Space Travel News  
Atmospheric Measuring Device For Understanding Smog Formation

The new device is comparatively small, lightweight, and inexpensive, has low power requirements, and gives a sensitive, fast response.
by Staff Writers
Upton NY (SPX) Nov 20, 2007
Scientists at the U.S. Department of Energy's Brookhaven National Laboratory have developed a new tool for quantitatively measuring elusive atmospheric chemicals that play a key role in the formation of photochemical smog. Better measurements will improve scientists' understanding of the mechanisms of smog formation and their ability to select and predict the effectiveness of various mitigation strategies. The Brookhaven scientists have been issued a U.S. patent for their apparatus, which is available for licensing.

The device measures atmospheric hydroperoxyl radicals - short-lived, highly reactive intermediates involved in the formation of ozone, a component of photochemical smog - in the lowest layer of Earth's atmosphere. The levels of these radicals can indicate which of a variety of chemical pathways is predominant in converting basic starting ingredients - hydrocarbons, nitrogen oxides, and water vapor - into smog in the presence of sunlight.

"Understanding the relative importance of the various pathways can help you tailor your mitigation strategies," said Brookhaven atmospheric chemist Stephen Springston, one of the inventors. "For example, are you better off spending your money reducing hydrocarbon emissions or nitrogen oxide emissions?"

"Our measurements will help predict which strategy would be most successful for a particular set of atmospheric conditions - and make modifications to the strategy as those conditions change," said co-inventor Judy Lloyd of the State University of New York at Old Westbury, who holds a guest appointment at Brookhaven Lab.

Because hydroperoxyl radicals are so reactive, getting accurate measurements is not easy. "These chemicals are so fragile you cannot take a bottle home with you," Springston said. "You have to measure them where they form, in the atmosphere, before they react and disappear."

Various groups have developed detectors for hydroperoxyl radicals, but these have been cumbersome and costly. The new device is comparatively small, lightweight, and inexpensive, has low power requirements, and gives a sensitive, fast response. It works by detecting a "glowing" signal from a chemiluminescent compound - similar to the compound that makes fireflies glow - when it reacts with the hydroperoxyl radicals in atmospheric samples fed into the device during flight.

"The chemiluminescence produced in solution creates a strong and readily detectable signal without the need for complex amplification procedures," said Lloyd.

The device has been tested in a mountaintop setting, but has not yet been deployed on an aircraft for a sampling mission. It is designed to be flown on atmospheric sampling aircraft, such as the Department of Energy's Gulfstream 1, which has been used by Brookhaven and other national laboratory scientists for a variety of atmospheric studies.

Related Links
Our Polluted World and Cleaning It Up



Memory Foam Mattress Review
Newsletters :: SpaceDaily :: SpaceWar :: TerraDaily :: Energy Daily
XML Feeds :: Space News :: Earth News :: War News :: Solar Energy News


Brazilian CO2 pollution outstripping economic growth: study
Sao Paulo (AFP) Nov 19, 2007
The increase in CO2 pollution Brazil spewed out between 1994 and 2005 surpassed the rate of its economic growth, a study published Monday in the Folha de Sao Paulo newspaper said.







  • Northrop Grumman Demonstrates New Rocket Engine Design Using Oxygen And Methane Propellants
  • Indigenous Cryogenic Stage Successfully Qualified
  • Groundbreaking Signals Start Of NASA Constellation Flight Tests
  • SpaceX Completes Development Of Merlin Regeneratively Cooled Rocket Engine

  • Lockheed Martin-Built Sirius 4 Launched Successfully From Baikonur Cosmodrome
  • First Soyuz Launch From Kourou Set For 2009
  • Ground Broken For New Test Launch Pad
  • Sea Launch Resumes Countdown for Thuraya-3 Launch

  • US Lawmakers Grill Space Agency On Plans For Shuttle Retirement
  • Atlantis At The Pad
  • Discovery's Return Marks Completion Of Esperia Mission
  • NASA's Space Shuttle Atlantis To Move To Launch Pad Saturday

  • Crew Moves Harmony To Front Of Space Station
  • PMA-2 Move Readies Station For Harmony Relocation
  • Russia plans more ISS modules
  • Expedition 16 Completes First Spacewalk

  • SPACEHAB Supporting Key Milestones Under NASA Space Act Agreement
  • Brazil to invest 28 bln dollars in science and technology: Lula
  • Orbital Outfitters Debuts IS3C - First-Ever Fully Functional Commercial Pressure Spacesuit
  • Europe's comet-chasing probe completes key flyby

  • China aiming to replace foreign satellites: report
  • China Completes Enclosure Of Land For Fourth Satellite Launch Center
  • China Launches New Remote Sensing Satellite
  • China launches remote sensing satellite

  • Can A Robot Find A Rock. Interview With David Wettergreen: Part IV
  • Proton Rocket To Launch Glonass Satellites Friday
  • QinetiQ Establishes Service And Support Centre For Talon Robots In Australia
  • UCSD Researchers Give Computers Common Sense

  • Mars Express Creates First Global Map Of Martian Ionosphere
  • Rover Finds Way To Brush Rock Surfaces Despite Setbacks
  • Spirit Continues Drive As Power Levels Decline
  • Opportunity's Rock Abrasion Tool Shows Anomalous Behavior

  • The content herein, unless otherwise known to be public domain, are Copyright Space.TV Corporation. AFP and UPI Wire Stories are copyright Agence France-Presse and United Press International. 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.TV Corp on any Web page published or hosted by Space.TV Corp. Privacy Statement