Anaerobic digestion converts organic waste into methane gas and fertilizer effluent. The ICA-developed prototype system is designed for planetary surface operation. It uses passive hydrostatic control for reliability, and is modular and redundant. The serpentine configuration accommodates tight geometric constraints similar to the ISS ECLSS rack architectures. Its shallow, low-tilt design enables (variable) lower-g convection than standard Earth (1 g) digesters. This technology will reuse and recycle materials including human waste, excess food, as well as packaging (if biodegradable bags are used)
Regarding the future of human spaceflight the development of bioregenerative life sup- port systems ...
Climate change is clearly becoming perceptible by its adverse effects to the environment. New Zealan...
In 2011, the Institute of Space Systems (Bremen) of the German Aerospace Center (DLR) launched a res...
The extensive use of fossil fuels and the environmental effect of their combustion products have att...
Interest on food production systems based on the cultivation of vegetables for future planetary expl...
Future crewed missions to other planets or deep space locations will require regenerative Life Suppo...
Interest on food production systems based on the cultivation of vegetables for future planetary expl...
Long-Duration, Deep-Space Human Exploration (LoDDSHE) missions demand robust and reliable technologi...
The extensive use of fossil fuels and the environmental effect of their combustion products have att...
The acquisition and use of biomass fuels for heating and cooking presents a ubiquitous problem for t...
Microbial food sources are becoming viable and more efficient alternatives to conventional food sour...
As NASA looks beyond the International Space Station toward long-duration, deep space missions away ...
Over the years, energy technology has transcended from non-renewable and unsustainable sources of en...
ABSTRACTFood waste (FW) is high in nutrients and has gained global attention as an ideal substrate f...
As NASA looks beyond the International Space Station toward long-duration, deep space missions away ...
Regarding the future of human spaceflight the development of bioregenerative life sup- port systems ...
Climate change is clearly becoming perceptible by its adverse effects to the environment. New Zealan...
In 2011, the Institute of Space Systems (Bremen) of the German Aerospace Center (DLR) launched a res...
The extensive use of fossil fuels and the environmental effect of their combustion products have att...
Interest on food production systems based on the cultivation of vegetables for future planetary expl...
Future crewed missions to other planets or deep space locations will require regenerative Life Suppo...
Interest on food production systems based on the cultivation of vegetables for future planetary expl...
Long-Duration, Deep-Space Human Exploration (LoDDSHE) missions demand robust and reliable technologi...
The extensive use of fossil fuels and the environmental effect of their combustion products have att...
The acquisition and use of biomass fuels for heating and cooking presents a ubiquitous problem for t...
Microbial food sources are becoming viable and more efficient alternatives to conventional food sour...
As NASA looks beyond the International Space Station toward long-duration, deep space missions away ...
Over the years, energy technology has transcended from non-renewable and unsustainable sources of en...
ABSTRACTFood waste (FW) is high in nutrients and has gained global attention as an ideal substrate f...
As NASA looks beyond the International Space Station toward long-duration, deep space missions away ...
Regarding the future of human spaceflight the development of bioregenerative life sup- port systems ...
Climate change is clearly becoming perceptible by its adverse effects to the environment. New Zealan...
In 2011, the Institute of Space Systems (Bremen) of the German Aerospace Center (DLR) launched a res...