Sunday, January 14, 2007

Diatoms Under Millions of Years of Ice!

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December, 2006 issue of Scientific American, Via REUTERS/Deborah Zabarenko, Environment Correspondent

Scientists drill back in time in Antarctica

The article reports on an Antarctic drilling to find clues to a time when Antarctica was warm and wet. The reason for this research is because the researchers are convinced that a warmer age is in prospect as a result of human-spurred global climate change, they want to know what things were like 10 million years ago, when warmer periods tended to wax and wane on the southern continent.

While this is not directly related to biodiesel from algae, there is one piece of input I found interesting:

To do this research, they examine core samples taken from the seabed, layer after layer of what looks like solidified gray-green muck....

Recently, the scientists found a 200-foot (60 meter) length of core that was loaded with microscopic algae called diatoms. The sediment was so rich in tiny algae skeletons that they dubbed this material diatomite.

Interesting, isn't it? Diatoms also happen to be one of the candidates explored for suitablity for oil/biofuel. Seems like where nothing else can grow, there are always algae!

ANDRILL stands for Antarctic geological drilling and is a multinational collaboration among Germany, Italy, New Zealand and the United States.

More information is available online at http://www.andrill.org.

Full article here

Oilgae - Oil & Biodiesel from Algae
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algOS - Biodiesel from Algae Open Source


About Oilgae - Oilgae - Oil & Biodiesel from Algae has a focus on biodiesel production from algae while also discussing alternative energy in general. Algae present an exciting possibility as a feedstock for biodiesel, and when you realise that oil was originally formed from algae - among other related plants - you think "Hey! Why not oil again from algae!"

To facilitate exploration of oil production from algae as well as exploration of other alternative energy avenues, Oilgae provides web links, directory, and related resources for algae-based biofuels / biodiesel along with inputs on new inventions, discoveries & breakthroughs in other alternative energy domains such as solar, wind, nuclear, hydro, geothermal, hydrogen & fuel cells, gravitational, geothemal, human-powered, ocean & wave / tidal energy. We hope Oilgae proves to be useful as a research information & inputs resources, and as a source of news & info for business & trade of algal oil, algal fuels & new alternative energy products - specially with regard to new feedstock / feedstocks, production processes and uses, and market info such as price / prices, data & statistics

Saturday, January 13, 2007

Running on Microbes - Developing Microbial Fuel Cells

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Do you know that oil derived from algae is an exciting renewable fuel possibility? - see Oilgae for more.

Running on Microbes - Developing Microbial Fuel Cells
From PhysOrg

Excerpts:

