 polyunsaturated fatty acids
in farmed fish in eutrophic reservoir: Risk and benefit assessment. Environmental
Pollution.vol.270. https://doi.org/10.1016/j.envpol.2020.116047
Mollo P., Noury A. (2013). Le manuel du plancton. Éditions Charles Léopold Mayer,
Essai.vol.195, France, p. 198.
Monfet, E., Unc, A. (2017). Defining wastewaters used for cultivation of algae. Algal
Research.vol.24, P.520–526. https://doi.org/10.1016/j.algal.2016.12.008.
Morando-Grijalva, C. A., Vázquez-Larios, A. L, et al. (2020). Isolation of a freshwater
microalgae and its application for the treatment of wastewater and obtaining fatty acids from
tilapia cultivation.
Mullin, J. B., Riley, J. P. (1955). The colorimetric determination of silicate with special
reference to sea and natural waters.
Muñoz, R., Guieysse, B. (2006). Algal-bacterial processes for the treatment of hazardous
contaminants: a review.
Murphy, J., Riley, J. P. (1962). A modified single solution method for the determination of
phosphate in natural waters.
Murray, A. M., Fotidis, I. A et al, (2017). Wirelessly powered submerged-light illuminated
photobioreactors for efficient microalgae cultivation.
Nagarajan, D., Lee, D.-J, (2020). Resource recovery from wastewaters using microalgaebased approaches: a circular bioeconomy perspective. Bioresource Technology, 302, 122817.
https://doi.org/10.1016/j.biortech.2020.122817.
Neaud-Masson, N. (2020). Observation et dénombrement du phytoplancton marin par
microscopie optique photonique - Spécifications techniques et méthodologiques appliquées au
REPHY. Document de méthode
Nie, X., Mubashar, M, et al. (2020). Current progress, challenges and perspectives in
microalgae-based nutrient removal for aquaculture waste: A comprehensive review. Journal of
Cleaner Production, 277, 124209. https://doi.org/10.1016/j.jclepro.2020.124209
Nitsos, C., Filali, R, et al. (2020). Current and novel approaches to downstream processing of
microalgae:
A
review.
Biotechnology
Advances.vol.45.
https://doi.org/10.1016/j.biotechadv.2020.107650
