{"canonical":"https://abierto.us/opportunities/ba1719","key":"BA1719","url":"https://abierto.us/opportunities/ba1719","title":"Available for Licensing: Fluorescent Tracer Technology for Hydrofluoric Acid Exposure Detection","solicitation_number":"BA-1719","notice_type":"s","open":false,"removed":false,"removed_at":null,"response_deadline":"2026-10-30T14:00:00Z","first_posted":"2026-07-29","last_posted":"2026-09-23","department":"ENERGY, DEPARTMENT OF","subagency":"ENERGY, DEPARTMENT OF","office":"BATTELLE ENERGY ALLIANCE–DOE CNTR","naics":"325180","psc":"H268","set_aside":null,"place_state":"ID","place_county":"16019","place_county_name":"Bonneville County","place_city":"1639700","place_city_name":"Idaho Falls","winner":null,"award_amount":null,"publications":[{"notice_id":"1d00bd83b28d449faa1c5c34151a6034","title":"Available for Licensing: Fluorescent Tracer Technology for Hydrofluoric Acid Exposure Detection","solicitation_number":"BA-1719","notice_type":"s","base_type":"s","posted":"2026-07-29","posted_at":null,"due_at":"2026-08-30T14:00:00Z","due_date":"2026-08-30","cancelled":null,"archived":null,"archive_date":"2026-09-14","removed_at":null,"award_number":null,"awardee_name":null,"amount":null,"link_sam":"https://sam.gov/workspace/contract/opp/1d00bd83b28d449faa1c5c34151a6034/view","enriched":false,"history":[]},{"notice_id":"bb41669697ef46d393933e72a708f59d","title":"Available for Licensing: Fluorescent Tracer Technology for Hydrofluoric Acid Exposure Detection","solicitation_number":"BA-1719","notice_type":"s","base_type":"s","posted":"2026-09-23","posted_at":"2026-09-23T17:48:15.193Z","due_at":"2026-10-30T14:00:00Z","due_date":"2026-10-30","cancelled":false,"archived":false,"archive_date":"2026-11-14","removed_at":null,"award_number":null,"awardee_name":null,"amount":null,"link_sam":"https://sam.gov/workspace/contract/opp/bb41669697ef46d393933e72a708f59d/view","enriched":true,"history":[{"index":7,"title":"Available for Licensing: Fluorescent Tracer Technology for Hydrofluoric Acid Exposure Detection","action":"publish","latest":true,"deleted":false,"archived":false,"cancelled":false,"posted_at":"2026-09-23T17:48:15.193Z","notice_type":{"code":"s","label":"Special Notice"},"request_type":"submit","opportunity_id":"bb41669697ef46d393933e72a708f59d","solicitation_number":"BA-1719","parent_opportunity_id":"32907b9834a04ed18806bcb98f079abf"},{"index":6,"title":"Available for Licensing: Fluorescent Tracer Technology for Hydrofluoric Acid Exposure Detection","action":"publish","latest":false,"deleted":false,"archived":false,"cancelled":false,"posted_at":"2026-07-29T16:52:44.530Z","notice_type":{"code":"s","label":"Special Notice"},"request_type":"submit","opportunity_id":"1d00bd83b28d449faa1c5c34151a6034","solicitation_number":"BA-1719","parent_opportunity_id":"32907b9834a04ed18806bcb98f079abf"},{"index":3,"title":"Available for Licensing: Fluorescent Tracer Technology for Hydrofluoric Acid Exposure Detection","action":"publish","latest":false,"deleted":false,"archived":false,"cancelled":false,"posted_at":"2026-05-22T18:52:06.996Z","notice_type":{"code":"s","label":"Special Notice"},"request_type":"submit","opportunity_id":"32907b9834a04ed18806bcb98f079abf","solicitation_number":"BA-1719"}]}],"latest_notice_id":"bb41669697ef46d393933e72a708f59d","first_type":"s","notices":[{"dates":{"posted":"2026-07-29","response_deadline":{"raw":"2026-08-30T08:00:00-06:00","utc":"2026-08-30T14:00:00Z","date":"2026-08-30","time":"08:00:00","utc_offset_seconds":-21600}},"links":{"sam":"https://sam.gov/workspace/contract/opp/1d00bd83b28d449faa1c5c34151a6034/view"},"naics":{"codes":["325180"],"primary":"325180"},"title":"Available for Licensing: Fluorescent Tracer Technology for Hydrofluoric Acid Exposure Detection","agency":{"office":{"code":"899050","name":"BATTELLE ENERGY ALLIANCE–DOE CNTR"},"subtier":{"code":"8900","name":"ENERGY, DEPARTMENT OF"},"department":{"code":"089","name":"ENERGY, DEPARTMENT OF"},"office_address":{"zip":"83415","city":"Idaho Falls","state":"ID","country":"USA"},"organization_type":"OFFICE"},"status":{"active":true,"archive_date":"2026-09-14","archive_type":"auto15"},"contacts":[{"name":"Javier