UNIVERSITY OF MISSOURI SYSTEM
Total received in grants · trailing 12 months
$13M
$0for every U.S. household÷ 131M U.S. households
In perspective
0.0%of all $162.9B in tracked grants
5separate grants, trailing 12 months
UNIVERSITY OF MISSOURI SYSTEM has received $13M across 5 federal grants of $1M or more on record.
Data as of July 24, 2026. Source: USAspending.gov, prime contract awards $1M+. Federal spending data lags and has known gaps. This is not a real-time or complete record.
Grants by agency
Where this recipient’s grant dollars come from.
All grant awards
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| Agency | Description | Amount |
|---|---|---|
| Department of Energy | INTELLIGENT DYNAMIC EAF ADVISORY SYSTEM (IDEAS) FOR IMPROVING EAF OPERATING EFFICIENCY | $5,227,988 |
| Department of Energy | GRID-INTERACTIVE STEELMAKING WITH HYDROGEN (GISH) | $3,619,426 |
| Department of Justice | THROUGH THE PROPOSED 36-MONTH PROJECT, THE UNIVERSITY OF MISSOURIS MISSOURI PREVENTION SCIENCE INSTITUTE (MPSI) WILL BUILD CAPACITY IN FOUR URBAN DISTRICTS SERVING 52 SCHOOLS AND 30,000+ STUDENTS ACROSS MISSOURI BY (1) CREATING SCHOOL-BASED THREAT ASSESSMENT TEAMS; (2) IMPLEMENTING PROACTIVE THREAT IDENTIFICATION TECHNOLOGY TARGETING THE VULNERABLE DIGITAL ANONYMITY OF THE SCHOOL-PROVIDED COMPUTER; (3) SUPPORTING IMPLEMENTATION OF COMPLEMENTARY EVIDENCE-SUPPORTED PROGRAMS COLLECTIVELY RESPONDING TO POTENTIAL THREATS OF VIOLENCE, SELF-HARM, AND HARM TO OTHERS; AND (4) USING A STUDENT MENTAL HEALTH SCREENING AND SUPPORT SYSTEM. CREATION OF SCHOOL-BASED MULTIDISCIPLINARY THREAT ASSESSMENT TEAMS WILL ADOPT ACTIVITIES ALIGNED WITH NATIONAL THREAT ASSESSMENT GUIDELINES. THE INSTALLATION OF SOFTWARE ON DISTRICT-OWNED COMPUTERS WILL HELP IDENTIFY AND REPORT BEHAVIORAL RISKS TO STUDENTS, INCLUDING THREATS OF VIOLENCE, SELF-HARM, AND HARM TO OTHERS, WITH TRAINING, TECHNICAL, AND MONITORING SUPPORT ENSURING SUCCESS AND SUSTAINABILITY. THE IMPLEMENTATION OF THE COLUMBIA PROTOCOL AND THE COMPREHENSIVE SCHOOL THREAT ASSESSMENT GUIDELINES (CSTAG), AS WELL AS CONSTRUCTION OF STRUCTURED SAFETY AND CRISIS INTERVENTION PLANS, SUPPORT EVIDENCE-BASED SCHOOL RESPONSES TO THREATS OF SELF-HARM AND HARM TO OTHERS. THE IMPLEMENTATION OF THE EARLY IDENTIFICATION SYSTEM FOR SCREENING STUDENT MENTAL HEALTH CONCERNS BIANNUALLY AND USING THE INTERVENTION HUB TO PROVIDE SCHOOLWIDE AND INDIVIDUAL STUDENT SUPPORTS WILL REDUCE STUDENT RISKS. | $2,000,000 |
| Department of Energy | NEW COMPETITIVE COOPERATIVE AGREEMENT WITH UNIVERSITY OF MISSOURI: COLUMBIA, DE-FOA-0002851 (COOLERCHIPS) CONTROL NUMBER: 2851-1516 PROJECT TITLE: ''DUAL-MODE HYBRID TWO-PHASE LOOP FOR DATA CENTER COOLING'' THE PROJECT OBJECTIVE IS TO PERFORM A HARDWARE DEMONSTRATION OF A DUAL-MODE HYBRID TWO-PHASE COOLING LOOP TECHNOLOGY FOR DATA CENTER COOLING [I.E., (I) PASSIVE MODE USING A LOOP THERMOSYPHON AND (II) ACTIVE MODE USING A PUMPED TWO-PHASE LOOP]. THE PROPOSED HYBRID TWO-PHASE LOOP (HTPL) IS CAPABLE OF TRANSPORTING LARGE HEAT LOADS (RACK POWER OF > 123 KW, RACK POWER DENSITY OF >146 KW/M3) AT ULTRA-LOW THERMAL RESISTANCES (< 0.01 K/W) WITH NEGLIGIBLE (ZERO FOR PASSIVE MODE, 0.47% OF IT POWER FOR ACTIVE MODE) ENERGY CONSUMPTION. | $1,299,281 |
