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Biologically Pre-Treated Habitation Waste Water as a Sustainable Green Urine Pre-Treat SolutionThe ability to recover water from urine and flush water is a critical process to allow long term sustainable human habitation in space or bases on the moon or mars. Organic N present as urea or similar compounds can hydrolyze producing free ammonia. This reaction results in an increase in the pH converting ammonium to ammonia which is volatile and not removed by distillation. The increase in pH will also cause precipitation reactions to occur. In order to prevent this, urine on ISS is combined with a pretreat solution. While use of a pretreatment solution has been successful, there are numerous draw backs including: storage and use of highly hazardous solutions, limitations on water recovery (less than 85%), and production of brine with pore dewatering characteristics. We evaluated the use of biologically treated habitation wastewaters (ISS and early planetary base) to replace the current pretreat solution. We evaluated both amended and un-amended bioreactor effluent. For the amended effluent, we evaluated "green" pretreat chemicals including citric acid and citric acid amended with benzoic acid. We used a mock urine/air separator modeled after the urine collection assembly on ISS. The urine/air separator was challenged continually for >6 months. Depending on the test point, the separator was challenged daily with donated urine and flushed with amended or un-amended reactor effluent. We monitored the pH of the urine, flush solution and residual pH in the urine/air separator after each urine event. We also evaluated solids production and biological growth. Our results support the use of both un-amended and amended bioreactor effluent to maintain the operability of the urine /air separator. The ability to use bioreactor effluent could decrease consumable cost, reduce hazards associated with current pre-treat chemicals, allow other membrane based desalination processes to be utilized, and improve brine characteristics.
Document ID
20170004969
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Jackson, W. Andrew
(Texas Tech Univ. Lubbock, TX, United States)
Thompson, Bret
(Texas Tech Univ. Lubbock, TX, United States)
Sevanthi, Ritesh
(Texas Tech Univ. Lubbock, TX, United States)
Morse, Audra
(Texas Tech Univ. Lubbock, TX, United States)
Meyer, Caitlin
(NASA Johnson Space Center Houston, TX, United States)
Callahan, Michael
(NASA Johnson Space Center Houston, TX, United States)
Date Acquired
June 2, 2017
Publication Date
July 16, 2017
Subject Category
Man/System Technology And Life Support
Report/Patent Number
ICES-2017-299
JSC-CN-39644
Meeting Information
Meeting: International Conference on Environmental Systems
Location: Charleston, SC
Country: United States
Start Date: July 16, 2017
End Date: July 20, 2017
Sponsors: International Conference On Environmental Systems, Inc.
Funding Number(s)
CONTRACT_GRANT: NNX13AL52H
Distribution Limits
Public
Copyright
Public Use Permitted.
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