{"page":"\u003clink rel=\"stylesheet\" href=\"https://lessonplanet.com/assets/packs/css/resources-572d6a42.css\" /\u003e\n\u003clink rel=\"stylesheet\" href=\"https://lessonplanet.com/assets/packs/css/lp_boclips_stylesheets-f4d0de30.css\" media=\"all\" /\u003e\n\u003cdiv data-title='Transforming algae into Omega-3 fatty acid' data-url='/boclips/videos/5c54c548d8eafeecae16f0cb' data-video-url='/boclips/videos/5c54c548d8eafeecae16f0cb' id='bo_player_modal'\u003e\n\u003cdiv class='boclips-resource-page modal-dialog panel-container'\u003e\n\u003cdiv class='react-notifications-root'\u003e\u003c/div\u003e\n\u003cdiv class='rp-header'\u003e\n\u003cdiv class='rp-type'\u003e\n\u003ci aria-hidden='true' class='fai fa-regular fa-circle-play'\u003e\u003c/i\u003e\nVideo\n\u003c/div\u003e\n\u003ch1 class='rp-title' id='video-title'\u003e\nTransforming algae into Omega-3 fatty acid\n\u003c/h1\u003e\n\u003cdiv class='rp-actions'\u003e\n\u003cdiv class='mr-1'\u003e\n\u003ca class=\"btn btn-success\" data-posthog-event=\"Signup: LP Signup Activity\" data-posthog-location=\"body_link_boclips\" data-remote=\"true\" href=\"/subscription/new\"\u003e\u003cspan\u003e\u003cspan\u003eGet Free Access\u003c/span\u003e\u003cspan class=\"\"\u003e for 10 Days\u003c/span\u003e\u003cspan\u003e!\u003c/span\u003e\u003c/span\u003e\u003c/a\u003e\n\u003c/div\u003e\n\u003c/div\u003e\n\u003c/div\u003e\n\u003cdiv class='rp-body'\u003e\n\u003cdiv class='rp-info'\u003e\n\u003cdiv aria-label='Hide resource details' class='rp-hide-info' role='button' tabindex='0'\u003e\u0026times;\u003c/div\u003e\n\u003ci aria-label='Expand resource details' class='rp-expand-info fai fa-solid fa-up-right-and-down-left-from-center' role='button' tabindex='0'\u003e\u003c/i\u003e\n\u003ci aria-label='Compress resource details' class='rp-compress-info fai fa-solid fa-down-left-and-up-right-to-center' role='button' tabindex='0'\u003e\u003c/i\u003e\n\u003cdiv class='rp-rating'\u003e\n\u003cspan class='resource-pool'\u003e\n\u003cspan class='pool-label'\u003ePublisher:\u003c/span\u003e\n\u003cspan class='pool-name'\u003e\n\u003cspan class='text'\u003e\u003ca data-publisher-id=\"30356011\" href=\"/search?publisher_ids%5B%5D=30356011\"\u003eCurated Video\u003c/a\u003e\u003c/span\u003e\n\u003c/span\u003e\n\u003c/span\u003e\n\u003c/div\u003e\n\u003cdiv class='rp-description'\u003e\n\u003cspan class='short-description'\u003eAP TelevisionAlicante, Spain - 26 January 20121. Wide pan of tubes containing algae2. Close up of tubes containing algae being injected with CO2 gas3. Wide pan from tubes with algae to engineer taking samples of water4. Camera inside a...\u003c/span\u003e\n\u003cspan class='full-description hide'\u003eAP Television\u003cbr/\u003eAlicante, Spain - 26 January 2012\u003cbr/\u003e1. Wide pan of tubes containing algae\u003cbr/\u003e2. Close up of tubes containing algae being injected with CO2 gas\u003cbr/\u003e3. Wide pan from tubes with algae to engineer taking samples of water\u003cbr/\u003e4. Camera inside a test tube being filled with green water containing algae\u003cbr/\u003e5. Close up of test tube being filled with water containing algae\u003cbr/\u003e6. Close up of engineer pouring oil into a can\u003cbr/\u003e7. Wide of engineer pouring oil into a can\u003cbr/\u003e8. Close up of cement factory where the CO2 is taken\u003cbr/\u003e9. Wide pan from cement factory to green tubes containing algae\u003cbr/\u003e10. Wide of tubes containing algae with cement factory in background \u003cbr/\u003e11. Zoom out of technician checking a device on the top of the plant\u003cbr/\u003e12. Wide of technician working with a computer\u003cbr/\u003e13. Close up of technician working with a computer\u003cbr/\u003e14. Wide of technician working in the middle of the green tubes forest\u003cbr/\u003e15. Close up of tubes containing algae being injected with CO2 gas\u003cbr/\u003e16. Wide pan of green tubes containing algae \u003cbr/\u003e17. SOUNDBITE (Spanish) Eduardo Rodriguez, Chief Engineer BFS Alicante Plant: \u003cbr/\u003e\"In any place with more sunlight, productivity will be increased because the microalgae are photosynthetic organisms and they depend on the light they get.\"\u003cbr/\u003e18. Close up of technician taking sample of water\u003cbr/\u003e19. Wide of technician taking samples of water\u003cbr/\u003e20. Close up of technician picking up a canister containing green water\u003cbr/\u003e21. SOUNDBITE (Spanish) Eduardo Rodriguez, Chief Engineer, BFS Alicante Plant: \u003cbr/\u003e\"Once the multiplication of the microalgae reaches the level that our biologists want, and the biomass concentration inside the tubes is as required, we extract the culture. After that it is taken to the industrial area to separate the microalgae from the water. The water goes back into the system so we can repeat the cycle day after day.