AX
Michigan State University
A solar-powered carbon matrix using the natural flow to drive the reaction.
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Remediation technologies covers cleaning up water that has already been contaminated, usually where it sits. On Halo, the solutions cover selenium reduced electrochemically, selenium treated in place, nutrients out of urban stormwater, and adsorbents for metals and organics. Sign up to search the full network and post your specific need.
AX
Michigan State University
A solar-powered carbon matrix using the natural flow to drive the reaction.
University of British Columbia
Modular pillared electrodes reducing selenate inside the plume itself.
University of Alabama
A bioelectrochemical barrier that reduces selenate and holds arsenic in place.
Rowan University
Microbial and electrochemical processes together, recovering elemental selenium.
SZ
Michigan State University
Electrochemical removal aimed at the oxyanions power and mining release.
Atenra IP Holdings
Biodegradable carbon sources that cut selenium and leave arsenic immobile.
BK
University of Maryland
Permeable reactive barriers filled with biosolids, at low cost.
University of Nottingham
Zero-valent iron with biostimulation, injected to speed natural attenuation.
Magnetite generated in place by oxidizing Fe(II) with nitrate, not by reduction.
Imperial College London
Pseudomonas putida reducing selenium oxyanions, with nanoparticle recovery.
Porous geopolymers with graphene oxide and hydroxyapatite, for arsenic too.

University of Delaware
Wood biochar in bioretention media, past 60% nitrogen removal.
University of Houston, Downtown
Chitosan beads made from waste shellfish, reusable and fully biodegradable.
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Universities, startups, and suppliers with solutions in remediation technologies.
Remediation organizationsResearchers and inventors advancing remediation technologies.
Remediation expertsTwo contaminants account for most of the work on Halo. Eleven entries treat selenium in groundwater, half of them electrochemically and half in place with iron, magnetite or bacteria. Thirteen more pull nitrogen and phosphorus out of urban stormwater, almost all of them through a filter medium. On Halo it spans five groups, including selenium reduced electrochemically, selenium treated in place, and nutrients out of urban stormwater.
Stage of development. Work on remediation technologies on Halo comes mostly from university programs. 31% of the solutions are in market. Rowan University and Imperial College London have the most, followed by International Centre for Clean Water. Sponsored research and co-development are the usual partnering routes, and about 58% of the solutions that state terms offer licensing.
Eleven answers to selenium. Five reduce it electrochemically and six treat it in place, with zero-valent iron, magnetite generated by oxidizing Fe(II), permeable barriers of biosolids, or Pseudomonas putida. Four of them name the same secondary constraint: do not mobilize arsenic while you are doing it. The cluster looks like one mining request answered by eleven groups.
Stormwater is a media selection problem. Thirteen entries remove nitrogen and phosphorus from urban runoff, and almost every one is a filter medium, not a process: biochar in several forms, zeolite with zero-valent iron, aluminum treatment residuals, magnesium oxide pellets, activated carbon coated with iron and manganese oxides, and microbial soil crusts. Two put the media under permeable paving.
Waste as the sorbent. Several entries are made from something discarded. Chitosan beads from waste shellfish, filter granules from aluminum water treatment residuals, biochar from bioresiduals, titania templated on red seaweed carrageenan with no solvent. Remediation media are bought by the tonne and buried, so the feedstock cost decides whether any of it gets used.
Remediation technologies covers cleaning up water that has already been contaminated, usually where it sits. It spans electrochemical and in-situ treatment of selenium in groundwater, media and engineered systems that pull nitrogen and phosphorus out of urban stormwater, adsorbents for metals and organic compounds, and photocatalysts that break a pollutant down under sunlight. Mining operators, municipalities and environmental engineers are the buyers.
Five examples of remediation technologies on Halo include:
The most recently updated remediation technologies on Halo include:
There are 301 organizations with remediation technologies on Halo, 85 of them universities and research institutions. Among them are Michigan State University, University of British Columbia, and University of Alabama. 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 remediation technologies 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 remediation technologies needs:
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