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Showing posts with label biomass. Show all posts
Showing posts with label biomass. Show all posts

Sunday, May 25, 2014

Biodiesel is now Sustainable thanks to new Fuel Cells

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A new fuel-cell concept, developed by an Michigan State University researcher, will allow biodiesel plants to eliminate the creation of hazardous wastes while removing their dependence on fossil fuel from their production process.

The platform, which uses microbes to glean ethanol from glycerol and has the added benefit of cleaning up the wastewater, will allow producers to reincorporate the ethanol and the water into the fuel-making process, said Gemma Reguera, MSU microbiologist and one of the co-authors.

“With a saturated glycerol market, traditional approaches see producers pay hefty fees to have toxic wastewater hauled off to treatment plants,” she said. “By cleaning the water with microbes on-site, we’ve come up with a way to allow producers to generate bioethanol, which replaces petrochemical methanol. At the same time, they are taking care of their hazardous waste problem.”

The results, which appear in the journal Environmental Science and Technology, show that the key to Reguera’s platform is her patented adaptive-engineered bacteria – Geobacter sulfurreducens.

Geobacter are naturally occurring microbes that have proved promising in cleaning up nuclear waste as well in improving other biofuel processes. Much of Reguera’s research with these bacteria focuses on engineering their conductive pili or nanowires. These hair-like appendages are the managers of electrical activity during a cleanup and biofuel production.

First, Reguera, along with lead authors and MSU graduate students Allison Speers and Jenna Young, evolved Geobacter to withstand increasing amounts of toxic glycerol. The next step, the team searched for partner bacteria that could ferment it into ethanol while generating byproducts that ‘fed’ the Geobacter.

“It took some tweaking, but we eventually developed a robust bacterium to pair with Geobacter,” Reguera said. “We matched them up like dance partners, modifying each of them to work seamlessly together and eliminate all of the waste.”

Together, the bacteria’s appetite for the toxic byproducts is inexhaustible.

“They feast like they’re at a Las Vegas buffet,” she added. “One bacterium ferments the glycerol waste to produce bioethanol, which can be reused to make biodiesel from oil feedstocks. Geobacter removes any waste produced during glycerol fermentation to generate electricity. It is a win-win situation.”

The hungry microbes are the featured component of Reguera’s microbial electrolysis cells, or MECs. These fuel cells do not harvest electricity as an output. Rather, they use a small electrical input platform to generate hydrogen and increase the MEC’s efficiency even more.

The promising process already has caught the eye of economic developers, who are helping scale up the effort. Through a Michigan Translational Research and Commercialization grant, Reguera and her team are developing prototypes that can handle larger volumes of waste.

Reguera also is in talks with MBI, the bio-based technology “de-risking” enterprise operated by the MSU Foundation, to develop industrial-sized units that could handle the capacities of a full-scale biodiesel plant. The next step will be field tests with a Michigan-based biodiesel manufacturer.


Read more at http://www.redorbit.com/news/science/1113153782/fuel-cell-concept-makes-biodiesel-sustainable-052314/#tGpZtUysDUk4Vzo5.99

Saturday, December 17, 2011

Biomasse plant with sawmill residues in Honduras

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This carbon offset project in Honduras installs a biomass plant which will run on biomass residues of about 20 saw mills. CO2 emissions are being reduced by displacing the use of fossil based electricity by clean and sustainable electricity produced by this renewable energy source.
In Talanga, Honduras, in the Regional Association of Sawmills Francisco Morazán (ARIDEMA- Asociación Regional de Industriales de la Madera de Francisco Morazán) a ‘first of its kind’ two Megawatt gasification reactor will be installed. It will run on biomass residues of about 20 small saw mills that are associated in the ARIDEMA. The generated clean and sustainable electricity shall be exported to the Honduran national grid. CO2 emissions are being reduced compared to the situation without project by displacing electricity from other sources like the national on fossil fuel based grid or generators running with fuel oil. 

Sunday, May 15, 2011

Biomass and Renewable Energy Sources

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Biomass are composed of substances of animal and vegetable, not fossils, that can be used as fuel for energy production. With the advent of the deregulated energy market and its commitments under the Kyoto Protocol by many countries, Biomass are candidates as a very competitive renewable energy. The EU attempts to encourage the use of biomass but some local opposition are raising.

The following video explains what the biomass are and how can be used as renewable energy sources.

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