1. USC College’s Ken Nealson leads a multidisciplinary team of biologists, chemists, earth scientists and engineers developing a microbial fuel cell capable of powering small devices that might include tiny surveillance planes and environmental sensors.
2. Geobiologist Kenneth Nealson leads a USC College-based effort to develop bacteria-powered fuel cells that could act as remote, portable power supplies for a multitude of purposes, ranging from remote sensors to tiny insect-like surveillance drones for use in combat zones.
3. In 2006, the U.S. Air Force Office of Scientific Research awarded Nealson and his team a $4.5 million Multidisciplinary University Research Initiative (MURI) grant to take the microbial fuel cell from great idea to usable power source.
4. The bacteria at the heart of the USC microbial fuel cell is Shewanella oneidensis MR-1, a microbe. First discovered by Nealson, in addition to generating electricity, MR-1 and its relatives can “breathe” metal, clean up toxic residue in water and even keep brass, iron, copper and aluminum corrosion free.
5. One of the most exciting things about the project is that the microbes can use such a wide variety of fuels — ordinary milk would work, but so would honey or a dead fish — to make the current flow.
6. In an experimental project a simple battery was built with two different kinds of metal in a liquid medium, electrons flowing through a wire from one metal to the other. Without MR-1, the battery runs for a few days, and then runs down. But when researchers added MR-1 to this setup, creating a bacterial battery, the power steadily increased during the 90-day experiment. Much like what happens chemically in a regular battery, bacteria in fuel cells can strip electrons from organic material and produce an electric current.
7. Thanks to the team’s use of a combination of approaches, they have already made progress in kicking up energy production.
8. With some new parts -a better membrane and assembly that houses the membrane and electrodes - the fuel cell produced about 100 times more power.
9. Right now understanding just how these bacteria interact with the fuel cell anode to produce useful electric energy is the major challenge. Once this is understood, he expects that upping the electrical output of the fuel cells should be a straightforward bioengineering problem.
10. Nealson, along with Steven Finkel and Byung-Hong Kim, lead the search for biological and genetic solutions to the challenge.
11. In 2002, Nealson identified genes thought to be responsible for electrical production in MR-1.Nealson hopes that by understanding the biological mechanisms involved in the microbe’s electrical current production, he will be able to genetically engineer an MR-1 strain that will produce hundreds to thousands times the amount of energy of its forebears.
12. In another tack, the team has seen some rise in power output from changing the bacterial growth conditions in the fuel cell device.
13. A 2006 paper by Yuri Gorby of the J. Craig Venter Institute in San Diego and co-authored by Nealson revealed a network of living nanowires linking the bacteria in a kind of electrical grid. Nealson speculates that the network of nanowires, actually bacterial filaments called pili, offers a more efficient pathway for electrons traveling to the anode and thus a stronger current.
14. There is a focus on two strategies to boost the bug’s power. First, by studying ways to increase the survival time and growth for the MR-1 microbes living in the fuel cell. Second, by looking at ways to increase the electron output for each cell. 15. Another element of the team’s study will be to see if adding other bacteria to the mix can enhance the fuel cell performance — by breaking down waste, by using materials MR-1 can’t use, or by changing acidity or other parameters.
16. “Once we have an optimal cell, the engineers will start looking at how to make this a thousand times bigger or a thousand times smaller,”...
17. Paul Ronney, an astronaut and world authority on micro-scale power generation, will use techniques developed for his research on combustion with conventional fuels to understand the dynamics of the microbes living in the fuel cell.
18. Paul Ronney and fellow mechanical engineer Hai Wong, both of the Viterbi School of Engineering and co-investigators on the MURI project, will use data collected from the prototypes to build a mathematical model that will predict an optimal design for the microbial fuel cell.
19. The interdisciplinary team, which also includes geochemist Andreas Luttge of Rice University, provides an unparalleled perspective onto a scientific problem. “We have the big picture of what’s going on, as well as all of the details — the microbiology, genetics, electrochemistry, microscopy — all of it."

Source: By Eva Emerson / Eric Mankin, USC College

Read the full article here

Oilgae - Oil & Biodiesel from Algae
Oilgae Blog
algOS - Biodiesel from Algae Open Source


About Oilgae - Oilgae - Oil & Biodiesel from Algae has a focus on biodiesel production from algae while also discussing alternative energy in general. Algae present an exciting possibility as a feedstock for biodiesel, and when you realise that oil was originally formed from algae - among other related plants - you think "Hey! Why not oil again from algae!"

To facilitate exploration of oil production from algae as well as exploration of other alternative energy avenues, Oilgae provides web links, directory, and related resources for algae-based biofuels / biodiesel along with inputs on new inventions, discoveries & breakthroughs in other alternative energy domains such as solar, wind, nuclear, hydro, geothermal, hydrogen & fuel cells, gravitational, geothemal, human-powered, ocean & wave / tidal energy. We hope Oilgae proves to be useful as a research information & inputs resources, and as a source of news & info for business & trade of algal oil, algal fuels & new alternative energy products - specially with regard to new feedstock / feedstocks, production processes and uses, and market info such as price / prices, data & statistics

AlgoDyne Ethanol Energy for Direct Alcohol Fuel Cell Partnership

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Do you know that oil derived from algae is an exciting renewable fuel possibility? - see Oilgae for more.

AlgoDyne Ethanol Energy Inc. Looking for Direct Alcohol Fuel Cell Partnership
Dec 27th, 2006

Source: Seeking Alpha's article

Excerpts:
1. AlgoDyne Ethanol Energy Inc. (ADYN.OB) announced that it is currently negotiating partnerships in the Direct-Alcohol-Fuel-Cell [DAFC] field to provide a cutting-edge system.
2. DAFCs generate electric power through the direct oxidation of alcohol in conjunction with the reduction of oxygen.
3. AlgoDyne’s proprietary mico-algae-based (phytoplankton) technology provides a powerful means to produce clean, renewable energy from the continual harvest of bio-mass from Photo-Bioreactors. The end result is the production of ethanol, methanol, biodiesel, electricity, coal and animal feed – all in a carbon dioxide neutral way.

