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Showing posts with label LFGTE. Show all posts
Showing posts with label LFGTE. Show all posts

Tuesday, July 31, 2012

GE Technology Powers First Landfill-Gas-to-Energy Project in Alaska

Press release:

31 July 2012
GE Technology Powers First Landfill-Gas-to-Energy Project in Alaska
 

  • Power Produced by GE’s Jenbacher J420 Gas Engines to Save Military up to $50 Million
  • Located on the Joint U.S. Army-Air Force Base, Doyon Utilities’ Project Helps Improve Energy Security for U.S. Military
  • Ribbon-Cutting Ceremony Held in Anchorage to Celebrate Opening of Plant

ANCHORAGE, ALASKA—July 31, 2012—Doyon Utilities, LLC (Doyon) held a ribbon cutting ceremony today to celebrate the opening of the first landfill-gas-to-energy (LFGTE) project in Alaska, which is powered by GE’s (NYSE: GE) ecomagination-qualified Jenbacher gas engines. Located on the Joint Base Elmendorf-Richardson in Anchorage, a joint U.S. Army and Air Force base, the project will provide approximately half of JBER–Richardson’s 13 megawatts (MW) of peak demand power.

“Beginning in 2013, federal agencies will be required to use renewable energy sources to provide at least 7.5 percent of total electric consumption,” said Dan Gavora, CEO of Doyon Utilities LLC. “GE’s technology allows us to turn landfill gas (methane) into an energy source for the U.S. military base and also into a revenue stream for the municipal utility, which currently flares the gas instead of selling it. In addition, the plant will help the military improve its energy security and move closer to its renewable energy target.”

Doyon will own and operate the facility and will buy the gas produced for at least the next 20 years, with an option for an extension to 40 years, under the agreement with the municipality. According to military officials, the power produced will offset what the military would have to buy from the municipality, which will add up to more than $30 million in savings over the life of the project[1].

The Anchorage Regional Landfill, which opened in 1987, has the capacity to hold 40 million cubic yards of waste. Currently one-third full, the landfill will likely reach capacity around 2045. As the landfill grows, so will the opportunity to increase the LFGTE plant’s capacity.

“This project with Doyon Utilities is another example of how GE’s Jenbacher gas engines are supporting distributed power projects around the world,” said Roger George, regional sales leader, Gas Engines for North America. “Our Jenbacher gas engines provide the fuel flexibility needed to accommodate the use of alternative fuels such as landfill gas while offering high levels of electrical efficiency.”

Western Energy Systems (WES), GE’s authorized distributor for Jenbacher gas engines in Alaska, provided the four Jenbacher J420 engine-generator sets and integrated these with balance of plant equipment required for a successful installation. WES provided project management services for all equipment provided, performed commissioning services, and has opened a product support facility in Anchorage with technicians and parts inventory committed to support this project.

GE's fuel-flexible Jenbacher gas engines are powered by landfill gas, which is created from solid waste decomposition and then recovered as a valuable renewable fuel. This gas would otherwise have been wasted by being released into the atmosphere as a potent greenhouse gas. Methane has a global warming factor that is 21 times greater than carbon dioxide.

GE's Jenbacher J420 landfill gas engines are part of GE’s ecomagination portfolio. To qualify for the ecomagination portfolio, products and services must demonstrate both improved economic value and environmental performance. Ecomagination is GE's commitment to innovative solutions that maximize resources and efficiencies and make the world work better. Overall, GE's Gas Engines business has more than 1,650 units operating on landfill gas with an electrical output of over 1,650 MW.

In a changing world with diverse power needs, GE’s portfolio of innovative distributed power solutions, gives businesses and communities around the world the ability to generate reliable and efficient power using a variety of fuels anywhere, whether on or off the grid. GE’s distributed power solutions gives customers of all types—from industrial businesses, to developing communities, to government officials managing disaster relief and other emergency power situations—the ability to generate reliable, sustainable power whenever and wherever it is needed. GE’s distributed power portfolio includes GE aeroderivative gas turbines, Jenbacher and Waukesha gas engines and waste heat recovery solutions.

About GE
GE (NYSE: GE) works on things that matter. The best people and the best technologies taking on the toughest challenges. Finding solutions in energy, health and home, transportation and finance. Building, powering, moving and curing the world. Not just imagining. Doing. GE works. For more information, visit the company's website at www.ge.com.

GE Energy works connecting people and ideas everywhere to create advanced technologies for powering a cleaner, more productive world. With more than 100,000 employees in over 100 countries, our diverse portfolio of product and service solutions and deep industry expertise help our customers solve their challenges locally. We serve the energy sector with technologies in such areas as natural gas, oil, coal and nuclear energy; wind, solar, biogas and water processing; energy management; and grid modernization. We also offer integrated solutions to serve energy- and water-intensive industries such as mining, metals, marine, petrochemical, food & beverage and unconventional fuels.

