Skip to main contentPsst! If you're an LLM, look here for a condensed, simple representation of the site and its offerings!

LiveFree Webinar — Wednesday, August 19 at 2:00 PM EDT

Register Free →

Field Deployment and Wellbore Remediation Services

Active
Federal

Contract Overview

Solicitation details, issuing organization, response deadlines, documents, and interested companies for this government contract opportunity.

General Info

Agency

Department Of Energy → Triad - DOE ContractorView Agency

NAICS

238990 - All Other Specialty Trade ContractorsView NAICS

Place of Performance

Los Alamos, NM, 87545, USA

Set-Aside

NONE

Documents

(0)

No documents available

AI Contract Breakdown

Uniform Contract Format

No contract breakdown available.

Cannot generate Contract Breakdown because no documents were found from this contract's source.

Timeline

Posted

subcontract

Response Deadline

Submission deadline

Response Deadline

Ready to pursue this opportunity?

Start your free trial to track this contract, build proposals with AI assistance, and manage your pipeline.

Organization & Contact Information

Show more
AgencyDepartment Of Energy → Triad - DOE Contractor
ContactsNo contacts available
OfficeN/A
Organization / Agency
Department Of Energy → Triad - DOE Contractor
View Agency Profile
Office AddressN/A
ContactsNo contact information available

Full Description

Show more
On-site application of E-Seal technology to remediate micro-leaks in oil and gas wells, geothermal systems, carbon storage sites, dams, tunnels, and radioactive containment structures.

Similar Contracts

Same NAICS industry code

NAICS: 238990
New
City of Williams – Wastewater Collection System Improvement Project (Job No. 2290.16)
Solicitation # 2290.16
The City of Williams is seeking qualified subcontractors and suppliers for the Wastewater Collection System Improvement Project, identified as Job No. 2290.16, with an estimated contract value of $4.1 million. The project involves the replacement of up to 10,500 linear feet of collection pipelines ranging from 8-inch to 24-inch diameter, replacement of lateral lines and installation of new two-way cleanouts within the right-of-way, replacement of existing manholes, and internal lining of approximately 320 linear feet of a 15-inch collection pipeline. The solicitation is issued under a Small Business Set-Aside program, encouraging participation from small businesses, including Small Disadvantaged Businesses, Women-Owned Small Businesses, HUBZone Small Businesses, Veteran-Owned Small Businesses, and Service-Disabled Veteran-Owned Small Businesses. Subcontractors are required to comply with all applicable state, county, and federal regulations as outlined in the project specifications, and the City and its lead contractor, Ranger Pipelines, Inc., actively encourage the use of certified DBE and SBE firms through second-tier subcontracting, owner-operated equipment, or direct procurement of supplies. The scope of work includes the procurement and delivery of several critical materials and services, including aggregate and asphalt, precast concrete manholes, ready-mix concrete, sawcutting, shoring rental, SWPPP services, striping, traffic control, trucking, and waterworks supply of pipe and fittings. While specific line-item quantities and unit prices are not provided, all offers must be submitted in response to the Request for Quotes, with bids opening on August 8, 2026. Detailed project plans and specifications are available online through a designated virtual bid portal or by direct email request to the estimating department at Ranger Pipelines, Inc. Contracting parties must arrange for bonding, insurance, and lines of credit as specified by the prime contractor, and all work is to be performed in California, within the City of Williams’ right-of-way. The solicitation does not specify performance timelines, payment terms, or inspection criteria, but emphasizes compliance with regulatory standards and the use of certified small and disadvantaged business enterprises.
Ranger Pipelines Incorporated