Martinez","role":"primary","email":"javier.martinez@inl.gov"}],"base_type":{"code":"s","label":"Special Notice"},"notice_id":"1d00bd83b28d449faa1c5c34151a6034","provenance":{"extract":{"url":"https://s3.amazonaws.com/falextracts/Contract%20Opportunities/datagov/ContractOpportunitiesFullCSV.csv","etag":"\"95a38dcc808142de51137f8402e52049-29\"","fetched_at":"2026-09-24T04:21:46.782462570Z","row_sha256":"3e2b3faa1578d7f10e02deb205c742cc2df3c0bcbda9c2b572b0a5705079125b","last_modified":"2026-09-24T03:30:47Z"},"updated_at":"2026-09-24T04:21:46.782462570Z","first_seen_at":"2026-09-24T04:21:46.782462570Z"},"description":{"text":"Technology Licensing Opportunity: This technology is available for licensing through Idaho National Laboratory's (INL) Technology Deployment office. INL is not seeking to procure products or services in connection with this technology, and no procurement activity is associated with INL's technology transfer process. Interested parties are invited to contact INL to discuss licensing terms and partnership opportunities. Overview Hydrofluoric acid (HF) is used across petroleum refining, semiconductor manufacturing, glass processing, pharmaceutical synthesis, mineral processing, and laboratory research, among others. Despite established handling protocols, accidental skin or surface contact remains a persistent hazard — compounded by HF's unusual toxicological profile: at low concentrations, early-stage contact produces no pain, burning, or visible irritation, while damage to subcutaneous tissue and bone progresses silently before symptoms appear. This technology introduces a UV-fluorescent tracer additive created froma xanthene powder.. The additive is designed to remain chemically inert while enabling workers to survey skin, clothing, or surfaces using a UV light source after handling. Fluorescence indicates contact, supporting immediate decontamination and first aid before acid penetrates tissue. The approach is intended as a complementary detection layer alongside existing personal protective equipment and engineering controls. Industry Need Current HF safety practice relies on prevention: chemical-resistant PPE, engineered containment, and procedural controls. These measures reduce exposure frequency but do not eliminate the risk of accidental contact, particularly in production environments or during equipment maintenance. No field-deployable method currently exists for workers to confirm the absence of skin or surface contact after an HF-handling task. The standard indicator of exposure is symptom onset, which may occur hours after contact, after significant physiological damage has already occurred. This detection gap represents a structural limitation in current HF safety frameworks across all affected industries. Differentiation and Advantages Post-task detection capability: Designed to enable active worker self-survey after HF handling, a capability not provided by current commercial safety approaches. Chemically inert tracer formulation: Xanthene dye has documented chemical stability in HF environments and is not expected to alter acid reactivity, concentration, or intended function. Early-window treatment support: Detection prior to symptom onset is intended to expand the effective window for decontamination and calcium gluconate application, both of which are more effective when administered early. Leak detection in system processes: Secondarily, this product improves leak detection in industrial processes by creating a high visibility and distinct HF appearance that can reduce detection time and differentiate HF from other clear fluids used in the process. Potential Applications Industrial HF handling operations in petroleum refining, semiconductor etch, glass manufacturing, and pharmaceutical synthesis. Worker post-task self-survey using portable UV light sources following HF-handling tasks. Facility leak and spill detection through UV scanning of work surfaces and equipment exteriors. Laboratory and small-scale research environments where engineering controls may be less robust.","origin":"extract"},"notice_type":{"code":"s","label":"Special