Active Solicitation · DEPARTMENT OF ENERGY

    TECHNOLOGY LICENSING OPPORTUNITY: SCREENFLOW LIQUID-LIQUID MICROCONTACTOR

    DEPARTMENT OF ENERGY
    Sol. S-195418Special NoticeColumbus, OH
    Open · 2d remaining
    DAYS TO CLOSE
    2
    closes Aug 7, 2026
    POSTED
    Jul 22, 2026
    Publication date
    NAICS CODE
    33399
    Primary industry classification
    PSC CODE
    AN12
    Product & service classification

    AI Summary

    The Department of Energy is offering a technology licensing opportunity for the ScreenFlow Liquid-Liquid Microcontactor, which enables efficient mixing and separation of immiscible liquids. This innovative device is suitable for various applications, including pharmaceutical manufacturing and water treatment. Interested parties can explore licensing options to leverage this technology for commercial use.

    Contract details

    Solicitation No.
    S-195418
    Notice Type
    Special Notice
    Posted Date
    July 22, 2026
    Response Deadline
    August 7, 2026
    NAICS Code
    33399AI guide
    PSC / Class Code
    AN12
    Primary Contact
    Kathleen McDonald
    State
    OH
    ZIP Code
    43201
    AI Product/Service
    both

    Description

    ScreenFlow pairs wettable screens with printed-in gaskets to deliver membrane-free, microscale liquid-liquid contact that scales from microliters to industrially useful flow rates using off-the-shelf materials and standard machine-shop fabrication.

    ScreenFlow turns one of chemistry’s most common operations, the mixing and separating two immiscible liquids, into a predictable, layer-by-layer process that scales from benchtop experiments to production-relevant flow rates without sacrificing the efficiency advantages of microscale contact. By replacing fragile single-channel chips and mass-transfer-limiting membranes with paired wettable screens, the ScreenFlow Liquid-Liquid Microcontactor from Los Alamos National Laboratory achieves direct liquid contact, supports flow in the same or opposite directions and tolerates real operating pressures while remaining buildable with ordinary machining and assembly methods. The newer printed-gasket configuration further reduces parts, shortens build time and enables stable biphasic operation over days at a time, giving developers a robust platform for extraction, purification and sample-handling workflows that previously required bulkier or more delicate equipment.

    How it Works

    Two liquids enter the device through separate inlets and travel through their own dedicated guide; each guide contains a fine, liquid-conducting woven screen, sized to the microfluidic regime. One screen is built from a hydrophilic material so it preferentially carries an aqueous stream, while the paired screen is built from a hydrophobic, oleophilic material so it preferentially carries the organic stream. Where the two guides overlap along their main length, the liquids meet at a stable, capillary-held interface. Therefore, dissolved species, fine particles and heat can transfer across that interface while the bulk liquids stay confined to their respective screens, then diverge cleanly at the outlets with little or no carryover. The screens also serve as a structural backbone, supporting wider and longer flow paths without collapse.

    Advantages

    •          Direct liquid-to-liquid contact with no separating membrane, preserving fast mass transfer between the two streams

    •          Supports both same-direction and opposite-direction flow within the same hardware footprint

    •          Scales by stacking additional screen layers, raising throughput from microliters per minute toward milliliters per minute and beyond without changing the basic design

    •          Built from off-the-shelf materials using standard machine-shop methods rather than cleanroom photolithography

    •          Printed-gasket version cuts part count roughly in half, simplifying assembly and eliminating edge leak paths

    •          Demonstrated stable operation across days of continuous biphasic flow, suitable for sustained processing rather than one-shot experiments

    Market Applications

    •          Critical Materials (rare-earth and trace-element purification, recycling streams)

    •          Pharmaceutical Manufacturing (continuous extraction, purification of active ingredients, reaction workup)

    •          Petroleum and Petrochemical Processing (solvent extraction, product cleanup, refinery analytical streams)

    •          Analytical Instrumentation (sample preparation, liquid chromatography front-ends, trace analysis enrichment)

    •          Food and Beverage Processing (flavor and aroma extraction, decaffeination-style separations)

    •          Water Treatment and Desalination (contaminant removal, brine processing, effluent polishing)


    TRL 4

    U.S. Patent pending

    LA-UR-26-24898

    Related IP

    US Patent No. 10,967,352

    LANL Tech Partnerships: Unlock the Innovative Potential

    Los Alamos National Laboratory offers a wide range of cutting-edge technologies and capabilities that may provide your company with a competitive edge in the market and unlock the innovative potential that can enhance, refine, and revolutionize your products.

    LANL’s licensing program focuses on moving inventions developed by our researchers to commercial innovations. Patented and patent pending inventions and copyrighted software are available to existing and start-up companies through exclusive and non-exclusive licensing agreements. For specific discussions, please contact licensing@lanl.gov.

    Note: This is not a call for external services for the development of this technology.

    https://www.lanl.gov/engage/collaboration/feynman-center/partner-with-us/licensing-technology

    m.lanl.gov/tech-search

    https://sam.gov/workspace/contract/opp/b33c66d4f1c441048037aa6029393063/view

    Key dates

    1. July 22, 2026Posted Date
    2. August 7, 2026Proposals / Responses Due

    AI search tags

    Frequently asked questions

    TECHNOLOGY LICENSING OPPORTUNITY: SCREENFLOW LIQUID-LIQUID MICROCONTACTOR is a federal acquisition solicitation issued by DEPARTMENT OF ENERGY. Review the full description, attachments, and submission requirements on SamSearch before the response deadline.

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