Oilgae - Oil & Biodiesel from Algae
Oilgae Blog
algOS - Biodiesel from Algae Open Source


About Oilgae - Oilgae - Oil & Biodiesel from Algae has a focus on biodiesel production from algae while also discussing alternative energy in general. Algae present an exciting possibility as a feedstock for biodiesel, and when you realise that oil was originally formed from algae - among other related plants - you think "Hey! Why not oil again from algae!"

To facilitate exploration of oil production from algae as well as exploration of other alternative energy avenues, Oilgae provides web links, directory, and related resources for algae-based biofuels / biodiesel along with inputs on new inventions, discoveries & breakthroughs in other alternative energy domains such as solar, wind, nuclear, hydro, geothermal, hydrogen & fuel cells, gravitational, geothemal, human-powered, ocean & wave / tidal energy. We hope Oilgae proves to be useful as a research information & inputs resources, and as a source of news & info for business & trade of algal oil, algal fuels & new alternative energy products - specially with regard to new feedstock / feedstocks, production processes and uses, and market info such as price / prices, data & statistics

First algae being grown in Mookgopong bioreactor, South Africa

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Do you know that oil derived from algae is an exciting renewable fuel possibility? - see Oilgae for more.

First algae being grown in Mookgopong bioreactor

Cremer Media's Engineering News Online, Dec 2006

Excerpts:

1. With the imminent release of South Africa's long-awaited national biofuels strategy, biodiesel producer De Beers Fuel has showcased a new technology that could significantly increase the country's capacity to produce biofuels.
2. Technology introduced by the company in partnership with GreenFuel Technologies and Green Star Products of the US, in Mookgopong in Limpopo, involves the growing of algae as feedstock for biofuels production. Biodiesel, bioethanol and biogas can be produced from the algae.
3. The company's ambitious expansion plans involve the production of sufficient feedstock to produce between 16-billion and 24-billion litres of biodiesel in the next five years.
4. South Africa currently uses about 8,1-billion litres of diesel a year
5. Bioreactors can be installed at power and industrial plants to recycle CO2 emissions
6. Using GreenFuel Technology's algae bioreactor system connected to APS's 1 040-MW Redhawk power plant in Arlington, Arizona, GreenFuel was able to create a carbon-rich algal biomass.
7. De Beers Fuel is part of the Global Renewable Energy Efficiency Network (Green), which is headquartered in Johannesburg. Green-Fuels Technologies has signed an agreement with Green to license its proprietary technology to the company.
8. Plans are under way for Green to deploy a fuel assessment unit at the Kelvin power station, in Johannesburg.
7. The national South African biofuels strategy will likely entail a mandatory 5% blending ratio for biodiesel (known as B5) and a 10% mandatory blending ratio for bio-ethanol into petrol, known as E10.

See full report here

Oilgae - Oil & Biodiesel from Algae
Oilgae Blog
algOS - Biodiesel from Algae Open Source


About Oilgae - Oilgae - Oil & Biodiesel from Algae has a focus on biodiesel production from algae while also discussing alternative energy in general. Algae present an exciting possibility as a feedstock for biodiesel, and when you realise that oil was originally formed from algae - among other related plants - you think "Hey! Why not oil again from algae!"

To facilitate exploration of oil production from algae as well as exploration of other alternative energy avenues, Oilgae provides web links, directory, and related resources for algae-based biofuels / biodiesel along with inputs on new inventions, discoveries & breakthroughs in other alternative energy domains such as solar, wind, nuclear, hydro, geothermal, hydrogen & fuel cells, gravitational, geothemal, human-powered, ocean & wave / tidal energy. We hope Oilgae proves to be useful as a research information & inputs resources, and as a source of news & info for business & trade of algal oil, algal fuels & new alternative energy products - specially with regard to new feedstock / feedstocks, production processes and uses, and market info such as price / prices, data & statistics

Polluting Emissions to Biofuels through Algae

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Emissions-to-biofuels through Algae

A simple introduction to algae-based biofuels - from Dr SS Verma, Dept of Physics, SLIET, Longowal, India @ Central Chronicle