Notice"},"schema_version":1,"solicitation_number":"BA-1719","place_of_performance":{"zip":"83401","city":{"name":"Idaho Falls"},"state":{"code":"ID"},"country":{"code":"USA"}},"product_service_code":"H268"},{"dates":{"posted":"2026-09-23","posted_at":"2026-09-23T17:48:15.193Z","created_at":"2026-09-23T17:48:15.193Z","modified_at":"2026-09-23T17:48:15.193Z","response_deadline":{"raw":"2026-10-30T08:00:00-06:00","utc":"2026-10-30T14:00:00Z","date":"2026-10-30","time":"08:00:00","timezone":"America/Denver","utc_offset_seconds":-21600}},"links":{"sam":"https://sam.gov/workspace/contract/opp/bb41669697ef46d393933e72a708f59d/view"},"naics":{"codes":["325180"],"primary":"325180"},"title":"Available for Licensing: Fluorescent Tracer Technology for Hydrofluoric Acid Exposure Detection","agency":{"office":{"code":"899050","name":"BATTELLE ENERGY ALLIANCE–DOE CNTR"},"subtier":{"code":"8900","name":"ENERGY, DEPARTMENT OF"},"department":{"code":"089","name":"ENERGY, DEPARTMENT OF"},"office_address":{"zip":"83415","city":"Idaho Falls","state":"ID","country":"USA"},"organization_id":"500047763","organization_type":"OFFICE"},"status":{"active":true,"latest":true,"deleted":false,"archived":false,"cancelled":false,"publication":"published","archive_date":"2026-11-14","archive_type":"auto15"},"history":[{"index":7,"title":"Available for Licensing: Fluorescent Tracer Technology for Hydrofluoric Acid Exposure Detection","action":"publish","latest":true,"deleted":false,"archived":false,"cancelled":false,"posted_at":"2026-09-23T17:48:15.193Z","notice_type":{"code":"s","label":"Special Notice"},"request_type":"submit","opportunity_id":"bb41669697ef46d393933e72a708f59d","solicitation_number":"BA-1719","parent_opportunity_id":"32907b9834a04ed18806bcb98f079abf"},{"index":6,"title":"Available for Licensing: Fluorescent Tracer Technology for Hydrofluoric Acid Exposure Detection","action":"publish","latest":false,"deleted":false,"archived":false,"cancelled":false,"posted_at":"2026-07-29T16:52:44.530Z","notice_type":{"code":"s","label":"Special Notice"},"request_type":"submit","opportunity_id":"1d00bd83b28d449faa1c5c34151a6034","solicitation_number":"BA-1719","parent_opportunity_id":"32907b9834a04ed18806bcb98f079abf"},{"index":3,"title":"Available for Licensing: Fluorescent Tracer Technology for Hydrofluoric Acid Exposure Detection","action":"publish","latest":false,"deleted":false,"archived":false,"cancelled":false,"posted_at":"2026-05-22T18:52:06.996Z","notice_type":{"code":"s","label":"Special Notice"},"request_type":"submit","opportunity_id":"32907b9834a04ed18806bcb98f079abf","solicitation_number":"BA-1719"}],"contacts":[{"name":"Javier Martinez","role":"primary","email":"javier.martinez@inl.gov"}],"base_type":{"code":"s","label":"Special Notice"},"notice_id":"bb41669697ef46d393933e72a708f59d","lineage_id":"32907b9834a04ed18806bcb98f079abf","provenance":{"detail":{"endpoints":["opportunity","resources","history"],"fetched_at":"2026-09-24T05:40:33.850060646Z"},"extract":{"url":"https://s3.amazonaws.com/falextracts/Contract%20Opportunities/datagov/ContractOpportunitiesFullCSV.csv","etag":"\"95a38dcc808142de51137f8402e52049-29\"","fetched_at":"2026-09-24T04:21:46.782462570Z","row_sha256":"9164a9a4fd5c0a9c7ec3172e620742ad71387c7c5ca6dd4103919f34ccb50829","last_modified":"2026-09-24T03:30:47Z"},"updated_at":"2026-09-24T05:40:33.850060646Z","first_seen_at":"2026-09-24T04:21:46.782462570Z"},"description":{"html":"<p><strong><u>Technology Licensing Opportunity: This technology is available for licensing through Idaho National Laboratory&#39;s (INL) Technology Deployment office. INL is not seeking to procure products or services in connection with this technology, and no procurement activity is associated with INL&#39;s technology transfer process. Interested parties are invited to contact INL to discuss licensing terms and partnership opportunities.