Borowitzka MA, Borowitzka LJ (1987) Vitamins and fine chemicals from micro-algae. In:
Borowitzka MA, Borowitzka LJ (eds) Micro-algal biotechnology. Cambridge University
Press, New York
Brentner LB, Eckelman MJ, Zimmerman JB (2011) Combinatorial life cycle assessment to inform
process design of industrial production of algal biodiesel. Environ Sci Technol 45(16):7060–
7067
Busetti A, Thompson T, Tegazzini D et al (2015) Antibiofilm activity of the brown alga Halidrys
siliquosa against clinically relevant human pathogens. Mar Drugs 13(6):3581–3605
Chisti Y (1980) An unusual hydrocarbon. J Ramsay Soc 27:24–26
Chisti Y (2007) Biodiesel from microalgae. Biotechnol Adv 25(3):294–306
Colla LM, Oliveira Reinehr C, Reichert C et al (2007) Production of biomass and nutraceutical
compounds by Spirulina platensis under different temperature and nitrogen regimes. Bioresour
Technol 98:1489–1493
Dawczynski C, Schaefer U, Leiterer M et al (2007) Nutritional and toxicological importance of
macro, trace, and ultra-trace elements in algae food products. J Agric Food Chem 55:10470–
10475
de Morais MG, de Freitas BC, Moraes L et al (2019) Liquid biofuels from microalgae: recent trends.
In: Hosseini M (ed) Advanced bioprocessing for alternative fuels, biobased chemicals, and
bioproducts: technologies and approaches for scale-up and commercialization. Academic Press,
Woodhead Publishing, Cambridge, pp 351–372
de Souza Leite L, Hoffmann MT, Daniel LA (2019) Microalgae cultivation for municipal and
piggery wastewater treatment in Brazil. J Water Process Eng 31:100821
de Souza MH, Calijuri ML, Assemany PP et al (2019) Soil application of microalgae for nitrogen
recovery: a life-cycle approach. J Clean Prod 211:342–349
Demirbas A (2010) Use of algae as biofuel sources. Energy Convers Manag 51(12):2738–2749
Demirbas A, Demirbas MF (2010) Algae energy: algae as a new source of biodiesel. Springer, New
York
D'Este M, Alvarado-Morales M, Angelidaki I (2017) Laminaria digitata as potential carbon source
in heterotrophic microalgae cultivation for the production of fish feed supplement. Algal Res
26:1–7
Devi MA, Subbulakshmi G, Devi KM et al (1981) Studies on the proteins of mass-cultivated, bluegreen alga (Spirulina platensis). J Agric Food Chem 29(3):522–525
Dewapriya P, Kim SK (2014) Marine microorganisms: an emerging avenue in modern
nutraceuticals and functional foods. Food Res Int 56:115–125
Du Z, Li Y, Wang X et al (2011) Microwave-assisted pyrolysis of microalgae for biofuel production. Bioresour Technol 102:4890–4896
Fabregas J, Herrero C (1990) Vitamin content of four marine microalgae. Potential use as source of
vitamins in nutrition. J Ind Microbiol 5(4):259–263
Fedorov AS, Kosourov S, Ghirardi ML et al (2005) Continuous hydrogen photoproduction by
Chlamydomonas reinhardtii. Appl Biochem Biotechnol 121(1–3):403–412
Ferrell J, Sarisky-Reed V (2010) National algal biofuels technology roadmap. US Department of
Energy, Office of Energy Efficiency and Renewable Energy, Biomass program, Washington,
DC
Gangl D, Zedler JA, Rajakumar PD et al (2015) Biotechnological exploitation of microalgae. J Exp
Bot 66(22):6975–6990
Gastineau R, Turcotte F, Pouvreau JB et al (2014) Marennine, promising blue pigments from a
widespread Haslea diatom species complex. Mar Drugs 12(6):3161–3189
Gavrilescu M, Chisti Y (2005) Biotechnology—a sustainable alternative for chemical industry.
Biotechnol Adv 23(7–8):471–499
Gong Y, Hu H, Gao Y et al (2011) Microalgae as platforms for production of recombinant proteins
and valuable compounds: progress and prospects. J Ind Microbiol Biotechnol 38(12):1879–
1890
7 Aquatic Microbial Oxygenic Phototrophs: A Short Treatise on Diverse. . .
149
Précédent

- 161/372

Suivant