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Algae - Wikipedia

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Marine phytoplankton are mainly comprised of microalgae known ..

Microalgae have the potential to produce more biofuel per acre than any other potential source. The basic idea with algae is that some algae have a high lipid (fat) count, which can be turned into biodiesel. Algae can grow very fast, so the productivity is faster than corn or other possibilities to biofuels. It can be grown on water bodies, so it doesn’t compete for prime agriculture land. It can grow in both fresh and salt water, even if the water is polluted.

Many areas of world/country are ideally suited for algae growth since algae needs large amounts of sunlight, brackish water and carbon dioxide. Those conditions are typical in the costal regions. We are committed to the fact that algae are the best long-term feedstock for biodiesel.

The possibilities for algae continue to evolve. We focus on fast-growing algae and using waste/salty water to grow it. As the algae are growing, it cleans the water and the air. We are enhancing the environment, while producing energy. One advantage is that water used to grow fast-growing algae contains high nutrients, so nutrients can be recycled and money and water can be saved. We continue to search for the least cost, most efficient oil extraction methods which are the key to a successful green fuel project involving algae. There are several uses for algae that can be profitable in the short-term. In fact algae are the highest yielding feedstock for biodiesel.

It can produce up to 250 times the amount of oil per acre as soybeans. Producing biodiesel from algae may be one of the ways to produce enough automotive fuel to replace current fossil fuel usage. Algae produce 7 to 31 time greater oil than palm oil. It is very simple to extract oil from algae. The best algae for biodiesel would be microalgae. Microalgae are an organism capable of photosynthesis that is less than 2 mm in diameter. Macroalgae, like seaweed, is not as widely used in the production of biodiesel. Microalgae has much more oil than macroalgae and it is much faster and easier to grow Microalgae can provide several different types of renewable biofuels. These include methane produced by anaerobic digestion of the algal biomass biodiesel derived from microalgal oil and photobiologically produced biohydrogen.

The idea of using microalgae as a source of fuel is not new but it is now being taken seriously because of the escalating price of petroleum and, more significantly the emerging concern about global warming that is associated with burning fossil fuels The greatest benefit of algae biofuels over other alternative fuels comes from the fact that they can be used in cars and airplanes without any modifications to the currents design of the machines.

The critical issue, after technical feasibility, that is the actual ability to reliably cultivate algal strains that can produce oil at reasonably high productivities, is the overall capital and operating cost of these production systems. The problems in accurately determining the economic viability are accentuated by the fact that there are no large-scale commercial algae biofuels production systems with which to develop and substantiate data. The companies that are developing new technologies and architectures are very protective of their detailed financial data. As such we have we have arrived some authentic data’s from our own experiences and databank. Oil from algae is projected at $2 per gallon, headed towards $1 per gallon.

Biofuel and biochemical production by photosynthetic microorganisms such as cyanobacteria and ..

Preparing lipid by microalgae, comprises: (a) growing photosynthetic microalgae (b) culturing microalgae in stress conditions inducing an overproduction of fat by microalgae (c) extracting lipid produced by the microalgae followed by storing or recovering lipid, where the process comprises circulating an aqueous stream comprising, by mixing, microalgae, carbon dioxide and nutrients, in at least one photosynthetic growth region (3) provided with means allowing irradiation of microalgae of the stream to ensure the photosynthesis, between an inlet (25) of the growth region and outlet (85) of the growth region, and all or part of the stream in outlet of the growth region is reinjected in the photosynthetic growth region in upstream of the outlet, by which all or part of a stream traverses through at least a part of the region of the photosynthetic growth, in step (a) of photosynthetic growth of microalgae.

Transcriptome analysis reveals unique C4 ..

This transcriptomic analysis of M

Surprisingly, active biosynthesis of fatty acids is maintained in some algae species under such conditions, provided there is enough light and CO2 available for photosynthesis

2-Temperature Stress
Temperature has been found to have a major effect on the fatty acid composition of microalgae.

Microalgae have been reported to grow on various light intensities exhibiting remarkable changes in their gross chemical composition, pigment content and photosynthetic activity Moreover, different light intensities and wavelengths have been reported to change the lipid metabolism in microalgae altering the lipid profile High light intensity leads to oxidative damage of PUFA and is also required for the synthesis of C16:1 (3 trans) and alters the level of this fatty acid in microalgae.

Optimization of photosynthesis, growth, and biochemical ..

incisa enabled a global understanding of mechanisms involved in photosynthesis, ..

Microalgae are essential feeds for ..
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