Creating a Wastewater Technology ‘Toolbox’ for Space Exploration ECLSSLife Support Systems (LSS) are essential for manned spaceflight; without them, humans would not survive. Upcoming long-duration missions demand robust environmental control LSS (ECLSS) due to their insolation and limited prospect for immediate resupply. As part of LSS, water purification systems will require high reliability, sustainability, and efficiency due to transport mass limitations, because routine water delivery will be very difficult and costly to resupply future habitats. This suggests a highly effective treatment method and reuse of every wastewater source. A variety of wastewater streams are generated by crew, and although not all are currently treated, habitat success will require each stream to be treated and utilized as a ‘resource’ rather than 'waste’. These wastewater streams include human wastewater (urine, feces), food waste (plate waste, inedible plant biomass), humidity condensate, hygiene water (shower, oral, handwash), and laundry. Proven technologies are often relied upon due to long-term operations. For future, longer-term missions, this paradigm must shift to include technologies based on meeting mission requirements rather than sacrificing productivity in lieu of proven existing technology capabilities. Many physical, chemical, and biological water-processing technologies are proven and established for terrestrial applications. Herein, these technologies were collected into a ‘toolbox’ to perform possible functions towards effective water purification steps in reduced gravity. Selection criteria are dependent on approach (physical, chemical, or biological), complexity/components, terrestrial performance, and potential applicability to space life support. Utilization of this ‘toolbox’ approach provides a streamline methodology for technology development and down-selection into future architecture in direct response to the dynamic space life support requirements. Establishing the ‘toolbox’ also provides organized and efficient identification of the most appropriate technologies. From there, the technologies with the largest potential to be configured for mission requirements can be further developed and appropriately assessed. This presentation seeks to provide a comprehensive review of space life support water purification requirements and challenges, as well as to present a ‘toolbox’ methodology of available technologies to aid in the difficult process of selecting appropriate LSS water purification for short and long-term NASA mission architectures.
Document ID
20200011600
Acquisition Source
Kennedy Space Center
Document Type
Conference Paper
External Source(s)
Authors
Luke Roberson (Kennedy Space Center Merritt Island, Florida, United States)
Melanie T Pickett (University of South Florida Tampa, Florida, United States)
Talon Bullard (University of South Florida Tampa, Florida, United States)
Daniel H Yeh (University of South Florida Tampa, Florida, United States)
Date Acquired
May 26, 2020
Subject Category
Man/System Technology And Life Support
Report/Patent Number
KSC-E-DAA-TN78899Report Number: KSC-E-DAA-TN78899
Meeting Information
Meeting: ICES 2020: 50th International Conference on Environmental Systems
Location: Lisbon
Country: PT
Start Date: July 12, 2020
End Date: July 16, 2020
Sponsors: International Conference on Environmental Systems