ms membrane

MS MEMBRANE
REMEDIATION OF LIQUID AND GAS EFFLUENTS
BENEFITS
APPLICATION-SPECIFIC
PROCESS
LOW OPERATING COST
BACKGROUND
Removal of pollutant traces in gas or liquid flux is a key challenge for industrials, as
effluents or even within production plants. Processes including absorption or adsorption
exist but regenerating is both tricky and incomplete. The pervaporation process-whatever
membranes used (polymer or ceramic) does not resist to heat and chemical conditions.
To address this issue, our technology combines ceramic membranes and molten salts.
COMPACT
RECUPERATIVE
TECHNIQUE
HOW DOES IT WORKS ?
Molten-Salt MEMBRANE allows extracting trace pollutants
like hydrocarbons or volatile organic compounds (VOC) in a
gas or liquid coming from industrial products or effluents.
KEYWORDS
VOC EXTRACTION
MEMBRANE
REGENERATIVE PROCESS
MOLTEN SALTS
MS Membranes are made up of channels containing
molten-salt parallel to the fluid flow. Pollutants are
transported to molten-salts that absorb them. Molten salts
are regenerated under mild heating conditions.
Both membranes and molten salt can be tuned for specific
solutions.
KEY BENEFITS vs. STATE OF THE ART
State of The Art
REMEDIATION
•
Delicate and incomplete
regeneration step
•
IP STATUS
PATENT
•
MS MEMBRANE
•
Not resistant to high temperatures
and strong chemical conditions
Recuperative and no-destructive
remediation process by
absorption
•
Easy and fast to produce
Destructive remediation
•
Automatable process
•
Limited size and specific process
if necessary
PARTNERSHIPS
LICENSE AND/OR
R&D COLLABORATION
(POSSIBLE CO-FUNDING)
DEVELOPMENT STATUS
CONTACT
•
Technological program ongoing to
develop lab scale prototype
[email protected]
+33 (0)4 13 24 66 16
•
Development of specific process
for various industrial waste
effluents treatment
www.sattse-technologies.com
APPLICATIONS
•
Chemicals and pharmaceuticals
industries,
•
Environment, remediation,
purification
•
Gas or liquid treatment,
•
Added value flows.
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SATT PACA Corse SAS with a capital of €1 million | RCS Marseille 539 768 085 00018 | APE 7219Z | last update Nov. 2015