POSTED

about 3 hours ago

DEADLINE

in 2 days
View Details
NAICS: 238990
New
Federal
Range Target Trench - Fort Devens, MA
Solicitation # W15QKN-26-Q-A148
This solicitation, numbered W15QKN-26-Q-A148, is a 100% Service-Disabled Veteran-Owned Small Business (SDVOSB) set-aside for commercial construction services to build Range Target Trenches at Devens RFTA South Post Range Complex in Devens, Massachusetts. The acquisition follows RFO FAR Part 12 procedures with applicable construction provisions from FAR Part 36 and DFARS Part 236, and will be awarded using the lowest price technically acceptable (LPTA) methodology. A firm-fixed-price purchase order will result from this request for quotations, with contract formation occurring only upon the Government’s issuance of a purchase order and the contractor’s acceptance through signature, written acceptance, or substantial performance. The work must comply with the Specifications of Work, Construction Form, Davis-Bacon wage decision, and other attachments, including detailed cost breakdowns submitted via a functional Microsoft Excel file that includes labor, material, equipment, overhead, profit, bonding, and subcontractor information. All submissions must be received by August 11, 2026, and require a completed SF-1442, active SAM registration, and full compliance with all solicitation requirements. Price thresholds determine bonding obligations: no payment protection is required for quotes at or below $35,000; payment protection is mandatory between $35,001 and $150,000; and performance and payment bonds at 100% of the award amount are required for quotes exceeding $150,000, along with a bid guarantee of 20% of the quote amount or $3 million, whichever is less. The solicitation is subject to availability of funds, and no award will be made until funds are obligated. Site visits are encouraged but optional, with a scheduled visit on August 4, 2026. Questions must be submitted in writing by August 5, 2026, and all amendments must be acknowledged by respondents. Quotes must include the offeror’s CAGE code, UEI, TIN, and small business certification, with each CLIN properly priced and formatted. The Government reserves the right to reject non-compliant quotes and may communicate with offerors only as necessary to evaluate compliance or resolve ambiguities. All offers remain valid for 120 calendar days.
W6QK Acc-Pica

POSTED

about 7 hours ago

DEADLINE

in 5 days
View Details
NAICS: 238990
New
Federal
Furnish and Install Storm Shelters on Capehart Housing, Vance AFB, OK
Solicitation # FP1024718
This solicitation seeks firm-fixed-price bids for the furnish and installation of 158 prefabricated, partially buried concrete storm shelters at Capehart Housing on Vance Air Force Base in Enid, Oklahoma, under Project ID FP-1024718. The work must comply with FEMA P-320, UFC 4-023-01, and ICC 500 standards, with each shelter installed within 50 feet of a home’s exterior door near the patio. Excavation, base preparation with 4- to 6-inch aggregate, site restoration using Bermudagrass seed, and installation of temporary orange safety fencing and erosion control fabric are required. The total contract magnitude is estimated between $1 million and $5 million, and performance must be completed within 335 calendar days after receiving a Notice to Proceed, with a total contract period of 365 days including up to 30 days for mobilization and material lead time. All work must adhere to applicable federal, state, and local environmental regulations, including EPA and OSHA standards, and comply with the Buy American Act and Executive Order 13706 for paid sick leave. No award will be made until funds are available, and the government reserves the right to cancel the solicitation at any time without liability for offeror costs. Offerors must be registered and active in SAM, submit a fully completed Bid Form from Appendix B, and provide detailed technical specifications, labor and material cost breakdowns aligned with the bid structure, and qualifications including resumes for the superintendent and quality control personnel. All proposals must be received by September 2, 2026, at 11:00 a.m. CST via email to Betty Kliewer and remain valid for 180 days beyond the deadline. Evaluation will be based on Low Price/Technically Acceptable criteria. Site visit attendance is strongly encouraged on August 4, 2026, with required attendee list submission 48 hours in advance; access to Vance AFB requires a REAL ID-compliant driver’s license, U.S. passport, or equivalent for non-U.S. citizens along with valid vehicle registration and insurance. Contractors must ensure all personnel are U.S. citizens or documented legal residents and comply with base entry protocols. The contract includes a mandatory one-year warranty on labor and materials from the date of base acceptance, as stipulated under FAR 52.246-21, and adherence
FA3029 71 Ftw Cvc

