Applied Microbiology and Biotechnology, ISSN 0175-7598, 12/2019, Volume 103, Issue 23, pp. 9345 - 9358
Microalgae are versatile sources of bioproducts, a solution for many environmental problems. However, and despite its importance, one of the main problems in...
Life Sciences | Biotechnology | Control | Mass cultures | Microbiology | Microbial Genetics and Genomics | Microalgae | Contamination | Algal parasites | Physicochemical treatment | Crashes | Cultivation | Algae | Pollution control | Pollution monitoring | Control systems | Cultures | Biocides | Chemical pollution | Organic chemistry | Closed systems | Microorganisms | Contaminants | Chemical control | Open systems | Biological contamination | Index Medicus
Life Sciences | Biotechnology | Control | Mass cultures | Microbiology | Microbial Genetics and Genomics | Microalgae | Contamination | Algal parasites | Physicochemical treatment | Crashes | Cultivation | Algae | Pollution control | Pollution monitoring | Control systems | Cultures | Biocides | Chemical pollution | Organic chemistry | Closed systems | Microorganisms | Contaminants | Chemical control | Open systems | Biological contamination | Index Medicus
Journal Article
Bioresource Technology, ISSN 0960-8524, 06/2014, Volume 161, pp. 47 - 54
The opportunity to recycle microalgal culture medium for further cultivation is often hampered by salinity increases from evaporation and fouling by dissolved...
Electro-flocculation | Marine microalgae | Recycling | Mixotrophy | BIOTECHNOLOGY | FLOCCULATION | AGRICULTURAL ENGINEERING | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | ENERGY & FUELS | ALGAE | PLATYMONAS | CULTIVATION | Pilot Projects | Microalgae - growth & development | Culture Media | Culture Techniques | Flocculation | Water - analysis | Salt-Tolerance | Biomass | Chlorophyta - growth & development | Organic Chemicals - analysis | Salinity | Ponds | Recycling (Waste, etc.) | Productivity | Cultivation | Strategy | Recycled | Culture
Electro-flocculation | Marine microalgae | Recycling | Mixotrophy | BIOTECHNOLOGY | FLOCCULATION | AGRICULTURAL ENGINEERING | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | ENERGY & FUELS | ALGAE | PLATYMONAS | CULTIVATION | Pilot Projects | Microalgae - growth & development | Culture Media | Culture Techniques | Flocculation | Water - analysis | Salt-Tolerance | Biomass | Chlorophyta - growth & development | Organic Chemicals - analysis | Salinity | Ponds | Recycling (Waste, etc.) | Productivity | Cultivation | Strategy | Recycled | Culture
Journal Article
Journal of Applied Phycology, ISSN 0921-8971, 8/2001, Volume 13, Issue 4, pp. 307 - 315
Cultivation of microalgae using natural and man-made open-ponds istechnologically simple, but not necessary cheap due to the high downstream processing cost....
Life Sciences | Hydrobiology | culture method | culture process | mixotrophy | heterotrophy | microalgae | Ecology | Plant Physiology | Plant Sciences | culture system | Culture process | Microalgae | Culture system | Heterotrophy | Mixotrophy | Culture method | ALGAL BIOMASS PRODUCTION | HETEROTROPHIC PRODUCTION | TUBULAR PHOTOBIOREACTOR | COMMERCIAL PRODUCTION | CHLORELLA-VULGARIS | CHEMOSTAT CULTURE | MIXOTROPHIC GROWTH | EUGLENA-GRACILIS Z | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | MARINE & FRESHWATER BIOLOGY | SPIRULINA-PLATENSIS | EFFICIENT PRODUCTION
Life Sciences | Hydrobiology | culture method | culture process | mixotrophy | heterotrophy | microalgae | Ecology | Plant Physiology | Plant Sciences | culture system | Culture process | Microalgae | Culture system | Heterotrophy | Mixotrophy | Culture method | ALGAL BIOMASS PRODUCTION | HETEROTROPHIC PRODUCTION | TUBULAR PHOTOBIOREACTOR | COMMERCIAL PRODUCTION | CHLORELLA-VULGARIS | CHEMOSTAT CULTURE | MIXOTROPHIC GROWTH | EUGLENA-GRACILIS Z | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | MARINE & FRESHWATER BIOLOGY | SPIRULINA-PLATENSIS | EFFICIENT PRODUCTION
Journal Article
Journal of Biotechnology, ISSN 0168-1656, 12/2016, Volume 240, pp. 1 - 13
Under high light conditions, microalgae are oversaturated with light which significantly reduces the light use efficiency. Microalgae with a reduced pigment...
