The biomining microbes which extract metals from ores that have been applied in mining processes worldwide hold potential for harnessing space resources. Their cell growth and ability to extract metals from extraterrestrial minerals under microgravity environments, however, remains largely unknown. The present study used the model biomining bacterium Acidithiobacillus ferrooxidans to extract metals from lunar and Martian regolith simulants cultivated in a rotating clinostat with matched controls grown under the influence of terrestrial gravity. Analyses included assessments of final cell count, size, morphology, and soluble metal concentrations. Under Earth gravity, with the addition of Fe3+ and H2/CO2, A. ferrooxidans grew in the presence ...
In-situ resource utilization (ISRU) is increasingly acknowledged as an essential requirement for the...
As humans explore and settle in space, they will need to mine elements to support industries such as...
Microbe-mineral interactions have become of interest for space exploration as microbes can biomine u...
The biomining microbes which extract metals from ores that have been applied in mining processes wor...
The biomining microbes which extract metals from ores that have been applied in mining processes wor...
The question of life on Mars has been in focus of astrobiological research for several decades, and ...
The world is entering a new era of exploring and exploiting outer space. The revolution in small, lo...
The world is entering a new era of exploring and exploiting outer space. The revolution in small, lo...
The logistical supply of terrestrial materials to space is costly and puts limitations on exploratio...
The logistical supply of terrestrial materials to space is costly and puts limitations on exploratio...
Microbe-mineral interactions have become of interest for space exploration as microbes can biomine u...
Microbe-mineral interactions have become of interest for space exploration as microbes can biomine u...
In-situ resource utilization (ISRU) is increasingly acknowledged as an essential requirement for the...
Microbe-mineral interactions have become of interest for space exploration as microbes can biomine u...
In-situ resource utilization (ISRU) is increasingly acknowledged as an essential requirement for the...
In-situ resource utilization (ISRU) is increasingly acknowledged as an essential requirement for the...
As humans explore and settle in space, they will need to mine elements to support industries such as...
Microbe-mineral interactions have become of interest for space exploration as microbes can biomine u...
The biomining microbes which extract metals from ores that have been applied in mining processes wor...
The biomining microbes which extract metals from ores that have been applied in mining processes wor...
The question of life on Mars has been in focus of astrobiological research for several decades, and ...
The world is entering a new era of exploring and exploiting outer space. The revolution in small, lo...
The world is entering a new era of exploring and exploiting outer space. The revolution in small, lo...
The logistical supply of terrestrial materials to space is costly and puts limitations on exploratio...
The logistical supply of terrestrial materials to space is costly and puts limitations on exploratio...
Microbe-mineral interactions have become of interest for space exploration as microbes can biomine u...
Microbe-mineral interactions have become of interest for space exploration as microbes can biomine u...
In-situ resource utilization (ISRU) is increasingly acknowledged as an essential requirement for the...
Microbe-mineral interactions have become of interest for space exploration as microbes can biomine u...
In-situ resource utilization (ISRU) is increasingly acknowledged as an essential requirement for the...
In-situ resource utilization (ISRU) is increasingly acknowledged as an essential requirement for the...
As humans explore and settle in space, they will need to mine elements to support industries such as...
Microbe-mineral interactions have become of interest for space exploration as microbes can biomine u...