Categories: AstrobiologyTitan

The Early Earth’s Atmosphere was Similar to Titan

The thick organic haze that shrouds Titan is similar to what we had here on Earth billions of years ago; an environment that might have helped early life get a foothold. NASA researchers set up several experiments that reproduced the atmosphere in the early Earth and Titan today. The Earth experiments produced tremendous amounts of organic material, which could have been one of the ways life first appeared.

Organic haze in the atmosphere of Saturn’s moon, Titan, is similar to haze in early Earth’s air — haze that may have helped nourish life on our planet– according to a NASA Astrobiology Institute study released Nov. 6, 2006.

Study scientists simulated both the atmospheric conditions of early Earth and those of present-day Titan. Their study, “Organic Haze on Titan and the Early Earth,” describing the scientists’ work, appears in Proceedings of the National Academy of Sciences. The principal author is Melissa Trainer, a NASA Astrobiology Institute postdoctoral fellow at the University of Colorado, Boulder.

“It’s exciting to see that the early Earth experiments produced so much organic matter,” said Carl Pilcher, director of the NASA Astrobiology Institute, at NASA Ames Research Center, Moffett Field, Calif. “An organic haze produced this way on early Earth could have contributed to the formation and sustenance of life.”

According to the study’s researchers, their experiments help scientists interpret observations of Titan’s atmosphere from NASA’s Cassini mission, while also showing how a major source of organics could have been produced on Earth billions of years ago.

The researchers reported that the aerosols produced in the laboratory could serve as analogs for the observed haze in Titan’s atmosphere. The scientists also estimated that aerosol production on early Earth could have served as a primary source of organic material to the surface.

“This paper shows one of the ways in which the study of other worlds can help us understand Earth,” said Chris McKay, a scientist at NASA Ames and one of the study’s co-authors. “Titan has a thick organic haze layer, and this work started out to understand the chemistry of that alien organic haze. Then we realized that we could apply the same approach to the organic haze on early Earth.”

“We hope to determine how the organics were made and their chemical nature,” McKay observed. The scientists reported that when sunlight hits an atmosphere of methane and nitrogen, like the atmosphere of Titan today, aerosol particles form. When an atmosphere also contains carbon dioxide, as in the atmosphere of ancient Earth, different kinds of aerosols form.

The scientists used a special ultraviolet-light lamp to produce particles in the simulated atmospheres, and measured the chemical composition, size and shape of the resulting particles.

“It’s somewhat similar to the smog in Los Angeles,” Trainer explained. “Today’s haze on Earth is also created photochemically, which means sunlight powers chemical reactions in the atmosphere. However, the early atmosphere of Earth had different gases present, so chemical composition of the early haze is very different than the haze we have today. There also would have been a lot more of it.”

Original Source: NASA News Release

Fraser Cain

Fraser Cain is the publisher of Universe Today. He's also the co-host of Astronomy Cast with Dr. Pamela Gay. Here's a link to my Mastodon account.

Recent Posts

Scientists Have Figured out why Martian Soil is so Crusty

On November 26th, 2018, NASA's Interior Exploration using Seismic Investigations, Geodesy, and Heat Transport (InSight)…

8 hours ago

Another Way to Extract Energy From Black Holes?

Black holes are incredible powerhouses, but they might generate even more energy thanks to an…

13 hours ago

Plastic Waste on our Beaches Now Visible from Space, Says New Study

According to the United Nations, the world produces about 430 million metric tons (267 U.S.…

1 day ago

Future Space Telescopes Could be Made From Thin Membranes, Unrolled in Space to Enormous Size

As we saw with JWST, it's difficult and expensive to launch large telescope apertures, relying…

2 days ago

Voyager 1 is Forced to Rely on its Low Power Radio

Voyager 1 was launched waaaaaay back in 1977. I would have been 4 years old…

2 days ago

Webb Confirms a Longstanding Galaxy Model

The spectra of distant galaxies shows that dying sun-like stars, not supernovae, enrich galaxies the…

3 days ago