Modelling an Artificial Microalgae-Cyanobacteria Ecosystem
暂无分享,去创建一个
[1] G. Pohnert,et al. A Fateful Meeting of Two Phytoplankton Species—Chemical vs. Cell-Cell-Interactions in Co-Cultures of the Green Algae Oocystis marsonii and the Cyanobacterium Microcystis aeruginosa , 2017, Microbial Ecology.
[2] S. Bonnet,et al. Transfer of diazotroph-derived nitrogen towards non-diazotrophic planktonic communities: a comparative study between Trichodesmium erythraeum, Crocosphaera watsonii and Cyanothece sp. , 2016 .
[3] C. Vílchez,et al. Impact of Microalgae-Bacteria Interactions on the Production of Algal Biomass and Associated Compounds , 2016, Marine drugs.
[4] O. Bernard,et al. Concomitant effects of light and temperature diel variations on the growth rate and lipid production of Dunaliella salina , 2016 .
[5] Mauro Do Nascimento,et al. Cyanobacterial biological nitrogen fixation as a sustainable nitrogen fertilizer for the production of microalgal oil , 2015 .
[6] S. Bonnet,et al. Assessment of the dinitrogen released as ammonium and dissolved organic nitrogen by unicellular and filamentous marine diazotrophic cyanobacteria grown in culture , 2015, Front. Mar. Sci..
[7] K. Olli,et al. Rehabilitating the cyanobacteria – niche partitioning, resource use efficiency and phytoplankton community structure during diazotrophic cyanobacterial blooms , 2015, The Journal of ecology.
[8] R. Flassig,et al. A dynamic growth model of Dunaliella salina: parameter identification and profile likelihood analysis. , 2014, Bioresource technology.
[9] O. Bernard,et al. Modelling the dynamics of carbon–nitrogen metabolism in the unicellular diazotrophic cyanobacterium Crocosphaera watsonii WH8501, under variable light regimes , 2014 .
[10] William B. Zimmerman,et al. Effects of CO2 and pH on Growth of the Microalga Dunaliella salina , 2014 .
[11] C. Brunet,et al. The Challenge of Ecophysiological Biodiversity for Biotechnological Applications of Marine Microalgae , 2014, Marine drugs.
[12] E. Oliveira-Filho,et al. Cyanobacteria and Cyanotoxins: From Impacts on Aquatic Ecosystems and Human Health to Anticarcinogenic Effects , 2013, Toxins.
[13] O. Bernard,et al. Screening and selection of growth-promoting bacteria for Dunaliella cultures , 2013 .
[14] A. Sciandra,et al. Light:dark (12:12 h) quantification of carbohydrate fluxes in Crocosphaera watsonii , 2012 .
[15] D. Vaulot,et al. Unicellular Cyanobacterium Symbiotic with a Single-Celled Eukaryotic Alga , 2012, Science.
[16] E. Fouilland. Biodiversity as a tool for waste phycoremediation and biomass production , 2012, Reviews in Environmental Science and Bio/Technology.
[17] Olivier Bernard,et al. Hurdles and challenges for modelling and control of microalgae for CO2 mitigation and biofuel production , 2011 .
[18] Olivier Bernard,et al. Modeling continuous cultures of microalgae colimited by nitrogen and phosphorus. , 2010, Journal of theoretical biology.
[19] Nicole L. Goebel,et al. GROWTH AND CARBON CONTENT OF THREE DIFFERENT‐SIZED DIAZOTROPHIC CYANOBACTERIA OBSERVED IN THE SUBTROPICAL NORTH PACIFIC 1 , 2008, Journal of phycology.
[20] T. Minowa,et al. A novel microalgal system for energy production with nitrogen cycling , 1999 .
[21] H. Oh,et al. Algae-bacteria interactions: Evolution, ecology and emerging applications. , 2016, Biotechnology advances.
[22] Franz J. Weissing,et al. Competition for light between phytoplankton species : Experimental tests of mechanistic theory , 1999 .
[23] P. Raimbault,et al. improvement of the wet-oxidation procedure for simultaneous determination of particulate organic nitrogen and phosphorus collected on filters , 1994 .
[24] R. Guillard,et al. Culture of Phytoplankton for Feeding Marine Invertebrates , 1975 .