\"\u003cbr/\u003e21. Wide of technician moving a barrel filled with biomass\u003cbr/\u003e22. Pan from barrels containing biomass to a close up of a technician opening one of them\u003cbr/\u003e23. Close up of green biomass\u003cbr/\u003e24. Wide of technician mixing biomass\u003cbr/\u003e25. Close of technician hand mixing biomass\u003cbr/\u003e26. SOUNDBITE (Spanish) Eloy Chapuli, Chief Chemical Engineer, BFS Alicante Plant: \u003cbr/\u003e\"To make the process profitable we have to balance the energy value that we can get from oil, with the economic profitability of the sub products. We are focusing right now on the extraction of Omega 3, a very well-known product with lots of applications for human health.\"\u003cbr/\u003e27. Two engineers entering the plant section where biomass is converted into oil\u003cbr/\u003e28. Wide of engineer Eloy Chapuli checking a device that transforms biomass into oil\u003cbr/\u003e29. Close of engineer Eloy Chapuli checking a device that transforms biomass into oil\u003cbr/\u003e30. Tilt up from pipes to engineers working\u003cbr/\u003e31. Close up of technician turning the faucet on and oil flowing\u003cbr/\u003e32. Close up of oil flowing\u003cbr/\u003e33. Wide of two executives checking the quality of an oil sample\u003cbr/\u003e34. Close of two executives checking the quality of an oil sample\u003cbr/\u003e35. Technician pouring fuel into a petrol burner to demonstrate that bio-oil has the same energy effect as fossil oil.\u003cbr/\u003e36. Wide of technician getting ready to switch on a petrol burner\u003cbr/\u003e37. Close up of oil burner being switched on and a flame coming through it\u003cbr/\u003e38. Wide of technician showing how oil burner works\u003cbr/\u003e39. Close up of flame\u003cbr/\u003e40. Close pan of a chemist testing samples of water with algae in a laboratory \u003cbr/\u003e41. Wide of a chemist testing samples of water with algae in a laboratory\u003cbr/\u003e42. Close pan of a chemist testing samples of water with algae in a laboratory\u003cbr/\u003e43. Wide of chemist analysing samples with a microscope\u003cbr/\u003e44. Close up of microscope \u003cbr/\u003e45. Close up of chemist analysing samples with a microscope\u003cbr/\u003e46. SOUNDBITE (English) Bernard A.J. Stroiazzo-Mougin, Founder and Chairman BFS: \u003cbr/\u003e\"The main problem of the fossil fuel is that for each barrel of oil you issue 450kgs (990 lbs) of CO2. In our system is the reverse, for each barrel we burn in a car or in an aircraft or wherever you want, we reduce one ton of CO2.\"\u003cbr/\u003e47. Wide of Stroiazzo-Mougin with other executives checking the plant drafts\u003cbr/\u003e48. Close up of plant draft\u003cbr/\u003e49. Close up of Stroiazzo-Mougin looking at plant draft\u003cbr/\u003e50. Wide of Stroiazzo-Mougin looking at plant draft\u003cbr/\u003e51. SOUNDBITE (English) Bernard A.J. Stroiazzo-Mougin, Founder and Chairman BFS: \u003cbr/\u003e\"Spain consumes around 1.6 million barrels per day. To make that 1.6 million barrel we need an extension of 40km by 40km (25 milesx25 miles). That is nothing, we have many places that are deserted in the south of Spain, it can cover that. And many countries can do that.\"\u003cbr/\u003e52. Wide of sun\u003cbr/\u003e53. Wide of Alicante beach\u003cbr/\u003e54. Mid of water \u003cbr/\u003e55. Close up of Alicante beach\u003cbr/\u003eA Spanish company is experimenting with the transformation of algae into Omega-3 fatty acid.\u003cbr/\u003eIt's hoped the sale of this by-product will fund future bio-oil production.\u003cbr/\u003eThis tube forest in Alicante on the east coast of Spain is the result of a Franco-Spanish project that started in 2006 with the collaboration of the University of Alicante.\u003cbr/\u003eThe green liquid inside these giant tubes is mainly seawater, algae and CO2. \u003cbr/\u003eWith the help of the sun and a patented and secret industrial process, this green liquid can be turned, in only one day, into oil. \u003cbr/\u003eThe idea is simple according to BFS (Bio Fuel Systems), the Spanish company running this experimental project: to replicate the long process that millions of years ago created the fossil oil that we have been using for decades. \u003cbr/\u003eThe CO2 released by a nearby cement factory is transported through a 600-metre (1970 feet) pipeline into the 300 tubes filled with liquid algae.\u003cbr/\u003eInside these 8 metre (26 feet) high tubes, photosynthesis causes microorganisms to multiply.