COLUMBUS, NJ - Acrion Technologies Inc., a small business
sponsored by the U.S. Department of Energy, is showcasing a method this
week that could offer a major advancement in reducing pollution at municipal
landfills where Americans deposit more than 100 million tons of garbage
every year.
The garbage creates a major source of air emissions, expelling carbon
dioxide (CO2) and methane as it decomposes. At an open house today at
the New Jersey EcoComplex, Acrion is demonstrating how its innovation
will make it easier to capture the CO2 before it escapes into the atmosphere
and to use the captured gases for commercial ventures, making such "landfill
gas-to-energy" projects more environmentally and economically attractive.
"Acrion took a good idea and, in partnership with the federal government,
made it work," said Secretary of Energy Spencer Abraham in congratulating
the company. "It will be creative ideas like this one that will be
key to improving the quality of our environment and combating the threat
of climate change. The Department of Energy is pleased to have had a role
in fostering the development of this technology and helping it evolve
to the threshold of commercial reality."Acrion, based in Cleveland,
Ohio, received a small business innovation research grant from the Energy
Department in 1998. With the federal backing, the company developed a
process called "CO2 Wash" which it initially tested at a New
York site.Now, with follow-on funding from the department's National Energy
Technology Laboratory, the company has scaled up the process at the New
Jersey EcoComplex. Acrion's first step to commercialize the innovation
will be seen at an open house today where visitors touring the EcoComplex
will have an opportunity to see and ask questions about the Acrion CO2
Wash system.
Since it began operating this summer, the system has been processing
gases captured from decomposing waste at the Burlington County landfill.
After moisture is removed, the gases are compressed and fed into the bottom
of the unit's three-story high column. As the gases drift upward, refrigeration
at the top of the column condenses the CO2 into liquid form. A portion
of the liquid CO2 washes down the column, cleansing volatile organic contaminants
from the gas.
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Clean, high-grade fuel gas exits the top and can be used directly
in turbines, boilers or fuel cells to generate electricity. Methane produced
from Acrion's CO2 Wash is 2 to 3 times cleaner than required by fuel cells
which can convert the hydrogen-rich gas into electricity without using
combustion. The landfill gas could also be further processed into methanol
or upgraded to pipeline specifications, depending on local market needs.The
small stream of contaminant-laden CO2 that is used to wash out impurities
in the landfill gas is vaporized and burned in a flare to destroy the
volatile organic compounds.The CO2 not used for the wash is drawn off
as a 99.99 percent pure liquid CO2 stream that can be used in a variety
of commercial applications, from making dry ice to carbonating soft drinks.
One option Acrion is examining is to pipe the CO2 to Burlington County's
R&D Greenhouse and Resource Recovery Complex, where "Jersey Fresh"
tomatoes and other plants would benefit from the CO2-enriched environment.
Acrion is also providing samples of the pure liquid CO2 to distributors
and consumers for analysis and testing in commercial applications.Acrion's
innovation is expected to add to the growing interest in using landfill
gas as a renewable energy resource. Current federal law requires many
landfills to collect the gas and dispose of it in one of two ways: either
flare the gas, or install a "landfill gas-to-energy" system.According
to the Environmental Protection Agency, every 1 million tons of waste
deposited in landfills produces enough landfill gas to generate 7 million
kilowatt hours of electricity per year, enough for 700 homes. Using this
gas for energy purposes, rather than expelling it into the atmosphere,
is equivalent to removing more than 6,000 cars from the road, or planting
8,300 acres of trees. |