Ceramic soaks up mercury pollution

May 20, 2004
Researchers at the DOE's Pacific Northwest National Laboratory have developed a material that removes mercury and other toxic substances from coal-burning, power plant wastewater.

It's estimated that coal-burning power plants contribute about 48 tons of mercury to the U.S. environment annually.

The synthetic material features a nanoporous ceramic substrate with a specifically tailored pore size and a high surface area. One teaspoon's worth of this substance has a surface area equaling that of a football field. "This substance has proven to be an effective and voracious tool for absorbing mercury," says Shas Mattigod, lead chemist and project manager.

Self-assembled monolayers on mesoporous support (Samms) technology integrates a nanoporous silica-based substrate with a new method for attaching monolayers, or single layers of densely packed molecules designed to attract mercury or other toxic substances. Initial testing shows after three treatments, 99.9% of mercury in simulated wastewater was captured, reducing levels from 145.8 ppm to 0.04. The waste passes EPA requirements for land or sewer disposal.

"We expect this technology will bring huge savings to users faced with costly disposal of mercury in the waste stream," adds Mattigod. Samms technology can also be adapted to target other toxins such as lead, chromium, and radionuclides.

Sponsored Recommendations

How to Build Better Robotics with Integrated Actuators

July 17, 2024
Reese Abouelnasr, a Mechatronics Engineer with Harmonic Drive, answers a few questions about the latest developments in actuators and the design or engineering challenges these...

Crisis averted: How our AI-powered services helped prevent a factory fire

July 10, 2024
Discover how Schneider Electric's services helped a food and beverage manufacturer avoid a factory fire with AI-powered analytics.

Pumps Push the Boundaries of Low Temperature Technology

June 14, 2024
As an integral part of cryotechnology, KNF pumps facilitate scientific advances in cryostats, allowing them to push temperature boundaries and approach absolute zero.

The entire spectrum of drive technology

June 5, 2024
Read exciting stories about all aspects of maxon drive technology in our magazine.

Voice your opinion!

To join the conversation, and become an exclusive member of Machine Design, create an account today!