Competition | Photosynthetic efficiency | Areal biomass productivity | Chlorella sorokiniana | Antenna size mutant | FLUCTUATING LIGHT | PHOTOBIOREACTOR | CHLAMYDOMONAS-REINHARDTII | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | LIGHT-DARK CYCLE | GROWTH | SOLAR | PRODUCTIVITY | CHLORELLA-SOROKINIANA | PHYTOPLANKTON | Chlorella - ultrastructure | Biomass | Photobioreactors | Chlorella - genetics | Netherlands | Genetic Engineering | Photosynthesis - genetics | Light | Microalgae - genetics | Models, Genetic | Kinetics | Mutation | Tunisia | Models | Antennas (Electronics) | Photosynthesis | Analysis | Productivity | Computer simulation | Simulation | Cultivation | Efficiency | Culture | Antennas
Competition | Photosynthetic efficiency | Areal biomass productivity | Chlorella sorokiniana | Antenna size mutant | FLUCTUATING LIGHT | PHOTOBIOREACTOR | CHLAMYDOMONAS-REINHARDTII | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | LIGHT-DARK CYCLE | GROWTH | SOLAR | PRODUCTIVITY | CHLORELLA-SOROKINIANA | PHYTOPLANKTON | Chlorella - ultrastructure | Biomass | Photobioreactors | Chlorella - genetics | Netherlands | Genetic Engineering | Photosynthesis - genetics | Light | Microalgae - genetics | Models, Genetic | Kinetics | Mutation | Tunisia | Models | Antennas (Electronics) | Photosynthesis | Analysis | Productivity | Computer simulation | Simulation | Cultivation | Efficiency | Culture | Antennas
Journal Article
Journal of Applied Phycology, ISSN 0921-8971, 2/2017, Volume 29, Issue 1, pp. 67 - 78
Interactions between algae and associated bacterial communities in the phycosphere depend on many factors such as culture age, nutrient availability, and...
Life Sciences | Microalgal mass cultures | T-RFLP | Tetraselmis | Freshwater & Marine Ecology | ARDRA | Plant Physiology | Ecology | Bacteria isolation | Plant Sciences | Bacterial community | GEN. NOV | AQUACULTURE | NANNOCHLOROPSIS SP | PSEUDO-NITZSCHIA | ALGAL GROWTH | MICROALGAE | ORGANIC-MATTER DOM | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | CHLORELLA-MINUTISSIMA | MARINE & FRESHWATER BIOLOGY | PHYTOPLANKTON | COMB. NOV | Bacteria | Microbiology | Analysis | Sea-water
Life Sciences | Microalgal mass cultures | T-RFLP | Tetraselmis | Freshwater & Marine Ecology | ARDRA | Plant Physiology | Ecology | Bacteria isolation | Plant Sciences | Bacterial community | GEN. NOV | AQUACULTURE | NANNOCHLOROPSIS SP | PSEUDO-NITZSCHIA | ALGAL GROWTH | MICROALGAE | ORGANIC-MATTER DOM | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | CHLORELLA-MINUTISSIMA | MARINE & FRESHWATER BIOLOGY | PHYTOPLANKTON | COMB. NOV | Bacteria | Microbiology | Analysis | Sea-water
Journal Article
Applied and Environmental Microbiology, ISSN 0099-2240, 2015, Volume 81, Issue 12, pp. 3900 - 3913
Microbial contamination is the main cause of loss of biomass yield in microalgal cultures, especially under outdoor environmental conditions. Little is known...
