Science Current Events | Science News | Brightsurf.com
 
Email a Friend Send to a friend
Printer Friendly Print Rounding up gases, nano-style

Rounding up gases, nano-style

February 04, 2008

Chemists unveil new process for capturing and storing gas; potential spin-offs include improvements to greenhouse gas management and fuel cell development

A new process for catching gas from the environment and holding it indefinitely in molecular-sized containers has been developed by a team of University of Calgary researchers, who say it represents a novel method of gas storage that could yield benefits for capturing, storing and transporting gases more safely and efficiently.




"This is a proof of concept that represents an entirely new way of storing gas, not just improving on a method that already exists," said U of C chemistry professor George Shimizu. "We have come up with a material that mechanically traps gas at high densities without having to use high pressures, which require special storage tanks and generate safety concerns."

In a paper published in the current online version of the world's leading material science journal Nature-Materials, Shimizu, fellow U of C professor David Cramb, chemistry graduate student Brett Chandler and colleagues from the National Research Council describe their invention of "molecular nanovalves." Using the orderly crystal structure of a barium organotrisulfonate, the researchers developed a unique solid structure that is able to convert from a series of open channels to a collection of air-tight chambers. The transition happens quickly and is controlled simply by heating the material to close the nanovalves, then adding water to the substance to re-open them and release the trapped gas. The paper includes video footage of the process taking place under a microscope, showing gas bubbles escaping from the crystals with the introduction of water.

"The process is highly controllable and because we're not breaking any strong chemical bonds, the material is completely recyclable and can be used indefinitely," Shimizu said.

The team intends to continue developing the nanovalve concept by trying to create similar structures using lighter chemicals such as sodium and lithium and structures that are capable of capturing the lightest and smallest of all gases - hydrogen and helium.

"These materials could help push forward the development of hydrogen fuel cells and the creation of filters to catch and store gases like CO2 or hydrogen sulfide from industrial operations in Alberta," Cramb said.

University of Calgary




More Storing Gas Current Events and Storing Gas News Articles
  Hiding the bad gas.(capturing and storing carbon dioxide): An article from: E
by Simon Birch (Author)

This digital document is an article from E, published by Earth Action Network, Inc. on January 1, 2005. The length of the article is 476 words. The page length shown above is based on a typical 300-word page. The article is delivered in HTML format and is available in your Amazon.com Digital Locker immediately after purchase. You can view it with any web browser.

Citation Details
Title: Hiding the bad gas.(capturing and storing carbon dioxide)
Author: Simon Birch
Publication: E (Magazine/Journal)
Date: January 1, 2005
Publisher: Earth Action Network, Inc.
Volume: 16 Issue: 1 Page: 12(1)

Distributed by Thomson...

Historic Print: Helium gas storing, 3/8/23

Historic Print: Helium gas storing, 3/8/23
by Library Images

This is a museum quality, reproduction print on premium paper with archival/UV resistant inks. The framed work is single matted (ivory), under acrylic glass, with a hanging wire.

[19]23 March 8.

National Photo Company

1 negative : glass ; 5 x 7 in. or smaller

SOURCE: Library of Congress

  ORIGINAL PATENT APPLICATION NUMBER 7,801 FOR IMPROVEMENTS IN APPARATUS FOR GENERATING AND STORING ACETYLENE GAS (GREENWICH).
by Harry Richmond. Chubb (Author)



Historic Print (M): Helium gas storing, 3/8/23

Historic Print (M): Helium gas storing, 3/8/23
by Library Images

This is a museum quality, reproduction print on premium paper with archival/UV resistant inks. The framed work is single matted (ivory), under acrylic glass, with a hanging wire.

[19]23 March 8.

National Photo Company

1 negative : glass ; 5 x 7 in. or smaller

SOURCE: Library of Congress

  Low-pressure Gas Holders Storing Lighter-than-air Gasses (Safety Recommendations)
by Institution of Gas Engineers and Managers (Publisher)



Historic Print (L): Helium gas storing, 3/8/23

Historic Print (L): Helium gas storing, 3/8/23
by Library Images

This is a museum quality, reproduction print on premium paper with archival/UV resistant inks. The framed work is single matted (ivory), under acrylic glass, with a hanging wire.

[19]23 March 8.

National Photo Company

1 negative : glass ; 5 x 7 in. or smaller

SOURCE: Library of Congress

  Recycling gas, repressuring oil sands, and storing gas in depleted fields, as conservation measures
by J. H Dunn (Author)



Historic Print (S): Helium gas storing, 3/8/23

Historic Print (S): Helium gas storing, 3/8/23
by Library Images

This is a museum quality, reproduction print on premium paper with archival/UV resistant inks.

[19]23 March 8.

National Photo Company

1 negative : glass ; 5 x 7 in. or smaller

SOURCE: Library of Congress

  Recycling gas, repressuring oil sands, and storing gas in depleted fields,: As conservation measures within the scope of police power
by C. C Small (Author)



Historic Print (XL): Helium gas storing, 3/8/23

Historic Print (XL): Helium gas storing, 3/8/23
by Library Images

This is a museum quality, reproduction print on premium paper with archival/UV resistant inks. The framed work is single matted (ivory), under acrylic glass, with a hanging wire.

[19]23 March 8.

National Photo Company

1 negative : glass ; 5 x 7 in. or smaller

SOURCE: Library of Congress

© 2009 BrightSurf.com