A Mission to Mars could make its own Oxygen thanks to Plasma Technology

A mission to the Red Planet could create its own oxygen supply. Picture credit: NASA JPL/Malin Space Science Systems

A mission to the Red Planet could create its own oxygen supply. Picture credit: NASA JPL/Malin Space Science Systems

Mars, with its 96% CO2 atmosphere, has nearly ideal conditions for creating oxygen from CO2 through decomposition. The research by the universities of Lisbon and Porto, and École Polytechnique in Paris, shows that the pressure and temperature ranges in the Martian atmosphere mean non-thermal (or non-equilibrium) plasma can be used to produce oxygen efficiently.

Dr Vasco Guerra, from the University of Lisbon, said: “Sending a manned mission to Mars is one of the next major steps in our exploration of space. Creating a breathable environment, however, is a substantial challenge...

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Potential Human Habitat located on the Moon

The Marius Hills Skylight, as observed by the Japanese SELENE/Kaguya research team. Credit: NASA/Goddard/Arizona State University

The Marius Hills Skylight, as observed by the Japanese SELENE/Kaguya research team. Credit: NASA/Goddard/Arizona State University

A study published in Geophysical Research Letters confirms the existence of a large open lava tube in the Marius Hills region of the moon, which could be used to protect astronauts from hazardous conditions on the surface. No one has ever been on the moon longer than 3 days, largely because space suits alone can’t shield astronauts from its elements: extreme temperature variation, radiation, and meteorite impacts. Unlike Earth, the moon has no atmosphere or magnetic field to protects its inhabitants.

The safest place to seek shelter is the inside of an intact lava tube, according to the study...

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Scientists Create most Powerful Micro-Scale Bio-Solar Cell yet

This is a miniaturized biological solar cell assembled micro-BSC device. Credit: Seokheun Choi

This is a miniaturized biological solar cell assembled micro-BSC device. Credit: Seokheun Choi

New solar cell could power point-of-care medical devices in limited-resource regions. Researchers at Binghamton University, State University of New York have created a micro-scale biological solar cell that generates a higher power density for longer than any existing cell of its kind. A microfluidic lab-on-a-chip system that generates its own power is essential for stand-alone, independent, self-sustainable point-of-care diagnostic devices to work in limited-resource and remote regions. Miniaturized biological solar cells (or micro-BSCs) can be the most suitable power source for those applications because the technique resembles Earth’s natural ecosystem.

“Micro-BSCs can continuously generate el...

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Microbes leave ‘Fingerprints’ on Martian Rocks

Metallosphaera sedula. Credit: University of Vienna

Metallosphaera sedula. Credit: University of Vienna

Scientists around Tetyana Milojevic from the Faculty of Chemistry at the University of Vienna are in search of unique biosignatures, which are left on synthetic extraterrestrial minerals by microbial activity. The biochemist and astrobiologist investigates these signatures at her own miniaturized “Mars farm” where she can observe interactions between the archaeon Metallosphaera sedula and Mars-like rocks. These microbes are capable of oxidizing and integrating metals into their metabolism.

The team investigates interactions between Metallosphaera sedula, a microbe that inhabits extreme environments, and different minerals which contain nutrients in form of metals...

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