MC

Marlies E.R. Christiaens

Authored

10 records found

To sustain human deep space exploration or extra-terrestrial settlements where no resupply from the Earth or other planets is possible, technologies for in situ food production, water, air, and waste recovery need to be developed. The Micro-Ecological Life Support System Alternat ...

Nitrogen cycling in Bioregenerative Life Support Systems

Challenges for waste refinery and food production processes

In order to sustain human life in an isolated environment, an efficient conversion of wasted nutrients to food might become mandatory. This is particularly the case for space missions where resupply from earth or in-situ resource utilization is not possible or desirable. A combin ...

Nitrogen cycling in Bioregenerative Life Support Systems

Challenges for waste refinery and food production processes

In order to sustain human life in an isolated environment, an efficient conversion of wasted nutrients to food might become mandatory. This is particularly the case for space missions where resupply from earth or in-situ resource utilization is not possible or desirable. A combin ...

Nitrogen cycling in Bioregenerative Life Support Systems

Challenges for waste refinery and food production processes

In order to sustain human life in an isolated environment, an efficient conversion of wasted nutrients to food might become mandatory. This is particularly the case for space missions where resupply from earth or in-situ resource utilization is not possible or desirable. A combin ...

Nitrogen cycling in Bioregenerative Life Support Systems

Challenges for waste refinery and food production processes

In order to sustain human life in an isolated environment, an efficient conversion of wasted nutrients to food might become mandatory. This is particularly the case for space missions where resupply from earth or in-situ resource utilization is not possible or desirable. A combin ...

Nitrogen cycling in Bioregenerative Life Support Systems

Challenges for waste refinery and food production processes

In order to sustain human life in an isolated environment, an efficient conversion of wasted nutrients to food might become mandatory. This is particularly the case for space missions where resupply from earth or in-situ resource utilization is not possible or desirable. A combin ...

Nitrogen cycling in Bioregenerative Life Support Systems

Challenges for waste refinery and food production processes

In order to sustain human life in an isolated environment, an efficient conversion of wasted nutrients to food might become mandatory. This is particularly the case for space missions where resupply from earth or in-situ resource utilization is not possible or desirable. A combin ...

Nitrogen cycling in Bioregenerative Life Support Systems

Challenges for waste refinery and food production processes

In order to sustain human life in an isolated environment, an efficient conversion of wasted nutrients to food might become mandatory. This is particularly the case for space missions where resupply from earth or in-situ resource utilization is not possible or desirable. A combin ...

Nitrogen cycling in Bioregenerative Life Support Systems

Challenges for waste refinery and food production processes

In order to sustain human life in an isolated environment, an efficient conversion of wasted nutrients to food might become mandatory. This is particularly the case for space missions where resupply from earth or in-situ resource utilization is not possible or desirable. A combin ...
Long-term human Space missions will rely on regenerative life support as resupply of water, oxygen and food comes with constraints. The International Space Station (ISS) relies on an evaporation/condensation system to recover 74–85% of the water in urine, yet suffers from repetit ...