PARASITES | POSITION | INTERFACE | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | SEQUENCE ALIGNMENT | GROWTH | FILOSE AMEBAS | MICROBIOLOGY | NAKED FILOSE | INFERENCE | PHYLOGENETIC TREES | CILIOPHORA | Microscopy, Electron, Transmission | Cercozoa - genetics | Pseudopodia - ultrastructure | Microalgae - growth & development | Cercozoa - physiology | Cercozoa - ultrastructure | Phylogeny | Cercozoa - isolation & purification | Sequence Analysis, DNA | Photobioreactors - parasitology | Sequence Alignment | Scenedesmus - parasitology | Microalgae - parasitology | Pseudopodia - genetics | DNA, Protozoan - genetics | Pseudopodia - physiology | Scenedesmus - growth & development | Trophozoites - ultrastructure | Ponds - parasitology | DNA, Ribosomal - genetics | Environmental Microbiology
PARASITES | POSITION | INTERFACE | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | SEQUENCE ALIGNMENT | GROWTH | FILOSE AMEBAS | MICROBIOLOGY | NAKED FILOSE | INFERENCE | PHYLOGENETIC TREES | CILIOPHORA | Microscopy, Electron, Transmission | Cercozoa - genetics | Pseudopodia - ultrastructure | Microalgae - growth & development | Cercozoa - physiology | Cercozoa - ultrastructure | Phylogeny | Cercozoa - isolation & purification | Sequence Analysis, DNA | Photobioreactors - parasitology | Sequence Alignment | Scenedesmus - parasitology | Microalgae - parasitology | Pseudopodia - genetics | DNA, Protozoan - genetics | Pseudopodia - physiology | Scenedesmus - growth & development | Trophozoites - ultrastructure | Ponds - parasitology | DNA, Ribosomal - genetics | Environmental Microbiology
Journal Article
Algal Research, ISSN 2211-9264, 08/2019, Volume 41, p. 101539
Microbial contamination is a devastating threat to the success of oleaginous microalgae mass cultivation. Fungal parasites are likely to infect cultivated...
Oleaginous microalgae | Fungal parasites | Surfactants | Open raceway ponds | Microbial contamination | BLASTOCLADIOMYCOTA | EPIBIOTIC PARASITE | CONTAMINATION | PESTICIDES | BIOFUELS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | ALGAE | ZOOSPORIC PARASITES | CULTIVATION
Oleaginous microalgae | Fungal parasites | Surfactants | Open raceway ponds | Microbial contamination | BLASTOCLADIOMYCOTA | EPIBIOTIC PARASITE | CONTAMINATION | PESTICIDES | BIOFUELS | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | ALGAE | ZOOSPORIC PARASITES | CULTIVATION
Journal Article
JOURNAL OF PHYCOLOGY, ISSN 0022-3646, 04/2016, Volume 52, Issue 2, pp. 252 - 259
It is envisioned that mass algal cultivation for commercial biofuels production will entail the use of large raceway pond systems, which typically have...
