NALA Membranes
Sulfonated polysulfone RO that tolerates the chlorine polyamide cannot.
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Receive a weekly email digest of the latest industrial wastewater treatment solutions added by the network.Updated Sept 28, 2026
Industrial wastewater treatment covers what a plant does with the water it has already used. On Halo, the solutions cover membranes and separation, photocatalysis and advanced oxidation, recovering nutrients from the stream, and adsorbents and reactive media. Sign up to search the full network and post your specific need.
NALA Membranes
Sulfonated polysulfone RO that tolerates the chlorine polyamide cannot.
Ardent Technologies / Syensqo
Fluorinated membranes dewater sulfuric acid past the azeotropic limit.
Ardent Technologies / Syensqo
Pervaporation pulling alcohols, ketones and acetates back out of water.
MY
University at Buffalo, State University of New York
A 30nm titania membrane with a cut-off tunable between 200 and 1,200 Da.
Resin wafer electrodeionization separating lactic acid from the stream.
Membrane distillation on waste heat and sun, 98% recovery at high salinity.
UO
University of Alberta
A floating photocatalyst degrading 91% of naphthenic acids in sunlight, unstirred.
MS
Montana State University
A core-shell semiconducting polymer reducing nitrate under sunlight.
UO
Concave microlens arrays concentrating sunlight into a photodegradation reactor.
Purafide
A plasma reactor destroying PFAS from drinking water through to leachate.
University of Missouri, Columbia
Iron oxide coatings making hydroxyl radicals from peroxide, 3-log on virus.
Georgia Institute of Technology
Doped magnetic nanoparticles took 90% of phosphorus out at a poultry plant.
A modular bioreactor concentrating nitrogen and phosphorus for reuse.
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Universities, startups, and suppliers with solutions in industrial wastewater treatment.
Industrial wastewater treatment organizationsResearchers and inventors advancing industrial wastewater treatment solutions.
Industrial wastewater treatment expertsRecovery, not disposal, is what most of the work on Halo is about. Membranes pull back solvents and acid, magnetic nanoparticles and bioreactors take out nitrogen and phosphorus and sell them on, algae are grown on the stream, and several entries exist only to get the water back. On Halo it spans 7 groups, including membranes and separation, photocatalysis and advanced oxidation, and recovering nutrients from the stream.
Stage of development. Work on industrial wastewater treatment on Halo is split between university programs and companies. 41% of the solutions are in market. Sponsored research and co-development are the usual partnering routes, and about 57% of the solutions that state terms offer licensing.
The stream is treated as a source. Four entries recover nitrogen and phosphorus and sell them on, one as fertilizer and one alongside hydrogen from the same electrolysis. Two more grow microalgae on the wastewater and turn it into biocrude. Three others recover the water: a MOF desiccant on waste heat, a hydrogel holding eight times its own mass inside a steel plant, and a machine that splits ink effluent into a cake and washwater.
Sunlight is doing the oxidation. Three of five advanced oxidation entries run on solar energy with no stirring and no added power: a floating photocatalyst reaching 91% degradation of naphthenic acids in six hours, a core-shell semiconducting polymer for nitrate, and concave microlens arrays concentrating light into the reactor. The other two use plasma and Fenton chemistry, and both name PFAS or virus loads.
Separation is chosen by what comes back. Every membrane entry names its recovered product, not its rejection rate. Sulfuric acid dewatered past the azeotrope, alcohols and ketones pulled out by pervaporation, lactic acid separated electrochemically, a nanofiltration cut-off tunable across an order of magnitude. Treatment and process recovery are the same equipment, sold to the same operator for two reasons.
Industrial wastewater treatment covers what a plant does with the water it has already used. It spans membranes and separation processes that pull a solvent or an acid back out, photocatalysis and advanced oxidation driven by sunlight or plasma, nutrient recovery that turns nitrogen and phosphorus into a product, adsorbents and reactive media, biological treatment including algae grown on the stream, and recovery of the water itself.
Five examples of industrial wastewater treatment solutions on Halo include:
The most recently updated industrial wastewater treatment solutions on Halo include:
There are 823 organizations with industrial wastewater treatment solutions on Halo, 163 of them universities and research institutions. Among them are NALA Membranes, Ardent Technologies / Syensqo, and University at Buffalo, State University of New York. Most offer sponsored research or co-development. Sign up to see every organization working in the area and to send them your specific need.
Browsing industrial wastewater treatment solutions on Halo is free. Sign up to search the full network and save the ones you want. Post your specific need to get exact matches. Organizations reply directly on the platform.
Over the past 12 months, R&D teams on Halo have posted these industrial wastewater treatment solutions needs:
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