</u></strong></p>\n\n<p>Overview&nbsp;</p>\n\n<p>Hydrofluoric acid (HF) is used across petroleum refining, semiconductor manufacturing, glass processing, pharmaceutical synthesis, mineral processing, and laboratory research,&nbsp;among others. Despite established handling protocols, accidental skin or surface contact&nbsp;remains&nbsp;a persistent hazard &mdash; compounded by HF&#39;s unusual toxicological profile:&nbsp;at low concentrations,&nbsp;early-stage contact produces no pain, burning, or visible irritation, while damage to subcutaneous tissue and bone progresses silently before symptoms appear.&nbsp;</p>\n\n<p>This technology introduces a UV-fluorescent tracer additive&nbsp;created froma&nbsp;xanthene&nbsp;powder.. The additive is designed to remain chemically inert while enabling workers to survey skin, clothing, or surfaces using a UV light source after&nbsp;handling. Fluorescence&nbsp;indicates&nbsp;contact, supporting immediate decontamination and first aid before acid penetrates tissue. The approach is intended as a complementary detection layer alongside existing personal protective equipment and engineering controls.&nbsp;</p>\n\n<p>Industry Need&nbsp;</p>\n\n<p>Current HF safety practice relies on prevention: chemical-resistant PPE, engineered containment, and procedural controls. These measures reduce exposure frequency but do not&nbsp;eliminate&nbsp;the risk of accidental contact, particularly in production environments or during equipment maintenance. No field-deployable method currently exists for workers to confirm the absence of skin or surface contact after an HF-handling task. The standard indicator of exposure is symptom onset,&nbsp;which may occur hours after contact, after significant physiological damage has already occurred. This detection gap&nbsp;represents&nbsp;a structural limitation in current HF safety frameworks across all affected industries.&nbsp;</p>\n\n<p>Differentiation and Advantages&nbsp;</p>\n\n<ul>\n\t<li>\n\t<p>Post-task detection capability:&nbsp;Designed to enable active worker self-survey after HF handling, a capability not provided by current commercial safety approaches.&nbsp;</p>\n\t</li>\n</ul>\n\n<ul>\n\t<li>\n\t<p>Chemically inert tracer formulation:&nbsp;Xanthene&nbsp;dye&nbsp;has documented chemical stability in HF environments and is not expected to alter acid reactivity, concentration, or intended function.&nbsp;</p>\n\t</li>\n</ul>\n\n<ul>\n\t<li>\n\t<p>Early-window treatment support:&nbsp;Detection prior to symptom onset is intended to expand the effective window for decontamination and calcium gluconate application, both of which are more effective when administered early.&nbsp;</p>\n\t</li>\n</ul>\n\n<ul>\n\t<li>\n\t<p>Leak detection in&nbsp;system&nbsp;processes:&nbsp;Secondarily,&nbsp;this&nbsp;product&nbsp;improves&nbsp;leak&nbsp;detection in&nbsp;industrial processes&nbsp;by&nbsp;creating a&nbsp;high&nbsp;visibility and&nbsp;distinct&nbsp;HF&nbsp;appearance that&nbsp;can reduce&nbsp;detection&nbsp;time and differentiate&nbsp;HF from other clear&nbsp;fluids&nbsp;used in the process.&nbsp;</p>\n\t</li>\n</ul>\n\n<p>Potential Applications&nbsp;</p>\n\n<ul>\n\t<li>\n\t<p>Industrial HF handling operations in petroleum refining, semiconductor etch, glass manufacturing, and pharmaceutical synthesis.&nbsp;</p>\n\t</li>\n</ul>\n\n<ul>\n\t<li>\n\t<p>Worker post-task self-survey using portable UV light sources following HF-handling tasks.&nbsp;</p>\n\t</li>\n</ul>\n\n<ul>\n\t<li>\n\t<p>Facility&nbsp;leak&nbsp;and spill detection through UV scanning of work surfaces and equipment exteriors.&nbsp;</p>\n\t</li>\n</ul>\n\n<ul>\n\t<li>\n\t<p>Laboratory and small-scale research environments where engineering controls may be less robust.&nbsp;</p>\n\t</li>\n</ul>\n\n<p></p>","text":"Technology Licensing Opportunity: This technology is available for licensing through Idaho National Laboratory's (INL) Technology Deployment office. INL is not seeking to procure products or services in connection with this technology, and no procurement activity is associated with INL's technology transfer process. Interested parties are invited to contact INL to discuss licensing terms and partnership opportunities.