Pires, J., Alvim-Ferraz, M., Martins, F., & Simoes, M. (2013). Wastewater treatment to enhance
the economic viability of microalgae culture. Environmental Science and Pollution Research,
20, 5096–5105.
Pires, J. C. M. (2017). COP21: The algae opportunity? Renewable and Sustainable Energy
Reviews, 79, 867–877.
Pizarro, C., Mulbry, W., Blersch, D., & Kangas, P. (2006). An economic assessment of algal turf
scrubber technology for treatment of dairy manure effluent. Ecological Engineering, 26,
321–327.
Prandini, J. M., Da Silva, M. L. B., Mezzari, M. P., Pirolli, M., Michelon, W., & Soares, H. M.
(2016). Enhancement of nutrient removal from swine wastewater digestate coupled to biogas
purification by microalgae Scenedesmus spp. Bioresource Technology, 202, 67–75.
Pulz, O. (2001). Photobioreactors: Production systems for phototrophic microorganisms. Applied
Microbiology and Biotechnology, 57, 287–293.
Pushparaj, B., Pelosi, E., Tredici, M. R., Pinzani, E., & Materassi, R. (1997). As integrated culture
system for outdoor production of microalgae and cyanobacteria. Journal of Applied Phycology,
9, 113–119.
Rai, L. C., Gaur, J. P., & Kumar, H. D. (1981). Phycology and heavy-metal pollution. Biological
Reviews, 56, 99–151.
Rawat, I., Ranjith Kumar, R., Mutanda, T., & Bux, F. (2011). Dual role of microalgae:
Phycoremediation of domestic wastewater and biomass production for sustainable biofuels
production. Applied Energy, 88, 3411–3424.
Richmond, A. (2004). Handbook of microalgal culture—Biotechnology and applied phycology.
USA: Blackwell Science.
Rocha, L. G. (2012). Dossiê técnico: Cultivo de Microalgas.
Safonova, E., Kvitko, K. V., Iankevitch, M. I., Surgko, L. F., Afti, I. A., & Reisser, W. (2004).
Biotreatment of industrial wastewater by selected algal-bacterial consortia. Engineering in Life
Sciences, 4, 347–353.
Santos, L., Calazans, N., Marinho, Y., Santos, A., Nascimento, R., Vasconcelos, R., Dantas, D. &
Gálvez, A. (2009). Influência do fotoperíodo no crescimento da Chlorella vulgaris
(Chlorophyceae) visando produção de biodiesel. http://www.eventosufrpe.com.br/jepex2009/
cd/resumos/R0358-1.pdf.
Shaffer, G., Bendtsen, J., & Ulloa, O. (1999). Fractionation during remineralization of organic
matter in the ocean. Deep Sea Research Part I: Oceanographic Research Papers, 46, 185–204.
Sheehan, J., Dunahay, T., Benemann, J., & Roessler, P. (1998). Look back at the U.S. department
of energy’s aquatic species program: Biodiesel from Algae; Close-out report. Golden, CO.
(US): National Renewable Energy Lab.
Sicko-Goad, L., & Andresen, N. A. (1991). Effect of growth and light/dark cycles on diatom lipid
content and composition. Journal of Phycology, 27, 710–718.
Silva-Benavides, A. M., & Torzillo, G. (2011). Nitrogen and phosphorus removal through
laboratory batch cultures of microalga Chlorella vulgaris and cyanobacterium Planktothrix
isothrix grown as monoalgal and as co-cultures. Journal of Applied Phycology, 24, 267–276.
Silva, N. F. P., Gonçalves, A. L., Moreira, F. C., Silva, T. F. C. V., Martins, F. G., Alvim-Ferraz,
M. C. M., et al. (2015). Towards sustainable microalgal biomass production by phycoremediation of a synthetic wastewater: A kinetic study. Algal Research, 11, 350–358.
Singh, D., & Yadav, K. (2015). Biofixation of carbon dioxide using mixed culture of microalgae.
Indian Journal of Biotechnology, 14, 228–232.
Spolaore, P., Joannis-Cassan, C., Duran, E., & Isambert, A. (2006). Commercial applications of
microalgae. Journal of Bioscience and Bioengineering, 101, 87–96.
Sydney, E. B., Da Silva, T. E., Tokarski, A., Novak, A. C., De Carvalho, J. C., Woiciecohwski, A.
L., et al. (2011). Screening of microalgae with potential for biodiesel production and nutrient
removal from treated domestic sewage. Applied Energy, 88, 3291–3294.
Takahashi, T., Broecker, W. S., & Langer, S. (1985). Redfield ratio based on chemical data from
isopycnal surfaces. Journal of Geophysical Research: Oceans, 90, 6907–6924.
56
A. P. de Carvalho Lopes et al.
Précédent

- 67/313

Suivant