Subscribe free to our newsletters via your
. Solar Energy News .




MARSDAILY
NASA Rover's First Soil Studies Help Fingerprint Martian Minerals
by Staff Writers
Pasadena CA (JPL) Oct 31, 2012


This graphic shows results of the first analysis of Martian soil by the Chemistry and Mineralogy (CheMin) experiment on NASA's Curiosity rover. The image reveals the presence of crystalline feldspar, pyroxenes and olivine mixed with some amorphous (non-crystalline) material. The soil sample, taken from a wind-blown deposit within Gale Crater, where the rover landed, is similar to volcanic soils in Hawaii. The colors in the graphic represent the intensity of the X-rays, with red being the most intense. Image credit: NASA/JPL-Caltech/Ames.

NASA's Mars rover Curiosity has completed initial experiments showing the mineralogy of Martian soil is similar to weathered basaltic soils of volcanic origin in Hawaii.

The minerals were identified in the first sample of Martian soil ingested recently by the rover. Curiosity used its Chemistry and Mineralogy instrument (CheMin) to obtain the results, which are filling gaps and adding confidence to earlier estimates of the mineralogical makeup of the dust and fine soil widespread on the Red Planet.

"We had many previous inferences and discussions about the mineralogy of Martian soil," said David Blake of NASA Ames Research Center in Moffett Field, Calif., who is the principal investigator for CheMin.

"Our quantitative results provide refined and in some cases new identifications of the minerals in this first X-ray diffraction analysis on Mars."

The identification of minerals in rocks and soil is crucial for the mission's goal to assess past environmental conditions. Each mineral records the conditions under which it formed.

The chemical composition of a rock provides only ambiguous mineralogical information, as in the textbook example of the minerals diamond and graphite, which have the same chemical composition, but strikingly different structures and properties.

CheMin uses X-ray diffraction, the standard practice for geologists on Earth using much larger laboratory instruments. This method provides more accurate identifications of minerals than any method previously used on Mars.

X-ray diffraction reads minerals' internal structure by recording how their crystals distinctively interact with X-rays. Innovations from Ames led to an X-ray diffraction instrument compact enough to fit inside the rover.

These NASA technological advances have resulted in other applications on Earth, including compact and portable X-ray diffraction equipment for oil and gas exploration, analysis of archaeological objects and screening of counterfeit pharmaceuticals, among other uses.

"Our team is elated with these first results from our instrument," said Blake. "They heighten our anticipation for future CheMin analyses in the months and miles ahead for Curiosity."

The specific sample for CheMin's first analysis was soil Curiosity scooped up at a patch of dust and sand that the team named Rocknest. The sample was processed through a sieve to exclude particles larger than 0.006 inch (150 micrometers), roughly the width of a human hair.

The sample has at least two components: dust distributed globally in dust storms and fine sand originating more locally. Unlike conglomerate rocks Curiosity investigated a few weeks ago, which are several billion years old and indicative of flowing water, the soil material CheMin has analyzed is more representative of modern processes on Mars.

"Much of Mars is covered with dust, and we had an incomplete understanding of its mineralogy," said David Bish, CheMin co-investigator with Indiana University in Bloomington.

"We now know it is mineralogically similar to basaltic material, with significant amounts of feldspar, pyroxene and olivine, which was not unexpected. Roughly half the soil is non-crystalline material, such as volcanic glass or products from weathering of the glass. "

Bish said, "So far, the materials Curiosity has analyzed are consistent with our initial ideas of the deposits in Gale Crater recording a transition through time from a wet to dry environment. The ancient rocks, such as the conglomerates, suggest flowing water, while the minerals in the younger soil are consistent with limited interaction with water."

During the two-year prime mission of the Mars Science Laboratory Project, researchers are using Curiosity's 10 instruments to investigate whether areas in Gale Crater ever offered environmental conditions favorable for microbial life.

.


Related Links
Mars Science Laboratory
Mars News and Information at MarsDaily.com
Lunar Dreams and more






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








MARSDAILY
Curiosity's Tastes of Martian Soil Offer Insights on Mineral Composition
Tucson AAZ (SPX) Oct 31, 2012
NASA's Curiosity rover has taken its first bites out of the Martian surface and used the materials scooped up, sieved and portioned to cleanse the palate of the rover's sample collection system of any contaminants that may have come from Earth, said David Vaniman, Senior Scientist at the Planetary Science Institute. A portion of the soil was delivered to the rover's Chemistry and Mineralog ... read more


MARSDAILY
New enzyme 'produces more fuel from less corn,' Danish company says

Scientists build 'nanobowls' to protect catalysts needed for better biofuel production

Boeing-COMAC Technology Center Announces First Biofuel Research Project

Serbia marks opening of new biogas plant

MARSDAILY
Robots in the Home: Will Older Adults Roll Out the Welcome Mat?

Canada, NASA in space rover talks

Training Your Robot the PaR-PaR Way

Northrop Grumman Remotec to Begin Delivering Titus Robot in December

MARSDAILY
China backs suit against Obama over wind farm deal

DNV KEMA awarded framework agreement for German wind project developer SoWiTec

Sandia Labs benchmark helps wind industry measure success

Bigger wind turbines make greener electricity

MARSDAILY
Mazda in profit, cuts sales outlook on China row

Nissan chief wary of China amid island row: report

Wireless system charges electric vehicles

China approves Chery-JLR joint auto venture

MARSDAILY
Iraq, Kuwait battle over gulf megaports

BG Group says it sells Queensland gas interests to China's CNOOC

China completes shale bidding

Oil prices drop as hurricane blasts US East Coast

MARSDAILY
US nuclear plant exits 'alert' after storm waters recede

Hitachi enters Britain's nuclear sector

Fukushima operator TEPCO slashes loss forecast

Bulgarian president sets nuclear referendum for next January

MARSDAILY
Virgin Group and Rosnano announce joint investment fund

Efforts to mitigate climate change must target energy efficiency

Poland hails carbon allowances compromise

Global headwinds trouble India's Suzlon

MARSDAILY
Brazil's Indians appeal for help to stop eviction

Sting forces venue switch in Philippines tree row

Ozone Affects Forest Watersheds

Study: Windblown forests best left alone




The content herein, unless otherwise known to be public domain, are Copyright 1995-2014 - 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