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Coiled Brine Recovery Assembly, Year 2 (CoBRA)

Completed TRL 5 (started at 4, targeting 5)

Description

The Coiled Brine Recovery Assembly (CoBRA) project will result in a proof-of-concept demonstration for a lightweight, compact, affordable, regenerable and disposable solution to brine water recovery. The heart of CoBRA is an evaporator that produces water vapor from brine. This evaporator leverages a novel design that enables passive transport of brine from place to place within the system. While it will be necessary to build or modify a system for testing the CoBRA concept, the emphasis of this project will be on developing the evaporator itself. This project will utilize a "test early, test often" approach, building at least one trial evaporator to guide the design of the final product.

Benefits

After the Coiled Brine Recovery Assembly (CoBRA} undergoes necessary further development, the technology could be integrated into the International Space Station (ISS) life support system as a brine processor. This has the potential to recover 575 pounds of water per year from brine. This represents roughly $10M per year in savings on water resupply costs. While the primary function of the CoBRA is to recover water from concentrated wastewater brines generated by a primary processor, the CoBRA may be able to function as a primary processor itself. Current state-of-the-art primary processors rely on rotating drums, pitot pumps, lobe compressors, and other sensitive machinery for operation. This equipment has a history of becoming fouled due to solids precipitation. In the case of a failure of the primary processor, the CoBRA could serve as a backup, providing dissimilar redundancy to ensure crew survival. Upon successful demonstration of a proof-of-concept evaporator, Advanced Exploration Systems (AES) will provide funding for further development. This will lead to infusion of CoBRA technology into an integrated closed-loop life support system architecture. The CoBRA will then be poised to play a key role in a future ground-based integrated life support systems test, and an eventual ISS detailed test objective (DTO). After a successful DTO, CoBRA could be integrated into the International Space Station (ISS) life support system, with the potential to recover 575 pounds of water per year from brine. This represents roughly $10M per year in savings on water resupply costs. Leveraging the extensive technology maturation and testing accomplished through a DTO, the CoBRA will then be ready for use by future deep-space exploration programs. Coiled Brine Recovery Assembly (CoBRA) technology also has the potential to be used for water recovery from contaminated wastes in the chemical, nuclear, and hydraulic fracturing industries.

Details

Technology areaHuman Health, Life Support, and Habitation Systems > Environmental Control and Life Support Systems and Habitation Systems > Water Recovery and Management
ProgramCenter Innovation Fund: JSC CIF (JSC CIF)
Lead organizationJohnson Space Center, Houston, TX
Start date2014-11-01
End date2015-10-01

Project contacts

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How to get involved

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