\n\nOverview\n\nHydrofluoric acid (HF) is used across petroleum refining, semiconductor manufacturing, glass processing, pharmaceutical synthesis, mineral processing, and laboratory research, among others. Despite established handling protocols, accidental skin or surface contact remains a persistent hazard — compounded by HF's unusual toxicological profile: at low concentrations, early-stage contact produces no pain, burning, or visible irritation, while damage to subcutaneous tissue and bone progresses silently before symptoms appear.\n\nThis technology introduces a UV-fluorescent tracer additive created froma xanthene powder.. The additive is designed to remain chemically inert while enabling workers to survey skin, clothing, or surfaces using a UV light source after handling. Fluorescence indicates contact, supporting immediate decontamination and first aid before acid penetrates tissue. The approach is intended as a complementary detection layer alongside existing personal protective equipment and engineering controls.\n\nIndustry Need\n\nCurrent HF safety practice relies on prevention: chemical-resistant PPE, engineered containment, and procedural controls. These measures reduce exposure frequency but do not eliminate the risk of accidental contact, particularly in production environments or during equipment maintenance. No field-deployable method currently exists for workers to confirm the absence of skin or surface contact after an HF-handling task. The standard indicator of exposure is symptom onset, which may occur hours after contact, after significant physiological damage has already occurred. This detection gap represents a structural limitation in current HF safety frameworks across all affected industries.\n\nDifferentiation and Advantages\n\n•\nPost-task detection capability: Designed to enable active worker self-survey after HF handling, a capability not provided by current commercial safety approaches.\n\n•\nChemically inert tracer formulation: Xanthene dye has documented chemical stability in HF environments and is not expected to alter acid reactivity, concentration, or intended function.\n\n•\nEarly-window treatment support: Detection prior to symptom onset is intended to expand the effective window for decontamination and calcium gluconate application, both of which are more effective when administered early.\n\n•\nLeak detection in system processes: Secondarily, this product improves leak detection in industrial processes by creating a high visibility and distinct HF appearance that can reduce detection time and differentiate HF from other clear fluids used in the process.\n\nPotential Applications\n\n•\nIndustrial HF handling operations in petroleum refining, semiconductor etch, glass manufacturing, and pharmaceutical synthesis.\n\n•\nWorker post-task self-survey using portable UV light sources following HF-handling tasks.\n\n•\nFacility leak and spill detection through UV scanning of work surfaces and equipment exteriors.\n\n•\nLaboratory and small-scale research environments where engineering controls may be less robust.","origin":"detail"},"notice_type":{"code":"s","label":"Special Notice"},"schema_version":1,"solicitation_number":"BA-1719","place_of_performance":{"zip":"83401","city":{"code":"39700","name":"Idaho Falls"},"state":{"code":"ID","name":"Idaho"},"country":{"code":"USA","name":"UNITED STATES"}},"product_service_code":"H268"}],"due_at":"2026-10-30T14:00:00Z","due_date":"2026-10-30","closes_at":"2026-10-30T14:00:00Z","awardable":false,"dept_key":"d-089","dept_name":"ENERGY, DEPARTMENT OF","sub_key":"s-8900","sub_name":"ENERGY, DEPARTMENT OF","office_key":"o-899050","office_name":"BATTELLE ENERGY ALLIANCE–DOE CNTR","state":"ID","county":"16019","county_name":"Bonneville County","city":"1639700","city_name":"Idaho Falls","country":"USA","winner_key":null,"amount":null,"linked_awards":0,"cancelled":false,"archived":false,"updated_at":"2026-09-24T04:24:26.592861Z","principal_notice_id":"bb41669697ef46d393933e72a708f59d","description":{"text":"Technology Licensing Opportunity: This technology is available for licensing through Idaho National Laboratory's (INL) Technology Deployment office. INL is not seeking to procure products or services in connection with this technology, and no procurement activity is associated with INL's technology transfer process. Interested parties are invited to contact INL to discuss licensing terms and partnership opportunities.