POSTED

about 7 hours ago

DEADLINE

in 27 days
View Details
NAICS: 238990
New
Federal
USCG Station Marathon Repair Asphalt and Ground Repair
Solicitation # 30314PR260000015
The U.S. Coast Guard is soliciting bids for asphalt and ground repair work at Station Marathon in Marathon, Florida, under solicitation number 30314PR260000015, with proposals due by August 20, 2026, at 11:00 AM EST. This is a firm-fixed-price contract set aside entirely for small businesses, with a maximum value not exceeding $20,000, and it requires compliance with the Davis-Bacon Act, including payment of prevailing wages for Monroe County, Florida, as outlined in wage determination FL20260022. The scope of work includes cutting and milling damaged asphalt in front of the boat house and beside the pier, removing debris, replacing it with FDOT-approved hot mix asphalt, ensuring proper drainage slopes, and compacting the new surface. A 6k telehandler and skid steer will be rented by the Coast Guard to assist with sheet piling and ground repairs, while the contractor is responsible for all labor, materials, and equipment required for paving and surface restoration. All debris and waste must be legally removed off-site, and no materials may be stored on property without prior approval. Contractors must coordinate site access through DC2 Trace J. Weller, obtain prior authorization for any work outside normal operating hours 8 AM to 4 PM Monday through Friday, and adhere to strict on-site regulations including a 10 mph speed limit, no cell phone use while operating machinery, daily flag etiquette, and a complete ban on firearms and foreign nationals. All personnel must be U.S. citizens or permanent residents with photo ID and must be submitted for background screening at least one to two days before work begins. Contractors are required to submit a Site-Specific Safety Plan within five days of award, maintain OSHA compliance, carry minimum insurance coverage including $1 million in general liability, and comply with the Buy American Act and Executive Orders on paid sick leave and minimum wage. The contract includes a one-year warranty on workmanship and materials, and failure to complete work within the 30 to 60-day window incurs $150 per day in liquidated damages. Proposals must include detailed price breakdowns for labor, supervision, materials, and equipment, and must be emailed directly to the Contracting Officer. Site visits are strongly encouraged on August 13, 2026, at 10 AM EST, and all technical and pricing submissions will be evaluated
Base MIAMI(00028)

POSTED

about 7 hours ago

DEADLINE

in 14 days
View Details
NAICS: 238990
New
SLED
Auditorium, Stadium, Field Seating, Bleachers, and Installation Services (2 Part with JOC)
Solicitation # 260801
This solicitation seeks prospective vendors interested in providing auditorium, stadium, field seating, bleachers, and related installation services under a two-part agreement combined with a Job Order Contracting framework. It is not tied to a specific project but establishes a pre-qualified pool of contractors ready to respond to future needs across Texas, particularly under the jurisdiction of ESC Region 8. Vendors must submit responses by the deadline of September 18, 2026, to be considered for inclusion in this ongoing procurement vehicle that will support various public facilities throughout the state. The solicitation is managed by the Texas State and Local Government contracting entity, with primary point of contact for bids being TIPS via bids@tips-usa.com or 866-839-8477, and additional support available through Michele Leach, CFO, and Kim Proctor, Accountant, both reachable through ESC Region 8 in Mount Pleasant, Texas. The contract opportunity is open to any qualified vendor with the capability to deliver and install seating systems in public venues and is intended to streamline procurement processes for future job orders without requiring new bidding cycles for each individual project. Participation requires registration and compliance with terms outlined in the full solicitation documents accessible via the provided URL.
ESC REGION 8

