Optimization of Nannochloropsis oculata growth using the response surface method
暂无分享,去创建一个
Arsène Isambert | Claire Joannis-Cassan | P. Spolaore | E. Duran | A. Isambert | Pauline Spolaore | Elie Duran | C. Joannis‐Cassan | Claire Joannis‐Cassan
[1] K. Flynn,et al. Relations between carbon and nitrogen during growth of Nannochloropsis oculata (Droop) Hibberd under continuous illumination. , 1993, The New phytologist.
[2] Mario R Tredici,et al. Growth medium recycling in Nannochloropsis sp. mass cultivation. , 2003, Biomolecular engineering.
[3] A. Richmond,et al. Optimization of a flat plate glass reactor for mass production of Nannochloropsis sp. outdoors. , 2001, Journal of biotechnology.
[4] A. Richmond,et al. Efficient use of strong light for high photosynthetic productivity: interrelationships between the optical path, the optimal population density and cell-growth inhibition. , 2003, Biomolecular engineering.
[5] Mario R. Tredici,et al. A Modular Flat Panel Photobioreactor (MFPP) for indoor mass cultivation of Nannochloropsis sp. under artificial illumination , 2000, Journal of Applied Phycology.
[6] Z. Wen,et al. Application of statistically-based experimental designs for the optimization of eicosapentaenoic acid production by the diatom Nitzschia laevis. , 2001, Biotechnology and bioengineering.
[7] V. Kauppinen,et al. The effect of salinity, nitrate concentration, pH and temperature on eicosapentaenoic acid (EPA) production by the red unicellular alga , 1997 .
[8] M. R. Brown,et al. The vitamin content of microalgae used in aquaculture , 1999, Journal of Applied Phycology.
[9] A. Crolla,et al. Optimization of citric acid production from Candida lipolytica Y-1095 using n-paraffin. , 2001, Journal of biotechnology.
[10] Tawfiq S. Abu-Rezq,et al. Optimum production conditions for different high-quality marine algae , 1999, Hydrobiologia.
[11] Feng Chen,et al. Optimization of nitrogen sources for heterotrophic production of eicosapentaenoic acid by the diatom Nitzschia laevis , 2001 .
[12] Graziella Chini Zittelli,et al. Mass cultivation of Nannochloropsis sp. in annular reactors , 2003, Journal of Applied Phycology.
[13] F. Figueroa,et al. Effects of high irradiance and temperature on photosynthesis and photoinhibition in Nannochloropsis gaditana Lubián (Eustigmatophyceae) , 1997 .
[14] E. Barbarino,et al. Effects of different nitrogen sources on the growth and biochemical profile of 10 marine microalgae in batch culture: an evaluation for aquaculture , 2002 .
[15] G. C. Zittelli,et al. Production of eicosapentaenoic acid by Nannochloropsis sp. cultures in outdoor tubular photobioreactors , 1999 .
[16] R. Guillard,et al. Studies of marine planktonic diatoms. I. Cyclotella nana Hustedt, and Detonula confervacea (cleve) Gran. , 1962, Canadian journal of microbiology.
[17] F. García-Camacho,et al. Biomass nutrient profiles of the microalga Nannochloropsis. , 2001, Journal of agricultural and food chemistry.
[18] T. Tonon,et al. Long chain polyunsaturated fatty acid production and partitioning to triacylglycerols in four microalgae. , 2002, Phytochemistry.
[19] A. Carvalho,et al. Kinetic Modeling of the Autotrophic Growth of Pavlova lutheri: Study of the Combined Influence of Light and Temperature , 2008, Biotechnology progress.
[20] M. Henriques,et al. Growth aspects of the marine microalga Nannochloropsis gaditana. , 2003, Biomolecular engineering.
[21] A. Richmond,et al. Effect of light-path length in outdoor flat plate reactors on output rate of cell mass and of EPA in Nannochloropsis sp. , 1999 .
[22] Daniel Chaumont,et al. Modelling of growth of Porphyridium cruentum in connection with two interdependent factors: Light and temperature , 1992 .
[23] A. Richmond,et al. An industrial-size flat plate glass reactor for mass production of Nannochloropsis sp. (Eustigmatophyceae) , 2001 .