. Medical and Hospital News .




TECH SPACE
Noble gases hitch a ride on hydrous minerals
by Staff Writers
Providence RI (SPX) Jun 21, 2013


The mineral amphibole is made up of tetrahedral and octahedral structures linked together in a way that creates a series of rings. New research suggests those rings -- called A-sites -- could dissolve noble gases, which are not generally thought to dissolve in minerals. The findings could explain how noble gases are cycled from deep within the Earth to the surface and back again. Credit: Parman Lab / Brown University.

The noble gases get their collective moniker from their tendency toward snobbishness. The six elements in the family, which includes helium and neon, don't normally bond with other elements and they don't dissolve into minerals the way other gases do. But now, geochemists from Brown University have found a mineral structure with which the nobles deign to fraternize.

Researchers led by Colin Jackson, a graduate student in geological sciences, have found noble gases to be highly soluble in amphibole, a mineral commonly found in oceanic crust. "We found remarkably high solubility," said Stephen Parman, assistant professor of geological sciences at Brown and Jackson's Ph.D. adviser. "It was three or four orders of magnitude higher than in any other mineral than had been measured."

The findings, which are published in Nature Geoscience, are a step toward answering puzzling questions about how noble gases are cycled between the atmosphere and the depths of the Earth.

Completing the cycle
Gases in the air we breathe are on a geological conveyor belt of sorts, cycled from the Earth's mantle to the atmosphere and back again. Carbon dioxide, water vapor and other gases are released into the atmosphere and oceans from molten magma during volcanic eruptions, and then returned to depths through subduction, when one tectonic plate slides underneath another. The subducting crust is injected deep into the mantle, taking water and any other volatiles it may carry along for the ride.

Noble gases are also released during volcanic activity, but the amount of those gases returned to the mantle through subduction was long thought to be minimal. After all, if noble gases don't dissolve in minerals, they would lack a vehicle to make the trip. Recent research, however, has suggested that some noble gases are indeed recycled, leaving scientists at a loss to find a mechanism for it. By showing definitively that noble gases are soluble in amphibole, Jackson and his colleagues have shown how noble gases could be carried in subducting slabs.

The key to amphibole's ability to dissolve noble gases, the researchers say, is its lattice structure. Amphibole and other silicate minerals are made up of tetrahedral and octahedral structures linked together in a way that creates a series of rings. It's those rings, called A-sites, that provide a home for otherwise finicky noble gases, the research suggests.

Jackson performed a series of experiments to see if the number of empty rings in different types of amphibole were correlated to its ability to dissolve noble gases. He placed cut amphibole gems into a tube with helium or neon under high pressure and temperature, and then used a mass spectrometer to see how much of the gas had dissolved in each gem over the duration of each experiment. The experiments showed that noble gas solubility was highest in types of amphibole with the most unoccupied ring structures.

"This was the meat of the paper," Parman said. "It's telling us a specific site where we think the noble gases are. It might be the first time anyone has made a positive identification of where noble gases are going into a mineral."

Importantly, the researchers said, amphibole isn't the only crustal mineral with these ring structures. Ring structures are actually quite common in crustal minerals, and could provide a wide variety of potential vehicles that could take noble gases back to the depths via subduction.

A high-fidelity fingerprint
Understanding how noble gases are cycled between the Earth's surface and interior could shed new light on how other volatiles are recycled, the researchers said.

Scientists are particularly interested in tracking the cycling of water and carbon. Water is obviously vital for life, and carbon cycling has an important impact on the climate. Scientists try to track the cycle by looking at isotope ratios, which can provide a fingerprint that helps to identify where elements originated. Butarbon and the hydrogen in water have only a few isotopes that scientists can use for tracking, and in the case of hydrogen, the isotope ratios are easily thrown off by all kinds of natural processes.

The noble gases, on the other hand, have lots of isotopes, giving scientists ways to track them with great specificity. So if noble gases are cycled in the same minerals that cycle other volatiles like water and carbon, they could be used as a marker to track those other volatiles. "It's a very high-fidelity fingerprint because you have so many isotopes to play with," Jackson said.

There's more work to be done before noble gases could be used as such a fingerprint, but this work does provide a first step: showing which kinds of minerals could be responsible for noble gas recycling.

Other authors on the paper were Simon Kelley of The Open University in the United Kingdom and Reid Cooper, professor of geological sciences at Brown. The work was funded by the National Science Foundation's Division of Earth Sciences (1019229).

.


Related Links
Brown University
Space Technology News - Applications and Research






Comment on this article via your Facebook, Yahoo, AOL, Hotmail login.

Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle




Memory Foam Mattress Review

Newsletters :: SpaceDaily Express :: SpaceWar Express :: TerraDaily Express :: Energy Daily
XML Feeds :: Space News :: Earth News :: War News :: Solar Energy News

Get Our Free Newsletters
Space - Defense - Environment - Energy - Solar - Nuclear

...





TECH SPACE
'Chemical architects' build materials with potential applications in drug delivery and gas storage
Pittsburgh PA (SPX) Jun 21, 2013
Home remodelers understand the concept of improving original foundations with more modern elements. Using this same approach-but with chemistry-researchers in the University of Pittsburgh's Kenneth P. Dietrich School of Arts and Sciences have designed a family of materials that could make drug delivery, gas storage, and gas transport more efficient and at a lower cost. The findings were reported ... read more


TECH SPACE
India rescue chopper crash death toll rises to 20

WIN-T Increment 1 Enables National Guard to Restore Vital Network Communications Following a Disaster

Australia costs from natural disasters to soar: study

Satellite data will be essential to future of groundwater, flood and drought management

TECH SPACE
Raytheon's latest air traffic management systems go into continuous operation

Raytheon's Satellite Air Navigation System marks 10 years of continuous service in the US

Raytheon unveils Excalibur with dual-mode guidance

Northrop Grumman to Offer Improved GPS-Challenged Navigation and Geo-Registration Solution for USAF

TECH SPACE
Australia, Indonesia to face off over people smuggling

New frontier for cybersecurity: your body

Outside View: Cosby's inciteful insights on Muslims

What do memories look like?

TECH SPACE
Giant panda gives birth to twins in China

Study finds climate change to shrink bison, profit

New flame-headed bird species found in Cambodia capital

New study shows predators affect the carbon cycle

TECH SPACE
H7N9 bird flu kills about 1/3 hospitalised patients: study

Taiwan reports H6N1 bird flu case

Children suffer as Pakistan battles measles epidemic

Measles epidemic sweeps northern Syria: MSF

TECH SPACE
Blind Chinese activist Chen arrives in Taiwan

NYU denies Chen forced out over China tie-up

US lashes China, Russia for human trafficking

China arrests man who planned Tiananmen protest: wife

TECH SPACE
Sydney customs officers ran drugs ring, report says

Mexicans turn to social media to report on drug war

New Moldova P.M. Leanca says country remains on pro-EU course

Global cybercrime ring targeted by Microsoft and FBI

TECH SPACE
Greek reshuffle sees Venizelos named foreign minister

China central bank urges lenders to beef up liquidity management

Walker's World: France's crisis looms

German 2014 budget deficit set to be halved




The content herein, unless otherwise known to be public domain, are Copyright 1995-2012 - Space Media Network. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. ESA Portal Reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement,agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. Privacy Statement