\n\nOverview\n\nHydrofluoric acid (HF) is used across petroleum refining, semiconductor manufacturing, glass processing, pharmaceutical synthesis, mineral processing, and laboratory research, among others. Despite established handling protocols, accidental skin or surface contact remains a persistent hazard — compounded by HF's unusual toxicological profile: at low concentrations, early-stage contact produces no pain, burning, or visible irritation, while damage to subcutaneous tissue and bone progresses silently before symptoms appear.\n\nThis technology introduces a UV-fluorescent tracer additive created froma xanthene powder.. The additive is designed to remain chemically inert while enabling workers to survey skin, clothing, or surfaces using a UV light source after handling. Fluorescence indicates contact, supporting immediate decontamination and first aid before acid penetrates tissue. The approach is intended as a complementary detection layer alongside existing personal protective equipment and engineering controls.\n\nIndustry Need\n\nCurrent HF safety practice relies on prevention: chemical-resistant PPE, engineered containment, and procedural controls. These measures reduce exposure frequency but do not eliminate the risk of accidental contact, particularly in production environments or during equipment maintenance. No field-deployable method currently exists for workers to confirm the absence of skin or surface contact after an HF-handling task. The standard indicator of exposure is symptom onset, which may occur hours after contact, after significant physiological damage has already occurred. This detection gap represents a structural limitation in current HF safety frameworks across all affected industries.\n\nDifferentiation and Advantages\n\n•\nPost-task detection capability: Designed to enable active worker self-survey after HF handling, a capability not provided by current commercial safety approaches.\n\n•\nChemically inert tracer formulation: Xanthene dye has documented chemical stability in HF environments and is not expected to alter acid reactivity, concentration, or intended function.\n\n•\nEarly-window treatment support: Detection prior to symptom onset is intended to expand the effective window for decontamination and calcium gluconate application, both of which are more effective when administered early.\n\n•\nLeak detection in system processes: Secondarily, this product improves leak detection in industrial processes by creating a high visibility and distinct HF appearance that can reduce detection time and differentiate HF from other clear fluids used in the process.\n\nPotential Applications\n\n•\nIndustrial HF handling operations in petroleum refining, semiconductor etch, glass manufacturing, and pharmaceutical synthesis.\n\n•\nWorker post-task self-survey using portable UV light sources following HF-handling tasks.\n\n•\nFacility leak and spill detection through UV scanning of work surfaces and equipment exteriors.\n\n•\nLaboratory and small-scale research environments where engineering controls may be less robust.","html":"<p><strong><u>Technology Licensing Opportunity: This technology is available for licensing through Idaho National Laboratory&#39;s (INL) Technology Deployment office. INL is not seeking to procure products or services in connection with this technology, and no procurement activity is associated with INL&#39;s technology transfer process. Interested parties are invited to contact INL to discuss licensing terms and partnership opportunities.</u></strong></p>\n\n<p>Overview&nbsp;</p>\n\n<p>Hydrofluoric acid (HF) is used across petroleum refining, semiconductor manufacturing, glass processing, pharmaceutical synthesis, mineral processing, and laboratory research,&nbsp;among others. Despite established handling protocols, accidental skin or surface contact&nbsp;remains&nbsp;a persistent hazard &mdash; compounded by HF&#39;s unusual toxicological profile:&nbsp;at low concentrations,&nbsp;early-stage contact produces no pain, burning, or visible irritation, while damage to subcutaneous tissue and bone progresses silently before symptoms appear.