Excerpts:

1. Though fossil fuel reserves are depleting and combustion is associated with the generation of many environmentally unfriendly end products (viz, CO2, NOx, SOx, soot and fly ash) but still the combustion of fossil fuels for the time being seems to be an inevitable source of energy.
2. Power plants and transport are responsible for emitting huge quantities of greenhouse gas emissions as both still rely heavily on fossil fuels...The easiest way to eliminate gases particularly given off by coal-burning power plants is through photosynthesis. But industrial quantities of CO2 need industrial amounts of photosynthesis. Researchers are now hoping to marry the two together - at the heart of the technology are algae, which can suck gaseous emissions from a power plant's exhaust and convert it into biofuel.
3. Algae are the fastest growing plants on earth...Because photosynthesis efficiency is driven by complex cellular mechanisms that depend on having just the right exposure to light past algal systems grew to be complex and ultimately too expensive for most industrial sites to contemplate. They either took the form of huge, shallow ponds with extensive pumping and distribution mechanisms, or precisely engineered closed bioreactors with high manufacturing and maintenance costs.
4. The algae use the available carbon dioxide and water to grow new algae, giving off pure oxygen and water vapour in the process. The process, called photomodulation, rotates the algae in and out of the sunlight, rather than bringing the sunlight to the algae....The algae use the CO2, along with sunlight and water, to produce sugars by photosynthesis, which are then metabolised into fatty oils and protein.
5. Algae reduce NOx day and night, regardless of weather or lighting conditions. The process is essentially an effect of the surface configuration of the algae cell walls. Even dead algae can provide significant NOx reduction, up to 70 percent.
6. For centuries Algae has been used as manure. Algae can be used to make biodiesel and by some estimates can produce vastly superior amounts of oil, compared to terrestrial crops grown for the same purpose...Algae can also be used to produce hydrogen. Algae are used in wastewater treatment facilities, reducing the need for more dangerous chemicals...Algae can be used to capture fertilizers in runoff from farms. If this algae is then harvested, it itself can be used as fertilizer.

Dr SS Verma, Dept of Physics, SLIET, Longowal

Full article here

Oilgae - Oil & Biodiesel from Algae
Oilgae Blog
algOS - Biodiesel from Algae Open Source


About Oilgae - Oilgae - Oil & Biodiesel from Algae has a focus on biodiesel production from algae while also discussing alternative energy in general. Algae present an exciting possibility as a feedstock for biodiesel, and when you realise that oil was originally formed from algae - among other related plants - you think "Hey! Why not oil again from algae!"

To facilitate exploration of oil production from algae as well as exploration of other alternative energy avenues, Oilgae provides web links, directory, and related resources for algae-based biofuels / biodiesel along with inputs on new inventions, discoveries & breakthroughs in other alternative energy domains such as solar, wind, nuclear, hydro, geothermal, hydrogen & fuel cells, gravitational, geothemal, human-powered, ocean & wave / tidal energy. We hope Oilgae proves to be useful as a research information & inputs resources, and as a source of news & info for business & trade of algal oil, algal fuels & new alternative energy products - specially with regard to new feedstock / feedstocks, production processes and uses, and market info such as price / prices, data & statistics

Who said algal blooms were a problem? - They are a solution!

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Do you know that oil derived from algae is an exciting renewable fuel possibility? - see Oilgae for more.


Environmental science fuels the future

Who said algal blooms were a problem? Truth be known, when we stare at a slimy green sludge atop the favourite watering hole we may be looking at one of the best prospects there is for fuelling cars and power stations in the future, says this note from Murdoch University (Australia) environmental science page.

Excerpts:

1. Professor Steve Halls puts algae firmly in the biofuel basket. “They will be one of the most important fuel commodities in the world in the 21st Century,” he said.
2. A soybean crop can yield 40m3 to 50m3 of oil per square kilometre, while a good turgid brew of algae could yield up to 400 times more. There are over 400 species of algae suited to biofuel production.
3. Murdoch University is working closely with the Mandurah-based Peel Development Commission on biodiesel production from the region.
4. What is contemplated is a battery of large vats or ‘photo-bio reactors’, into which the nutrient-rich run-off from surrounding farmland would be diverted. Fuel oil would emerge as the end product. “It would be a brilliant solution for the recurring algal blooms that threaten crab harvests and annoy the life out of tourists and residents alike,” Professor Halls said.
5. According to Professor Halls, so attractive are the prospects for the venture that a Perth-based commercial partner is poised to commit to a feasibility study. This local interest mirrors the global picture.
6. “Biofuels are the future, no doubt,” said Halls.
7. Fuel from Peel algae would help rein in such excesses and help build a more sustainable future.