\u003cbr/\u003eThe microalgae formed absorbs the CO2.\u003cbr/\u003eEduardo Rodriguez, Chief Engineer of the plant says Alicante's sunny climate makes it a perfect location for algae oil production:\u003cbr/\u003e\"In any place with more sunlight, productivity will be increased because the microalgae are photosynthetic organisms and they depend on the light they get.\"\u003cbr/\u003eChemical and biological tests are being performed daily to find out which kind of algae is most energy efficient and most profitable. \u003cbr/\u003e\"Once the multiplication of the microalgae reaches the level that our biologists want, and the biomass concentration inside the tubes is as required, we extract the culture. After that it is taken to the industrial area to separate the microalgae from the water. The water goes back into the system so we can repeat the cycle day after day,\" explains Rodriguez. \u003cbr/\u003eThe biomass extracted after the filtering process is a sticky and smelly green substance.\u003cbr/\u003e98% of the biomass goes through a liquefaction and high-pressure process that turns it into bio-oil.\u003cbr/\u003eThe remaining 2% can be used for non fuel applications in the pharmaceutical or cosmetic industries.  \u003cbr/\u003eBFS is currently experimenting with the extraction of Omega 3 fatty-acid, a sub-product they currently deem more profitable than bio-oil commercialisation. \u003cbr/\u003eThe company says the sub product will fund the investment needed to build the plants that will allow it to produce bio-oil at constant market prices. \u003cbr/\u003eThe company estimates the price of it's bio-oil could be around $60 a barrel. The price of Brent crude oil currently stands at $120 a barrel (21st February 2012).  \u003cbr/\u003eEloy Chapuli, Chief Chemical Engineer of BFS says: \"To make the process profitable we have to balance the energy value that we can get from oil, with the economic profitability of the sub products. We are focusing right now on the extraction of Omega 3, a very well-known product with lots of applications for human health.\"\u003cbr/\u003eThe bio-oil produced here has similar characteristics as fossil oil, and can be refined into gasoline, diesel, plastic or kerosene. But the company say the beauty of their product is that it helps rather than hinders the environment. \u003cbr/\u003eThe founder and CEO of BFS, Bernard A.J. Stroiazzo-Mougin, claims his project will recycle carbon dioxide gases which otherwise would be released into the atmosphere.\u003cbr/\u003e\"The main problem of the fossil fuel is that for each barrel of oil you issue 450kgs (990 lbs) of CO2. In our system is the reverse, for each barrel we burn in a car or in an aircraft or wherever you want, we reduce one ton of CO2.\"\u003cbr/\u003eThe company has trademarked its oil, calling it 'Blue Petroleum', due to its eco-friendly properties.\u003cbr/\u003eBut it still faces a big challenge: how to make the oil profitable.\u003cbr/\u003eA hectare of tubes filled with microalgae produces three to four barrels of bio-oil per day.\u003cbr/\u003eStroiazzo-Mougin is confident. \u003cbr/\u003eHe says that the world's daily oil output -85 million barrels- could be produced over a surface 20 times the Italian island of Sardinia - which covers an area of 23,821 kmÄÅ¼Ë, but production for a single country would be a lot less ambitious:\u003cbr/\u003e\"Spain consumes around 1.6 million barrels per day. To make that 1.6 million barrel we need an extension of 40km by 40km (25 milesx25 miles). That is nothing, we have many places that are deserted in the south of Spain, it can cover that. And many countries can do that.\"\u003cbr/\u003eIn addition to this pilot plant in Alicante, BFS is also building projects in Portugal and Spain.\u003cbr/\u003eA 3 hectare plant in Almeria, southern Spain, is set to be finished by the end of the year.\u003cbr/\u003eAlmost 7,500 green tubes will be installed there.\u003cbr/\u003eExxon, BP, Chevron and Repsol are also investing millions of dollars into the research of algae-oil conversion.  \u003cbr/\u003eBut here in Alicante a laboratory idea is fast turning into a feasible industrial project.\u003cbr/\u003eThe basic elements of this formula are highly available in this part of Spain - sea, algae and lots of sunlight.\u003cbr/\u003e\u003c/span\u003e\n\u003c/div\u003e\n\u003cdiv class='action-container flex justify-between'\u003e\n\u003cbutton aria-expanded='false' aria-label='Read more description' class='rp-full-description' type='button'\u003e\n\u003ci class='fai fa-solid fa-align-left'\u003e\u003c/i\u003e\n\u003cspan 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