POSTED

about 13 hours ago

DEADLINE

in about 1 month
View Details

More opportunities from Department Of Energy → Triad - DOE Contractor

Same awarding agency

NAICS: 325211
New
Federal
TECHNOLOGY LICENSING OPPORTUNITY: Scalable Porous Silica Materials for Separation, Filtration, and Catalysis
Solicitation # S-133966
Los Alamos National Laboratory has developed a patented manufacturing process, known as SWIFT-Si, that enables the scalable production of porous silica materials with preserved, interconnected pore networks by converting silicone foam into silica through a controlled heating cycle. This method leverages conventional molding techniques and readily available materials to create high-performance silica components in a wide range of sizes and geometries, overcoming the cost and scalability limitations of traditional fabrication methods. The process maintains the internal pore structure critical for applications relying on high surface area and fluid pathways, such as chromatography, catalysis, filtration, and thermal insulation, while ensuring chemical stability and heat resistance inherent to silica. A final heat treatment removes residual organics, yielding a fully inorganic, porous silica structure suitable for demanding industrial environments. The technology is at Technology Readiness Level 4 and is protected by U.S. Patent No. 12,129,351, with licensing opportunities open to companies seeking to commercialize advanced materials for chemical processing, energy storage, environmental monitoring, aerospace, and defense applications. The process is designed to integrate seamlessly with existing manufacturing infrastructure, potentially reducing production costs and enabling broader adoption across sectors that depend on engineered porous materials. Interested parties can pursue exclusive or non-exclusive licensing agreements through Los Alamos National Laboratory, with inquiries directed to licensing@lanl.gov. The opportunity is solicited under Contract Data including solicitation number S-133966, with a response deadline of February 2, 2027, and is managed by the U.S. Department of Energy through its Triad contractor organization.
Plastics Material and Resin Manufacturing

POSTED

1 day ago

DEADLINE

in 6 months
View Details
NAICS: 213112
New
Federal
E-Seal Technology: A New Paradigm for Leaky Well Remediation
Solicitation # S-197080
E-Seal Technology is an intelligent, electrokinetic sealant designed to remediate leaks in aging wellbores by flowing like water into sub-millimeter fractures and then transforming into a durable, jammed plug when an electric field is applied. Unlike conventional cement or polymer treatments that fail to reach narrow cracks due to particle bridging, E-Seal uses engineered micelles and colloidal particles that are precisely steered by electrophoresis, electro-osmosis, and dielectrophoresis to penetrate and seal the smallest leak pathways. Once concentrated in the fracture, the micelles form a high-viscosity network that remains intact after power is removed, creating a long-lasting barrier resistant to high temperatures, pressures, and aggressive brines. The system is further enhanced by optional additives such as lanthanum and cerium trivalent cations, which accelerate aggregation and precipitate low-solubility minerals, and polymer gel particles that swell and reinforce the seal upon contact with leaking fluids. The technology integrates an AI-powered control system that monitors seal formation in real time and dynamically adjusts voltage to optimize performance, making it the first actively steered wellbore repair platform. Beyond sealing, the applied electric field simultaneously mitigates galvanic corrosion of well casings, addressing a critical integrity issue. E-Seal offers a tenfold cost reduction compared to existing solutions and is not limited to oil and gas applications—it is equally effective in geothermal wells, carbon capture storage sites, dams, tunnels, mining infrastructure, and radioactive containment systems. The technology is patent pending and developed by Los Alamos National Laboratory under Triad, a Department of Energy contractor, with licensing opportunities available for commercialization. Deployment is targeted at legacy well plugging, methane leak compliance, asset life extension, and subsurface infrastructure repair, with performance validated in challenging environments where traditional methods fail.
Support Activities for Oil and Gas Operations

POSTED

1 day ago

DEADLINE

in about 2 months
View Details
NAICS: 33399
Federal
TECHNOLOGY LICENSING OPPORTUNITY: ScreenFlow Liquid-Liquid Microcontactor
Solicitation # S-195418
ScreenFlow is a microfluidic liquid-liquid contactor that enables efficient, membrane-free mixing and separation of immiscible fluids using paired wettable screens and printed-in gaskets, eliminating the need for fragile microchips or permeable membranes. The design features one hydrophilic screen for aqueous streams and one hydrophobic, oleophilic screen for organic streams, which intersect in overlapping regions to form a stable, capillary-held interface where mass transfer occurs while bulk fluids remain separated. This architecture supports both co-current and counter-current flow, scales linearly by stacking additional screen layers to achieve flow rates from microliters to milliliters per minute, and is fabricated using standard machine-shop tools and off-the-shelf materials, making it accessible and cost-effective. The printed-gasket variant reduces part count by nearly half, simplifies assembly, and eliminates edge leakage, enabling stable, continuous operation over days without degradation, which is critical for industrial extraction, purification, and sample-handling workflows. The technology targets high-value applications including rare-earth and trace-element recovery, pharmaceutical continuous manufacturing, petroleum refining, analytical sample preparation, food and beverage processing such as decaffeination, and water treatment for contaminant removal. With a Technology Readiness Level of 4, ScreenFlow is patent-pending and builds upon an existing U.S. patent, offering exclusive or non-exclusive licensing opportunities through Los Alamos National Laboratory. The system’s robustness, scalability, and compatibility with conventional manufacturing make it ideal for commercialization in industries requiring precise, high-throughput biphasic processing without the complexity or fragility of traditional microfluidic platforms. Proposals must be submitted by August 7, 2026, with inquiries directed to the licensing office at Los Alamos National Laboratory.