&nbsp;</p>\n\n<p>This technology introduces a UV-fluorescent tracer additive&nbsp;created froma&nbsp;xanthene&nbsp;powder.. The additive is designed to remain chemically inert while enabling workers to survey skin, clothing, or surfaces using a UV light source after&nbsp;handling. Fluorescence&nbsp;indicates&nbsp;contact, supporting immediate decontamination and first aid before acid penetrates tissue. The approach is intended as a complementary detection layer alongside existing personal protective equipment and engineering controls.&nbsp;</p>\n\n<p>Industry Need&nbsp;</p>\n\n<p>Current HF safety practice relies on prevention: chemical-resistant PPE, engineered containment, and procedural controls. These measures reduce exposure frequency but do not&nbsp;eliminate&nbsp;the risk of accidental contact, particularly in production environments or during equipment maintenance. No field-deployable method currently exists for workers to confirm the absence of skin or surface contact after an HF-handling task. The standard indicator of exposure is symptom onset,&nbsp;which may occur hours after contact, after significant physiological damage has already occurred. This detection gap&nbsp;represents&nbsp;a structural limitation in current HF safety frameworks across all affected industries.&nbsp;</p>\n\n<p>Differentiation and Advantages&nbsp;</p>\n\n<ul>\n\t<li>\n\t<p>Post-task detection capability:&nbsp;Designed to enable active worker self-survey after HF handling, a capability not provided by current commercial safety approaches.&nbsp;</p>\n\t</li>\n</ul>\n\n<ul>\n\t<li>\n\t<p>Chemically inert tracer formulation:&nbsp;Xanthene&nbsp;dye&nbsp;has documented chemical stability in HF environments and is not expected to alter acid reactivity, concentration, or intended function.&nbsp;</p>\n\t</li>\n</ul>\n\n<ul>\n\t<li>\n\t<p>Early-window treatment support:&nbsp;Detection prior to symptom onset is intended to expand the effective window for decontamination and calcium gluconate application, both of which are more effective when administered early.&nbsp;</p>\n\t</li>\n</ul>\n\n<ul>\n\t<li>\n\t<p>Leak detection in&nbsp;system&nbsp;processes:&nbsp;Secondarily,&nbsp;this&nbsp;product&nbsp;improves&nbsp;leak&nbsp;detection in&nbsp;industrial processes&nbsp;by&nbsp;creating a&nbsp;high&nbsp;visibility and&nbsp;distinct&nbsp;HF&nbsp;appearance that&nbsp;can reduce&nbsp;detection&nbsp;time and differentiate&nbsp;HF from other clear&nbsp;fluids&nbsp;used in the process.&nbsp;</p>\n\t</li>\n</ul>\n\n<p>Potential Applications&nbsp;</p>\n\n<ul>\n\t<li>\n\t<p>Industrial HF handling operations in petroleum refining, semiconductor etch, glass manufacturing, and pharmaceutical synthesis.&nbsp;</p>\n\t</li>\n</ul>\n\n<ul>\n\t<li>\n\t<p>Worker post-task self-survey using portable UV light sources following HF-handling tasks.&nbsp;</p>\n\t</li>\n</ul>\n\n<ul>\n\t<li>\n\t<p>Facility&nbsp;leak&nbsp;and spill detection through UV scanning of work surfaces and equipment exteriors.&nbsp;</p>\n\t</li>\n</ul>\n\n<ul>\n\t<li>\n\t<p>Laboratory and small-scale research environments where engineering controls may be less robust.&nbsp;</p>\n\t</li>\n</ul>\n\n<p></p>","origin":"detail"},"contacts":[{"name":"Javier Martinez","role":"primary","email":"javier.martinez@inl.gov"}],"place_of_performance":{"zip":"83401","city":{"code":"39700","name":"Idaho Falls"},"state":{"code":"ID","name":"Idaho"},"country":{"code":"USA","name":"UNITED STATES"}},"office_address":{"zip":"83415","city":"Idaho Falls","state":"ID","country":"USA"},"naics_codes":["325180"],"award":null,"attachments":[],"awards":[],"related":[{"key":"INL26053","latest_notice_id":"ca69c6f41f34410d942aed12b710011d","title":"SR-1 Freedom Reactor Radiation Shielding Design/Build","solicitation_number":"INL-26-053","notice_type":"r","first_type":"r","first_posted":"2026-09-11","last_posted":"2026-09-11","notices":1,"due_at":"2026-09-25T05:59:00Z","due_date":"2026-09-24","closes_at":"2026-09-25T05:59:00Z","awardable":true,"open":true,"removed":false,"dept_key":"d-089","dept_name":"ENERGY, DEPARTMENT