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On-demand novel electrochemical device for wastewater reclamation
Active
TRL 3 (started at 3, targeting 4)
Description
As NASA begins to return crews to the lunar surface, new types of environmental control and life support systems challenges have emerged, requiring innovative solutions including the need for new methods to recycle wastewater. This need arises because new mission scenarios are projected to require small water recycling systems that can sustain a limited number of crew for durations ranging from days to several months. For these missions, new wastewater recycling methods are needed with low system complexity, low mass characteristics, and improved reliability. New technologies should function in partial gravity and should be compatible with periods of dormancy followed by a return to full service. The aim of the Phase I study is to demonstrate the feasibility of novel electrochemical device for wastewater recycling. The new device operates at low temperatures and pressures, eliminates the need for expendables and is uniquely compatible with a fully closed loop life support system. Preliminary test results and engineering analysis indicate the device has favorable mass and power consumption characteristics. A key feature of the device is that it is constructed from highly stable electrochemical materials, so the device operates long term without degradation of performance. Preliminary results also show that the device can be readily cycled on or off and can be easily scaled as mission requirements evolve. The Phase I study will demonstrate the device’s function as both a pre-treatment method and a post-treatment method, with the goal of achieving high efficiency water recovery.
Benefits
Direct NASA applications of the proposed close-loop, on-demand electrochemical generator is as an important part for water recovery from urine as well as disinfection and TOC reduction in the waste-water processor. Additionally, the resulting aqueous solutions of the versatile green oxidant produced by the on-demand generator could be used in the disinfection of crew contact surfaces in space vehicles and lunar and planet habitats, as well as for heat exchanger biofouling remediation and laundry applications. This proposed technology can provide a on-demand electrochemical generation which would enable greater utilization of a versatile green oxidant in applications ranging from environmental remediation to portable sanitation to decontamination. This technology will be useful to civilian and military first responders, and may also be applied to sterilize medical equipment, and facilitate water treatment in remote locations.
Details
| Technology area | Human Health, Life Support, and Habitation Systems |
| Program | Small Business Innovation Research/Small Business Tech Transfer (SBIR/STTR) |
| Lead organization | Johnson Space Center, Houston, TX |
| Start date | 2025-08-13 |
| End date | 2027-08-12 |
Project contacts
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How to get involved
This is early/mid-stage (TRL 3) — the most realistic path in is NASA SBIR/STTR, which funds small businesses and research institutions to develop technology aligned with NASA's needs (equity-free, phased funding). Check whether a current SBIR/STTR solicitation topic overlaps with this project's technology area, or contact the project directly (above) to ask.
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