Assessment of key biological and engineering design parameters for production of Chlorella zofingiensis (Chlorophyceae) in outdoor photobioreactors
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[1] Awwa,et al. Standard Methods for the examination of water and wastewater , 1999 .
[2] Q. Hu,et al. A flexible culture process for production of the green microalga Scenedesmus dimorphus rich in protein, carbohydrate or lipid. , 2013, Bioresource technology.
[3] K. Niyogi,et al. Photo-oxidative Stress in a Xanthophyll-deficient Mutant of Chlamydomonas* , 2004, Journal of Biological Chemistry.
[4] Thomas H. Bradley,et al. Scale‐Up of flat plate photobioreactors considering diffuse and direct light characteristics , 2012, Biotechnology and bioengineering.
[5] D. M. Tillett,et al. Design and operation of an outdoor microalgae test facility , 1989 .
[6] A. Vonshak,et al. Lipid and fatty acid composition of the green oleaginous alga Parietochloris incisa, the richest plant source of arachidonic acid. , 2002, Phytochemistry.
[7] A. Richmond. Handbook of microalgal culture: biotechnology and applied phycology. , 2004 .
[8] 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.
[9] T. Göksan,et al. Effects of light path lengths and initial culture density on the cultivation of Chaetoceros muelleri (Lemmermann, 1898) , 2003 .
[10] Mario R. Tredici,et al. As integrated culture system for outdoor production of microalgae and cyanobacteria , 1997, Journal of Applied Phycology.
[11] Hu Qiang,et al. Combined effects of light intensity, light-path and culture density on output rate of Spirulina platensis (Cyanobacteria) , 1998 .
[12] René H. Wijffels,et al. Maximum Photosynthetic Yield of Green Microalgae in Photobioreactors , 2010, Marine Biotechnology.
[13] C. Trick,et al. Growth at Low Temperature Mimics High-Light Acclimation in Chlorella vulgaris , 1994, Plant physiology.
[14] Eric C. Henry,et al. HANDBOOK OF MICROALGAL CULTURE: BIOTECHNOLOGY AND APPLIED PHYCOLOGY , 2004 .
[15] J. Sevilla,et al. A study on simultaneous photolimitation and photoinhibition in dense microalgal cultures taking into account incident and averaged irradiances , 1996 .
[16] A.J.B. van Boxtel,et al. Design scenarios for flat panel photobioreactors , 2011 .
[17] A. Richmond,et al. Biological Principles of Mass Cultivation , 2007 .
[18] S. Miyachi,et al. Outdoor culture of a cyanobacterium with a vertical flat-plate photobioreactor: effects on productivity of the reactor orientation, distance setting between the plates, and culture temperature , 1999, Applied Microbiology and Biotechnology.
[19] K Maxwell,et al. Chlorophyll fluorescence--a practical guide. , 2000, Journal of experimental botany.
[20] Q. Hu,et al. Effect of initial biomass density on growth and astaxanthin production of Haematococcus pluvialis in an outdoor photobioreactor , 2012, Journal of Applied Phycology.
[21] H Guterman,et al. A flat inclined modular photobioreactor for outdoor mass cultivation of photoautotrophs , 2000, Biotechnology and bioengineering.
[22] A. Wellburn. The Spectral Determination of Chlorophylls a and b, as well as Total Carotenoids, Using Various Solvents with Spectrophotometers of Different Resolution* , 1994 .
[23] Philip Owende,et al. Biofuels from microalgae—A review of technologies for production, processing, and extractions of biofuels and co-products , 2010 .
[24] A. Richmond,et al. Optimization of a flat plate glass reactor for mass production of Nannochloropsis sp. outdoors. , 2001, Journal of biotechnology.
[25] A. Richmond,et al. Optimizing the population density inIsochrysis galbana grown outdoors in a glass column photobioreactor , 1994, Journal of Applied Phycology.
[26] 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 .
[27] A. Richmond,et al. Principles for efficient utilization of light for mass production of photoautotrophic microorganisms , 1997, Applied biochemistry and biotechnology.
[28] Hu Qiang,et al. Productivity and photosynthetic efficiency ofSpirulina platensis as affected by light intensity, algal density and rate of mixing in a flat plate photobioreactor , 2004, Journal of Applied Phycology.
[29] A. E. Greenberg,et al. Standard methods for the examination of water and wastewater : supplement to the sixteenth edition , 1988 .
[30] Zhengyu Hu,et al. Enhancement of eicosapentaenoic acid (EPA) and γ-linolenic acid (GLA) production by manipulating algal density of outdoor cultures of Monodus subterraneus (Eustigmatophyta) and Spirulina platensis (Cyanobacteria) , 1997 .
[31] David Faiman,et al. Optimal tilt angles of enclosed reactors for growing photoautotrophic microorganisms outdoors , 1998 .
[32] T. Masukoa. Carbohydrate analysis by a phenol-sulfuric acid method in microplate format , 2005 .