non-photochemical quenching | phytochrome | THALASSIOSIRA-PSEUDONANA BACILLARIOPHYCEAE | water column optics | mass culture | PHOTOADAPTATION | DIATOMS | diatom | red:blue wavelength ratio | PLANT SCIENCES | HIGH LIGHT ACCLIMATION | MICROALGAE | EVOLUTION | FLUORESCENCE | linear growth phase | MARINE & FRESHWATER BIOLOGY | MARINE-PHYTOPLANKTON | PHOTOSYNTHESIS | PHOTORECEPTORS | Diatoms - growth & development | Photosynthesis - radiation effects | Water | Diatoms - radiation effects | Light | Color | Chlorophyll - metabolism | Acclimatization - drug effects | Spectrum Analysis | Cell Culture Techniques - methods | Diatoms - cytology
non-photochemical quenching | phytochrome | THALASSIOSIRA-PSEUDONANA BACILLARIOPHYCEAE | water column optics | mass culture | PHOTOADAPTATION | DIATOMS | diatom | red:blue wavelength ratio | PLANT SCIENCES | HIGH LIGHT ACCLIMATION | MICROALGAE | EVOLUTION | FLUORESCENCE | linear growth phase | MARINE & FRESHWATER BIOLOGY | MARINE-PHYTOPLANKTON | PHOTOSYNTHESIS | PHOTORECEPTORS | Diatoms - growth & development | Photosynthesis - radiation effects | Water | Diatoms - radiation effects | Light | Color | Chlorophyll - metabolism | Acclimatization - drug effects | Spectrum Analysis | Cell Culture Techniques - methods | Diatoms - cytology
Journal Article
Journal of Applied Phycology, ISSN 0921-8971, 12/2015, Volume 27, Issue 6, pp. 2239 - 2250
Hydrothermal gasification is a process which uses any biomass or carbon-containing source as substrate to generate biogas of regenerative energy production. We...
Life Sciences | Microalgae mass culture | Renewable energy | Freshwater & Marine Ecology | Plant Physiology | Ecology | Hydrothermal gasification | Plant Sciences | Nutrient recycling | OXIDATIVE STRESS | NITROGEN-CYCLE | CHLORELLA-VULGARIS | AROMATIC-HYDROCARBONS | AQUEOUS-PHASE | BIODIESEL PRODUCTION | ACTIVATED CARBON | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | MARINE & FRESHWATER BIOLOGY | PHOTOSYNTHETIC ELECTRON-TRANSPORT | PHOTOSYSTEM-II | CULTIVATION | Biogas | Photosynthesis | Biomass energy | Cells | Recycling (Waste, etc.)
Life Sciences | Microalgae mass culture | Renewable energy | Freshwater & Marine Ecology | Plant Physiology | Ecology | Hydrothermal gasification | Plant Sciences | Nutrient recycling | OXIDATIVE STRESS | NITROGEN-CYCLE | CHLORELLA-VULGARIS | AROMATIC-HYDROCARBONS | AQUEOUS-PHASE | BIODIESEL PRODUCTION | ACTIVATED CARBON | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | MARINE & FRESHWATER BIOLOGY | PHOTOSYNTHETIC ELECTRON-TRANSPORT | PHOTOSYSTEM-II | CULTIVATION | Biogas | Photosynthesis | Biomass energy | Cells | Recycling (Waste, etc.)
Journal Article
Biofuels, ISSN 1759-7269, 03/2017, Volume 8, Issue 2, pp. 243 - 252
In the optimization of medium for open phototrophic pond cultivation of microalgae, Acutodesmus obliquus RDS01, response surface methodology (RSM) was used and...
GC-MS | FAME | FTIR | Acutodesmus obliquus RDS01 | Biomass | RSM | total lipid | SYSTEM | MICROALGAE | OIL | ENERGY & FUELS | PURIFICATION
GC-MS | FAME | FTIR | Acutodesmus obliquus RDS01 | Biomass | RSM | total lipid | SYSTEM | MICROALGAE | OIL | ENERGY & FUELS | PURIFICATION
Journal Article
Water Research, ISSN 0043-1354, 04/2014, Volume 52, pp. 29 - 39
The present work deals with the experimental fluid mechanics analysis of a wavy-bottomed cascade photobioreactor, to characterize the extent and period of...
