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Nanofiltration for the concentration of heat stable salts prior to MEA reclamation
journal contribution
posted on 2014-11-01, 00:00 authored by J Lim, C A Scholes, Ludovic DumeeLudovic Dumee, S E KentishWhile monethanolamine has shown great potential as a solvent for the capture of carbon dioxide, impurities can build within the solution over time, leading to increased viscosity and corrosivity. Classically, these impurities are removed by a combination of neutralization and either thermal reclamation, ion exchange or electrodialysis. In this work, we evaluate the use of nanofiltration to concentrate the heat stable salts within the solution prior to such reclamation. This allows the recirculating solvent to operate with low concentrations of these impurities, while providing a low volume, concentrated solution for reclamation. Results show that nanofiltration can reject greater than 80% of the heat stable anions, while allowing the monoethanolamine to permeate through the membrane, for return to the process. Rejection of the MEA itself is less than 7%. The nanofiltration operation is only effective on lean solvent with CO2 loadings of less than 0.2 and neutralization would be required upstream to deprotonate the amine. The two membranes tested (Koch MPF-34 and MPF-36) appeared stable to exposure to the solvent for over four months.
History
Journal
International journal of greenhouse gas controlVolume
30Pagination
34 - 41Publisher
ElsevierLocation
Amsterdam, The NetherlandsPublisher DOI
ISSN
1750-5836Language
engPublication classification
C Journal article; C1 Refereed article in a scholarly journalCopyright notice
2014, ElsevierUsage metrics
Categories
No categories selectedKeywords
Heat stable saltsMonoethanolamineNanofiltrationScience & TechnologyTechnologyEnergy & FuelsEngineering, EnvironmentalEngineeringMDEA SOLUTION CORROSIVITYCO2 CAPTUREMEMBRANESREMOVALWATERDEGRADATIONSEPARATIONINDUSTRYCHARGEACIDSGreen & Sustainable Science & TechnologyEngineering, ChemicalScience & Technology - Other TopicsPH