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The team at Envirogen has a long history of harnessing the science of microbiology to produce high-performance bioreactor systems engineered to eliminate even recalcitrant chemicals from aqueous streams, providing high-quality, potentially recyclable water.
For a broad range of influent flow rates and contaminant concentration levels, our fluidized bed reactor (FBR) system is often the most economical treatment choice. To read about how our FBR technology is treating perchlorate for a former manufacturing facility in Nevada, click here. To read a progress report on the first ever use of FBR technology to treat perchlorate in groundwater destined for drinking water supplies, click here.
The MBR offers an excellent solution for in-process, at-source treatment applications and can be used in very demanding applications, including streams not commonly considered amenable to biotreatment. Applications include batch chemical plant effluents, landfill leachate, chlorinated solvents in manufacturing wastewaters, publicly owned treatment works with space restrictions, phosphorous control and wastewater from pharmaceutical intermediate manufacture and food and beverage processing. The integrated, fixed-film moving bed, activated sludge biological Suspended Carrier Reactor (SCR) system designs utilized by Envirogen for treatment of municipal and industrial wastewaters are particularly well suited for retrofit of existing conventional municipal activated sludge installations operating at, or exceeding, removal capacity. The process is simple in mechanical design, requiring minimal  additional instrumentation, controls or operator attention and maintenance requirements to the upgraded conventional activated sludge system.
NRG Energy Inc., a wholesale power generation company, recently announced that it will team with GreenFuel Technologies Corporation (GreenFuel) and the New York State Energy Research and Development Authority (NYSERDA) to study carbon dioxide (CO2) recycling.
An algae-based bioreactor will be placed in the smokestack of a coal-fueled power plant, such as this one, in New York. Biodiesel is a biodegradable, clean burning alternative fuel made from easily renewable sources.

Executive Summary - Triangle Energy Group (TEG) has a better idea!  TEG has developed breakthrough technology called PAPCO2TM which is short for Profitable Algae Production using CO2.   PAPCO2TM   energy is renewable, sustainable, and does not compete with food crops.
According to the company, the bioreactor is easy to install and will cause only minimal impact on the plant’s electricity production.
This alternative fuel is particularly beneficial because it is less toxic than table salt, biodegrades as fast as sugar, and has significantly less emissions than petroleum diesel. The oil press, which is the simplest, most widely used method is when algae is pressed, like olives through an olive press, and oil is extracted. This simple end-of-pipe solution can use different carbon sources, does not require backwashing, produces minimal biosoloids, and does not have filter upsets due to accumulating nitrogen bubbles. It is also a popular alternative to regular diesel because it can be used in diesel engines without much alteration, but consumers can add petroleum to their biodiesel mix if they wish to. However, the cons of this include that different strains of bacteria can get involved with the algae causing it to become contaminated, severe weather conditions can stop growth of the algae, and that if a constant temperature is not kept in the pond the algae will come to a halt. However, this process is not that efficient since it only results an average about 75% oil from the algae, while the other two methods can produce results up to 95-100% oil from algae. Biomass is processed into saleable products such as animal feed and bio-fuels.  Coincidently the PAPCO2TM process inherently saves up to 90% of the water consumed at typical electric power plants, a feature that is increasingly valuable especially in southwestern United States and any other arid areas in the world.
The hexane solvent method includes the first process of the oil press, then the remaining algae is mixed with a chemical, mostly cyclo-hexane since it is cheap than other chemicals. After the solution is completely dissolved, the oil, algae, and the cyclo-hexane are filtered out, which results in 95% of oil production from the algae.

Soxhlet extraction is the oil-extraction process in which chemical solvents, like petroleum or hexane, are used to "wash" the algae repeatedly to extract oils. The picture to the right presents a diagram of how algae can be grown in a closed-tank bioreactor plant. The supercritical fluids approach involves using a supercritical fluid, which is when a substance is pressurized and heated into a liquid and a gas, in this case the supercritical liquid is carbon dioxide.
When this form of carbon dioxide is introduced to the algae, the carbon dioxide turns the algae into oil. Once oil is extracted, using any method listed above, it has to go through the process of transesterification, the process of refining oil by using fatty acid chains.
The procedure of transesterification is that a catalyst is added along with alcohol, like methanol to the oil. The product of the catalyst and the alcohol with the oil will be a biodisel along with glycerol.

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