OF","sub_key":"s-8900","sub_name":"ENERGY, DEPARTMENT OF","office_key":"o-899050","office_name":"BATTELLE ENERGY ALLIANCE–DOE CNTR","naics":null,"psc":null,"set_aside":null,"state":"ID","county":null,"county_name":null,"city":null,"city_name":null,"country":"USA","winner":null,"winner_key":null,"amount":null,"linked_awards":0,"cancelled":false,"archived":false,"removed_at":null,"updated_at":"2026-09-24T03:25:58.922164Z"},{"key":"INL26050","latest_notice_id":"166d0c2878f8487b82bc5440fd47e966","title":"Long-Duration Energy Storage (LDES) Battery System","solicitation_number":"INL-26-050","notice_type":"r","first_type":"r","first_posted":"2026-08-24","last_posted":"2026-08-24","notices":1,"due_at":"2026-09-25T05:59:00Z","due_date":"2026-09-24","closes_at":"2026-09-25T05:59:00Z","awardable":true,"open":true,"removed":false,"dept_key":"d-089","dept_name":"ENERGY, DEPARTMENT OF","sub_key":"s-8900","sub_name":"ENERGY, DEPARTMENT OF","office_key":"o-899050","office_name":"BATTELLE ENERGY ALLIANCE–DOE CNTR","naics":null,"psc":null,"set_aside":null,"state":"ID","county":"16019","county_name":"Bonneville County","city":"1639700","city_name":"Idaho Falls","country":"USA","winner":null,"winner_key":null,"amount":null,"linked_awards":0,"cancelled":false,"archived":false,"removed_at":null,"updated_at":"2026-09-24T03:25:58.922164Z"},{"key":"INL26054","latest_notice_id":"21d540828ee3430d9ebbed49fda66a3a","title":"Heavy Equipment Rental Services","solicitation_number":"INL-26-054","notice_type":"r","first_type":"r","first_posted":"2026-09-17","last_posted":"2026-09-17","notices":1,"due_at":"2026-10-03T05:59:00Z","due_date":"2026-10-02","closes_at":"2026-10-03T05:59:00Z","awardable":true,"open":true,"removed":false,"dept_key":"d-089","dept_name":"ENERGY, DEPARTMENT OF","sub_key":"s-8900","sub_name":"ENERGY, DEPARTMENT OF","office_key":"o-899050","office_name":"BATTELLE ENERGY ALLIANCE–DOE CNTR","naics":null,"psc":null,"set_aside":null,"state":"ID","county":null,"county_name":null,"city":null,"city_name":null,"country":"USA","winner":null,"winner_key":null,"amount":null,"linked_awards":0,"cancelled":false,"archived":false,"removed_at":null,"updated_at":"2026-09-24T03:25:58.922164Z"},{"key":"INL26032","latest_notice_id":"b532287324914ecf9661a438bf571f44","title":"Replace Roll Up Door at SMC","solicitation_number":"INL-26-032","notice_type":"r","first_type":"r","first_posted":"2026-02-25","last_posted":"2026-03-18","notices":4,"due_at":"2026-10-10T05:59:00Z","due_date":"2026-10-09","closes_at":"2026-10-10T05:59:00Z","awardable":true,"open":true,"removed":false,"dept_key":"d-089","dept_name":"ENERGY, DEPARTMENT OF","sub_key":"s-8900","sub_name":"ENERGY, DEPARTMENT OF","office_key":"o-899050","office_name":"BATTELLE ENERGY ALLIANCE–DOE CNTR","naics":"238290","psc":null,"set_aside":null,"state":"ID","county":"16019","county_name":"Bonneville County","city":"1639700","city_name":"Idaho Falls","country":"USA","winner":null,"winner_key":null,"amount":null,"linked_awards":0,"cancelled":false,"archived":false,"removed_at":null,"updated_at":"2026-09-24T03:25:58.922164Z"},{"key":"INL26052","latest_notice_id":"0ec3c3f4bd834b898cab77bd1ce73364","title":"Alternative Fuels & Feedstock Initiative to Add Value to Seed Oil Crops through Improved Preprocessing, Scalability, and Valorization of Product Streams","solicitation_number":"INL-26-052","notice_type":"r","first_type":"r","first_posted":"2026-09-14","last_posted":"2026-09-14","notices":1,"due_at":"2026-10-16T05:59:00Z","due_date":"2026-10-15","closes_at":"2026-10-16T05:59:00Z","awardable":true,"open":true,"removed":false,"dept_key":"d-089","dept_name":"ENERGY, DEPARTMENT OF","sub_key":"s-8900","sub_name":"ENERGY, DEPARTMENT OF","office_key":"o-899050","office_name":"BATTELLE ENERGY ALLIANCE–DOE CNTR","naics":null,"psc":null,"set_aside":null,"state":"ID","county":null,"county_name":null,"city":null,"city_name":null,"country":"USA","winner":null,"winner_key":null,"amount":null,"linked_awards":0,"cancelled":false,"archived":false,"removed_at":null,"updated_at":"2026-09-24T03:25:58.922164Z"}]}