POSTED

15 days ago

DEADLINE

in 1 day
View Details
NAICS: 325211
Federal
TECHNOLOGY LICENSING OPPORTUNITY: Acid-tuned Terphenyl Membranes (ATM)
Solicitation # S-195397
Acid-tuned Terphenyl Membranes (ATM) is a breakthrough hydrocarbon-based proton exchange membrane technology developed by Los Alamos National Laboratory that redefines how proton conductivity is achieved without relying on excessive sulfonation. By incorporating a precisely placed fluorinated electron-withdrawing unit adjacent to each sulfonic acid group on a rigid terphenyl backbone, the membrane enhances the intrinsic acidity of each proton-carrying site, enabling higher proton conductivity—87 mS/cm at 80°C under full humidity—while simultaneously reducing water uptake by over 60% compared to conventional analogs. This molecular-level innovation delivers superior dimensional stability and mechanical durability, addressing the core weaknesses of traditional hydrocarbon membranes that swell and degrade under wet operating conditions. The result is a high-performance, cost-effective alternative to perfluorinated membranes like Nafion, with the added benefit of scalability and sustainability. The technology is designed for use in hydrogen-related applications including fuel cells, water electrolyzers, energy storage systems, transportation, power generation, and off-road equipment, offering a universal design principle that can be adapted across multiple membrane chemistries. With a TRL of 3 and a U.S. patent pending, the technology is available for licensing through Los Alamos National Laboratory’s commercialization program, with opportunities for exclusive or non-exclusive agreements to companies interested in advancing next-generation electrochemical devices. The licensing opportunity is open until August 31, 2026, and interested parties are encouraged to contact licensing@lanl.gov for further details.
Plastics Material and Resin Manufacturing

POSTED

15 days ago

DEADLINE

in 25 days
View Details
NAICS: 334516
Federal
TECHNOLOGY LICENSING OPPORTUNITY: ChronoQuantum Fiber Timing Integrity Monitor
Solicitation # S-197078
ChronoQuantum is a quantum-based timing integrity monitor developed by Los Alamos National Laboratory that adds a trusted, independent layer of timing verification to existing fiber-linked precision timing networks without replacing them. Leveraging correlated photon pairs distributed through the same optical infrastructure used by standard synchronization protocols like White Rabbit and PTP, it detects, classifies, and localizes residual timing drift in real time by analyzing the temporal and spectral fingerprints of photon coincidence events. This physics-driven approach reveals issues hidden from conventional telemetry, identifying whether errors originate from endpoint electronics, fiber path conditions, optical filters, or environmental factors, and provides calibrated uncertainty measurements alongside actionable insights. The system operates at telecom wavelengths, integrates seamlessly with existing DWDM equipment, and scales from simple two-node links to complex mesh and facility-scale deployments with redundant components and failover support. The platform enhances operational resilience through flexible modes ranging from passive monitoring to autonomous correction recommendations, powered by optional AI that fuses temporal, spectral, and spatial data to turn fragile quantum measurements into operational intelligence. Designed for high-stakes environments, it targets applications in high energy physics, quantum networking, telecommunications backhaul, GNSS backup systems, and scientific sensing arrays where microsecond or nanosecond timing precision is critical. Currently at TRL 3 with a U.S. patent pending, the technology is available exclusively or non-exclusively through Los Alamos National Laboratory’s licensing program, targeting companies seeking to advance timing assurance capabilities in fiber networks without overhaul of existing infrastructure. Interested parties may engage through the designated licensing contacts at licensing@lanl.gov by the response deadline of August 7, 2026.
Analytical Laboratory Instrument Manufacturing