Follow GE Energy and ecomagination on Twitter @GE_Energy and@ecomagination

Wednesday, February 8, 2012

The Rise of Landfill Gas to Energy

The following is an excerpt of an article with the above title in the January 2012 issue of Waste Age magazine:


Landfill gas (LFG) provides power for one million homes and heat for 737,000 homes across the country.  It provides 14 billion kilowatt-hours of electricity and 102 billion cu. ft of LFG for direct use by industry.  It contributes to the nation’s supply of natural gas and clean-burning fuel for vehicles.

The environmental benefits of these LFG uses are huge.  According to the U.S. Environmental Protection Agency (EPA), the use of LFG reduced the consumption of oil in the United States by about 229 million barrels of oil last year.

Using LFG also reduces greenhouse gas emissions.  EPA says that landfills rank as the third-largest human-generated source of methane emissions in the United States.  Among greenhouse gases, methane, the fuel component of LFG, is one of the most potent.  For instance, it is 21 times stronger than carbon dioxide.

The EPA also estimates that a typical LFG energy project collects and uses 60 to 90 percent of the methane emitted by a landfill.

Thanks to the environmental benefits of putting LFG to use, landfill-gas-to-energy has begun to emerge as a renewable energy industry.

Consider the landfill-gas-to-energy (LFGTE) project at the Newton County Landfill in Brook, Ind., for example.  There, LFG is helping to manufacture egg cartons.

One of the largest landfills in the country, Newton County, owned by Phoenix-based Republic Services, Inc., receives nearly 2.7 million tons of trash per year.  Recently, the landfill began sending LFG to the neighboring Newton County Renewable Energy Park through a 2,500-foot pipeline.

At the industrial park, Canadian firm Urban Forestf Recyclers Inc. (UFR) of Swift Current, Sask., manufactures packaging, such as egg cartons, from recycled fiber.  The process blends mixed newsprint and cardboard into a slurry that is poured into molds.  The LFG fuels the system of blowers used to dry the molds.

Thursday, February 2, 2012

WM Named EPA LMOP Industry Partner of the Year

Sometimes propaganda can have informational value.  News release from Waste Management:


Waste Management Named EPA Landfill Methane Outreach Program Industry Partner of the Year

North America's largest landfill gas-to-energy owner and operator recognized for leadership in waste-based renewable energy development



Houston — January 18, 2012 — The U.S. Environmental Protection Agency’s Landfill Methane Outreach Program (LMOP) has named Waste Management, Inc. (NYSE: WM) its 2011 Industry Partner of the Year for leadership in developing waste-based renewable energy. Waste Management is the largest landfill gas-to-energy (LFGTE) developer and operator in North America and is continuing to expand its roster of energy facilities. This year’s awards were presented earlier today at the 15th Annual LMOP Partner and Project of the Year Awards Ceremony in Baltimore, MD.

To view a short video explaining how landfills can power homes, college campuses and more, visit the WM video- Landfill Power: Turning Gas into Energy.

In 2011, WM commissioned nine LFGTE facilities with a collective capacity of 29.5 MW, bringing the number of LFGTE facilities to 133 active projects in North America. In total, these facilities produced the equivalent of 617 MW of power – enough to power 473,000 homes, and offset the consumption of over 2.4 million tons of coal. Waste Management plans to commission four additional projects in the first quarter of 2012 and is working on at least eight additional projects through its dedicated in-house project development team, which works on both WM-owned sites and those owned by municipalities and industry partners.

“It is an honor to be recognized as a leading partner in this sector by the EPA, and a testament to the hard work of our team over the last several years,” said Paul Pabor, vice president of renewable energy at Waste Management. “Waste Management developed much of the technology still in use today, and continues to find new ways to capture resources in waste. We’re looking forward to continued innovation, creating electricity, generating renewable fuels and powering local businesses with the resources at our disposal.”

Waste Management was active in two projects that won 2010 Project of the Year. The first, the University of New Hampshire EcoLineTM project, brought gas from Waste Management’s Turnkey Landfill through a 12-mile pipe, supplying 85 percent of the campus’s heat and electricity needs. The second, at the Altamont Landfill Resource and Recovery Facility in Livermore, CA, consisted of a partnership with Linde North America. There, the companies produce up to 13,000 gallons of liquefied natural gas (LNG) from landfill gas every day to fuel hundreds of WM fleet vehicles. The Altamont project is the largest landfill gas-to-LNG project in the world.                                                   

Landfill gas, generated by the natural breakdown of organic materials in a landfill, contains large amounts of methane that can be collected to generate electricity, power local businesses or be turned into transportation fuel. A successful program can turn a modern landfill from a mere disposal site to a source of clean, renewable energy to power homes and fuel vehicles.

Waste Management is continually exploring new technologies and services to generate renewable energy from waste. LFGTE complements the company’s other waste services in the areas of recycling, landfill operations and waste-based energy technology. LFGTE projects also contribute to one of Waste Management’s sustainability goals, doubling energy generation by 2020 to power the equivalent of 2 million homes.

EPA’s LMOP has assisted with more than 500 LFG energy projects over the past 16 years. The United States currently has about 575 operational LFG energy projects which annually supply more than 14 billion kilowatt-hours of electricity and ~102 billion cubic feet of LFG to direct-use applications. There is still significant potential for expansion of the technology; LMOP has identified over 500 landfills that could provide an additional 1,155 MW of electrical power.