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VRA Modeling, phase 1The destruction of organic contaminants in waste water for closed systems, such as that of Space Station, is crucial due to the need for recycling the waste water. A co-current upflow bubble column using oxygen as the gas phase oxidant and packed with catalyst particles consisting of a noble metal on an alumina substrate is being developed for this process. The objective of this study is to develop a plug-flow model that will predict the performance of this three phase reactor system in destroying a multicomponent mixture of organic contaminants in water. Mass balances on a series of contaminants and oxygen in both the liquid and gas phases are used to develop this model. These mass balances incorporate the gas-to-liquid and liquid-to-particle mass transfer coefficients, the catalyst effectiveness factor, and intrinsic reaction rate. To validate this model, a bench scale reactor has been tested at Michigan Technological University at elevated pressures (50-83 psig,) and a temperature range of 200 to 290 F. Feeds consisting of five dilute solutions of ethanol (approx. 10 ppm), chlorobenzene (approx. 20 ppb), formaldehyde (approx. 100 ppb), dimethyl sulfoxide (DMSO approx. 300 ppb), and urea (approx. 20 ppm) in water were tested individually with an oxygen mass flow rate of 0.009 lb/h. The results from these individual tests were used to develop the kinetic parameter inputs necessary for the computer model. The computer simulated results are compared to the experimental data obtained for all 5 components run in a mixture on the differential test column for a range of reactor contact times.
Document ID
19960017612
Acquisition Source
Marshall Space Flight Center
Document Type
Contractor Report (CR)
Authors
Kindt, Louis M.
(Michigan Technological Univ. Houghton, MI United States)
Mullins, Michael E.
(Michigan Technological Univ. Houghton, MI United States)
Hand, David W.
(Michigan Technological Univ. Houghton, MI United States)
Kline, Andrew A.
(Michigan Technological Univ. Houghton, MI United States)
Date Acquired
September 6, 2013
Publication Date
May 24, 1995
Subject Category
Man/System Technology And Life Support
Report/Patent Number
NAS 1.26:200698
ION8-38250-18FR
NASA-CR-200698
Report Number: NAS 1.26:200698
Report Number: ION8-38250-18FR
Report Number: NASA-CR-200698
Accession Number
96N23169
Funding Number(s)
CONTRACT_GRANT: NAS8-38250
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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