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ORNL-led team identifies process that can break down toxic methylmercury

Posted at 1:34 pm July 3, 2017
By Oak Ridge Today Staff Leave a Comment

A team led by Oak Ridge National Laboratory has identified a novel microbial process that can break down toxic methylmercury in the environment, a discovery that could potentially reduce mercury toxicity levels and support health and risk assessments. Microscopy images by Jeremy Semrau, University of Michigan. (Screenshot from a video by ORNL)

A team led by Oak Ridge National Laboratory has identified a novel microbial process that can break down toxic methylmercury in the environment, a discovery that could potentially reduce mercury toxicity levels and support health and risk assessments. Microscopy images by Jeremy Semrau, University of Michigan. (Screenshot from a video by ORNL)

 

Note: This story was originally published by Oak Ridge National Laboratory on May 31.

A team led by the U.S. Department of Energy’s Oak Ridge National Laboratory has identified a novel microbial process that can break down toxic methylmercury in the environment, a fundamental scientific discovery that could potentially reduce mercury toxicity levels and support health and risk assessments.

Methylmercury is a neurotoxin that forms in nature when mercury interacts with certain microbes living in soil and waterways. It accumulates at varying levels in all fish—particularly large predatory fish such as tuna and swordfish—and, when consumed in large quantities, can potentially cause neurological damage and developmental disorders, especially in children.

A previous ORNL-led study, published in Science in 2013, unlocked the genetic code that led scientists to accurately identify microbes responsible for methylmercury production in the environment. Following this finding, the ORNL team has now discovered which bacteria perform the reverse process, called demethylation. Details are published in Science Advances.

“Much attention has focused on mercury methylation or how methylmercury forms, but few studies to date have examined microbial demethylation, or the breakdown of methylmercury at environmentally relevant conditions,” said Baohua Gu, co-author and a team lead in ORNL’s Mercury Science Focus Area. [Read more…]

Filed Under: Front Page News, Oak Ridge National Laboratory, Top Stories, U.S. Department of Energy Tagged With: Alan DiSpirito, Baohua Gu, demethylation, DOE, Iowa State University, Jeremy Semrau, Linduo Zhao, mercury, Mercury Science Focus Area, methantrophs, Methlyosinus trichosporium OB3b, methylmercury, Methylmercury uptake and degradation by methanotrophs, Methylococcus capsulatus Bath, microbial process, Muhammad Farhan Ul Haque, neurotoxin, Oak Ridge National Laboratory, Office of Biological and Environmental Research, Office of Science, ORNL, Science Advances, toxic methylmercury, U.S. Department of Energy, University of Michigan, Wenyu Gu, Xia Lu

ORNL: Neutrons find ‘missing’ magnetism of plutonium

Posted at 12:44 pm July 12, 2015
By Oak Ridge National Laboratory Leave a Comment

Doug Abernathy and Marc Janoschek

Doug Abernathy, left, ARCS instrument scientist at Oak Ridge National Laboratory, and Marc Janoschek, Los Alamos National Laboratory, prepare their sample for experiments at the Spallation Neutron Source. (Photo by ORNL)

 

Groundbreaking work at two U.S. Department of Energy national laboratories has confirmed plutonium’s magnetism, which scientists have long theorized but have never been able to experimentally observe. The advances that enabled the discovery hold great promise for materials, energy, and computing applications.

Plutonium was first produced in 1940, and its unstable nucleus allows it to undergo fission, making it useful for nuclear fuels as well as for nuclear weapons. Much less known, however, is that the electronic cloud surrounding the plutonium nucleus is equally unstable and makes plutonium the most electronically complex element in the periodic table, with intriguingly intricate properties for a simple elemental metal.

While conventional theories have successfully explained plutonium’s complex structural properties, they also predict that plutonium should order magnetically. This is in stark contrast with experiments, which had found no evidence for magnetic order in plutonium. [Read more…]

Filed Under: Front Page News, Oak Ridge National Laboratory, Top Stories, U.S. Department of Energy Tagged With: ARCS, B. Chakrabarti, DOE, Doug Abernathy, dynamical mean field theory, electrons, Eric Bauer, European Commission, F. Trouw, G. Kotliar, G.H. Lander, J.-X. Zhu, J.D. Thompson, J.M. Lawrence, J.N. Mitchell, K. Haule, Lawrence Livermore National Laboratory, Los Alamos National Laboratory, Los Alamos National Laboratory Directed Research and Development, M. Ramos, magnetic fluctuations, magnetic order, magnetism, Marc Janoschek, Mark Lumsden, national laboratories, neutron spectroscopy, Oak Ridge Leadership Computing Facility, Oak Ridge National Laboratory, Office of Science, OLCF, ORNL, Pinaki Das, plutonium, plutonium ion, plutonium nucleus, plutonium-239, plutonium-242, Rutgers University, S. Richmond, Science Advances, Scott McCall, Siegfried Hecker, Spallation Neutron Source, U.S. Department of Energy

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Classifieds

Availability of the draft environmental assessment for off-site depleted uranium manufacturing (DOE/EA-2252)

The U.S. Department of Energy (DOE) National Nuclear Security Administration (NNSA) announces the … [Read More...]

Public Notice: NNSA announces no significant impact of Y-12 Development Organization operations at Horizon Center

AVAILABILITY OF THE FINAL ENVIRONMENTAL ASSESSMENT FOR THE OFFSITE HOUSING OF THE Y-12 DEVELOPMENT … [Read More...]

ADFAC seeks contractors for five homes

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