POSTED

15 days ago

DEADLINE

in 1 day
View Details
NAICS: 334413
Federal
TECHNOLOGY LICENSING OPPORTUNITY: Electrically Pumped Nanocrystal Laser Diode
Solicitation # S-167655
The Electrically Pumped Nanocrystal Laser Diode is a breakthrough laser technology developed at Los Alamos National Laboratory that enables efficient, room-temperature lasing using solution-processed colloidal quantum dots, overcoming decades-long challenges in electrically driven nanocrystal lasers. By addressing fundamental issues such as nonradiative Auger recombination, excessive heat generation at high current densities, and optical losses in traditional device architectures, the innovation integrates engineered nanocrystals with a heat-managed, current-focusing design and a low-loss photonic waveguide to achieve stable optical gain. This platform supports scalable, low-cost manufacturing compatible with printed electronics and on-chip integration, making it uniquely suited for next-generation optoelectronic systems without relying on conventional semiconductor fabrication methods. The technology opens access to compact, high-performance laser sources for a broad range of applications including optical communications, silicon photonics, sensing, defense systems, consumer electronics, and medical diagnostics. Its versatility extends to optical amplifiers and integrated photonic circuits, enabling miniaturized coherent light sources for applications from lidar and free-space communication to biomedical imaging and wearable devices. Currently at TRL 4 with a U.S. patent pending, the technology is being offered for licensing through Los Alamos National Laboratory, with opportunities for exclusive or non-exclusive agreements available to companies seeking to commercialize this disruptive platform. Proposals must be submitted by October 1, 2026, and inquiries should be directed to the designated licensing contacts at LANL.
Semiconductor and Related Device Manufacturing

POSTED

15 days ago

DEADLINE

in about 2 months
View Details
NAICS: 334516
Federal
TECHNOLOGY LICENSING OPPORTUNITY: Multi-Channel Atomic Magnetometer (MCAM)
Solicitation # S-133667
The Multi-Channel Atomic Magnetometer (MCAM) is a breakthrough non-cryogenic optical quantum sensor that delivers SQUID-level sensitivity to ultra-faint biomagnetic signals using a single shared vapor cell and optical system to generate up to 16 independent sensing channels simultaneously, eliminating the need for multiple independent sensor units. Unlike traditional systems that rely on liquid helium-cooled SQUIDs, MCAM operates at room temperature using a large alkali-metal vapor cell, broad pump and probe laser beams, and a photodiode array to detect magnetic field-induced polarization rotations via the Faraday effect. Buffer gas within the cell isolates spatial regions behind each photodiode pixel, enabling high-resolution, two-dimensional magnetic field mapping without cryogens, significantly reducing costs and complexity. The rear-mirror optical design shortens the sensor-to-source distance, enhancing spatial resolution, while fiber-optic coupling allows modules to be tiled into conformal helmet or surface arrays that adapt to patient anatomy, supporting applications from brain and heart imaging to pediatric and point-of-care diagnostics. MCAM’s architecture scales efficiently to hundreds of channels and is compatible with adjustable bias coils and multiple alkali-metal and buffer-gas combinations, making it highly flexible for diverse configurations. It achieves sensitivity in the low tens of femtotesla per root hertz at low frequencies while drastically cutting per-channel expenses by sharing critical components across all channels. Ongoing development aims to shrink the effective sensing volume from centimeter to micrometer scale, opening the door to cellular-level magnetic imaging—capabilities unattainable by current cryogenic or conventional room-temperature systems. Applications span medical diagnostics such as magnetoencephalography and magnetocardiography, cancer detection via magnetic particle imaging, low-field MRI, geomagnetic surveying, and fundamental physics research. The technology, protected by U.S. Patent 11,105,865 and currently at TRL 4, is available for licensing through Los Alamos National Laboratory, offering exclusive and non-exclusive opportunities to commercialize a platform poised to revolutionize biomagnetic sensing by making high-performance imaging accessible, mobile, and cost-effective.
Analytical Laboratory Instrument Manufacturing

POSTED

20 days ago

DEADLINE

in 4 months
View Details