Fluid mechanics | Recirculation | Microalgae | Particle tracking | Photobioreactor | ENVIRONMENTAL SCIENCES | ENGINEERING, ENVIRONMENTAL | LIGHT | WATER RESOURCES | Biotechnology - methods | Image Processing, Computer-Assisted | Microalgae - physiology | Photobioreactors | Photosynthesis | Equipment Design | Biotechnology - instrumentation | Analysis | Fluid dynamics | Bubble columns | Flow rate | Cascades | Vanes | Inclination | Streams
Fluid mechanics | Recirculation | Microalgae | Particle tracking | Photobioreactor | ENVIRONMENTAL SCIENCES | ENGINEERING, ENVIRONMENTAL | LIGHT | WATER RESOURCES | Biotechnology - methods | Image Processing, Computer-Assisted | Microalgae - physiology | Photobioreactors | Photosynthesis | Equipment Design | Biotechnology - instrumentation | Analysis | Fluid dynamics | Bubble columns | Flow rate | Cascades | Vanes | Inclination | Streams
Journal Article
Biotechnology and Bioengineering, ISSN 0006-3592, 01/2009, Volume 102, Issue 1, pp. 100 - 112
Thirty microalgal strains were screened in the laboratory for their biomass productivity and lipid content. Four strains (two marine and two freshwater),...
Nannochloropsis | Green Wall Panel (GWP) | microalgae mass culture | renewable fuels | nutrient deprivation | biodiesel | Renewable fuels | Microalgae mass culture | Nutrient deprivation | Green wall panel (GWP) | Biodiesel | ACID | NANNOCHLOROPSIS SP | METABOLISM | CYANOBACTERIA | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | GROWTH | CULTURES | Eukaryota - growth & development | Bioreactors | Light | Biomass | Lipids - biosynthesis | Culture Media - chemistry | Eukaryota - metabolism
Nannochloropsis | Green Wall Panel (GWP) | microalgae mass culture | renewable fuels | nutrient deprivation | biodiesel | Renewable fuels | Microalgae mass culture | Nutrient deprivation | Green wall panel (GWP) | Biodiesel | ACID | NANNOCHLOROPSIS SP | METABOLISM | CYANOBACTERIA | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | GROWTH | CULTURES | Eukaryota - growth & development | Bioreactors | Light | Biomass | Lipids - biosynthesis | Culture Media - chemistry | Eukaryota - metabolism
Journal Article
Algal Research, ISSN 2211-9264, 07/2016, Volume 17, pp. 341 - 347
Productivity of algal mass culture can be severely reduced by contaminating organisms. It is, therefore, important to identify contaminants, determine their...
Microbiome analysis | Second generation sequencing | Biocontamination | Biomass algal crash | Algae mass culture | BACTERIA | COMMUNITIES | ROTIFER | MICROALGAE | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | GROWTH | ALGAE | ECOLOGY | DIVERSITY | READS | WATER | BASIC BIOLOGICAL SCIENCES
Microbiome analysis | Second generation sequencing | Biocontamination | Biomass algal crash | Algae mass culture | BACTERIA | COMMUNITIES | ROTIFER | MICROALGAE | BIOTECHNOLOGY & APPLIED MICROBIOLOGY | GROWTH | ALGAE | ECOLOGY | DIVERSITY | READS | WATER | BASIC BIOLOGICAL SCIENCES
Journal Article
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Full Text
Semi‐continuous mass culture of rotifers (Brachionus plicatilis) using an automatic feeder
Aquaculture Research, ISSN 1355-557X, 01/2012, Volume 43, Issue 1, pp. 91 - 98
This study describes the rotifer mass culture protocol developed at the Institute of Aquaculture (HCMR) in Crete. Rotifers were cultured semi‐continuously at a...
aquaculture | hatcheries | live feed | feeding | Hatcheries | Live feed | Aquaculture | Feeding | SYSTEM | DENSITY | MICROALGAE | FISHERIES | ROTUNDIFORMIS | RAISING ROTIFERS | FOOD
aquaculture | hatcheries | live feed | feeding | Hatcheries | Live feed | Aquaculture | Feeding | SYSTEM | DENSITY | MICROALGAE | FISHERIES | ROTUNDIFORMIS | RAISING ROTIFERS | FOOD
Journal Article