Ranked in the top schools within Australia, Murdoch’s School of Environmental Science offers several degrees in environmental science, including the flagship four year Bachelor of Environmental Science.

The School combines areas of environmental management and policy with relevant aspects of environmental systems and engineering in an integrated degree program that also provides students with the flexibility to specialise.

Link for the page source.






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About Oilgae - Oilgae - Oil & Biodiesel from Algae has a focus on biodiesel production from algae while also discussing alternative energy in general. Algae present an exciting possibility as a feedstock for biodiesel, and when you realise that oil was originally formed from algae - among other related plants - you think "Hey! Why not oil again from algae!"

To facilitate exploration of oil production from algae as well as exploration of other alternative energy avenues, Oilgae provides web links, directory, and related resources for algae-based biofuels / biodiesel along with inputs on new inventions, discoveries & breakthroughs in other alternative energy domains such as solar, wind, nuclear, hydro, geothermal, hydrogen & fuel cells, gravitational, geothemal, human-powered, ocean & wave / tidal energy. We hope Oilgae proves to be useful as a research information & inputs resources, and as a source of news & info for business & trade of algal oil, algal fuels & new alternative energy products - specially with regard to new feedstock / feedstocks, production processes and uses, and market info such as price / prices, data & statistics

NMSU studies special algae for biodiesel production

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Do you know that oil derived from algae is an exciting renewable fuel possibility? - see Oilgae for more.

NMSU studies special algae for biodiesel production

Jan 09, 2007, Ruidoso News

1. The NMSU science center is serving as the location of algae fuel research led by the Center of Excellence for Hazardous Materials Management, based in Carlsbad.
2. NMSU is helping on two fronts - providing technical expertise through the Artesia Science Center and having NMSU College of Engineering Dean Steve Castillo serve on the CEHMM Board of Directors and Technical Advisory Council.
3. The project is investigating the best ways to grow and harvest certain species of algae, which produce a much higher level of oil than more traditional crops like soybeans or canola.
4. CEHMM is also collaborating with the Artesia Science Center on a project focused on the potential of growing a cold-season canola crop to generate oil for biodiesel production."
5. The tremendous reserves of brackish water, mild climate and abundant sunshine in New Mexico make good conditions for algae farmers.
6. The next step in the algae research is to establish a larger demonstration pond at the Artesia center, about one-quarter of an acre in size. Construction of the pond should be complete in March 2007.
7. A much larger demonstration project to be started in 2008 eventually will cover about 100 acres, Lynn said.

See full report here

Oilgae - Oil & Biodiesel from Algae
Oilgae Blog Home
Energy Portal @ Oilgae - discusses renewable, alternative energy, peak oil...
NewNergy - What's New in Energy - Energy inventions, breakthroughs and future discussed
algOS - Biodiesel from Algae Open Source


About Oilgae - Oilgae - Oil & Biodiesel from Algae has a focus on biodiesel production from algae while also discussing alternative energy in general. Algae present an exciting possibility as a feedstock for biodiesel, and when you realise that oil was originally formed from algae - among other related plants - you think "Hey! Why not oil again from algae!"

To facilitate exploration of oil production from algae as well as exploration of other alternative energy avenues, Oilgae provides web links, directory, and related resources for algae-based biofuels / biodiesel along with inputs on new inventions, discoveries & breakthroughs in other alternative energy domains such as solar, wind, nuclear, hydro, geothermal, hydrogen & fuel cells, gravitational, geothemal, human-powered, ocean & wave / tidal energy. We hope Oilgae proves to be useful as a research information & inputs resources, and as a source of news & info for business & trade of algal oil, algal fuels & new alternative energy products - specially with regard to new feedstock / feedstocks, production processes and uses, and market info such as price / prices, data & statistics