| Department of Health and Human Services | FLASHKNIFER AT NEXTGEN PRECISION HEALTH - THE UNIVERSITY OF MISSOURI (MIZZOU) REQUESTS FUNDING FOR THE THERYQ FLASHKNIFE SYSTEM, A DEDICATED PRECLINICAL RADIOTHERAPY PLATFORM CAPABLE OF DELIVERING ULTRA-HIGH DOSE RATES (UHDR, >=40 GY/S), TO ADDRESS A CRITICAL TECHNOLOGICAL GAP AND PROPEL ITS NIH-FUNDED CANCER RESEARCH PROGRAMS INTO FLASH RADIOTHERAPY (FLASH-RT). FLASH-RT REPRESENTS A MAJOR FRONTIER IN CANCER TREATMENT, WITH PRECLINICAL EVIDENCE DEMONSTRATING ITS POTENTIAL TO SIGNIFICANTLY SPARE NORMAL TISSUES WHILE MAINTAINING OR ENHANCING TUMOR CONTROL COMPARED TO CONVENTIONAL RADIOTHERAPY (CONV-RT), THEREBY OFFERING A WIDER THERAPEUTIC WINDOW AND IMPROVED PATIENT OUTCOMES. DESPITE MIZZOU’S CONSIDERABLE STRENGTHS IN RADIATION ONCOLOGY, MEDICAL PHYSICS, IMMUNOLOGY, RADIOBIOLOGY, RADIOPHARMACEUTICAL SCIENCES, ORGANOID MODELS, SMALL ANIMAL RESEARCH, AND SWINE/LARGE ANIMAL TRANSLATIONAL MODELS, THE LACK OF A DEDICATED UHDR IRRADIATION SYSTEM CURRENTLY PREVENTS INVESTIGATORS FROM EXPLORING FLASH MECHANISMS, VALIDATING DOSE-RATE EFFECTS IN BIOLOGICALLY RELEVANT MODELS, AND INVESTIGATING SYNERGISTIC THERAPEUTIC COMBINATIONS UNDER RIGOROUSLY CONTROLLED AND REPRODUCIBLE CONDITIONS. THE FLASHKNIFE SYSTEM, SPECIFICALLY ENGINEERED FOR PRECLINICAL AND TRANSLATIONAL FLASH-RT STUDIES, OFFERS VALIDATED UHDR ELECTRON DELIVERY (150-350 GY/S), ROBOTIC FLEXIBILITY, INTEGRATED DUAL-MODE OPERATION (FLASH AND CONV-RT), AND UHDR DOSIMETRY READINESS. ITS ACQUISITION IS CRUCIAL FOR A MULTIDISCIPLINARY TEAM OF NIH-FUNDED INVESTIGATORS, INCLUDING DR. RONGXIAO ZHANG (UHDR PHYSICS/DOSIMETRY), DR. BO LU (FLASH-IMMUNOTHERAPY FOR LUNG CANCER), DR. HAVAL SHIRWAN (FLASH EFFECTS ON SYSTEMIC IMMUNITY AND NOVEL IMMUNOTHERAPIES), DR. SYAMANTAK KHAN (FLASH IN HETEROGENEOUS/HYPOXIC TUMORS USING PATIENT-DERIVED ORGANOIDS), DR. OLGA BAKER (FLASH SPARING OF SALIVARY GLANDS), DR. ROBERT THOMEN (ADVANCED PULMONARY IMAGING AND LUNG STRUCTURE-FUNCTION ASSESSMENT), AND DR. R. SCOTT RECTOR (METABOLIC LIVER DISEASE, MITOCHONDRIAL BIOENERGETICS, AND SWINE/LARGE ANIMAL TRANSLATIONAL STUDIES). THESE MAJOR USERS, ALONG WITH MINOR USERS, WILL LEVERAGE MIZZOU’S INSTITUTIONAL RESOURCES, INCLUDING THE MU RESEARCH REACTOR (MURR) FOR NOVEL RADIOPHARMACEUTICAL COMBINATIONS; THE NATIONAL SWINE RESOURCE AND RESEARCH CENTER (NSRRC) FOR CONTROLLED SWINE TRANSLATIONAL SAFETY AND EFFICACY STUDIES; PATIENT-DERIVED ORGANOID AND CELL CULTURE PLATFORMS; AND THE ROY BLUNT NEXTGEN PRECISION HEALTH BUILDING, WHERE THE FLASHKNIFE WILL BE HOUSED IN A COLLABORATIVE ENVIRONMENT WITH ADVANCED IMAGING AND RESEARCH CORE FACILITIES. THE RESEARCH ENABLED WILL SPAN PHYSICS DEVELOPMENT, TREATMENT PLANNING AND DOSIMETRY, TUMOR AND SYSTEMIC IMMUNITY, FLASH MECHANISMS, MULTI-ORGAN SPARING, ORGANOID AND CELLBASED MECHANISTIC STUDIES, CONTROLLED SMALL AND LARGE ANIMAL STUDIES, AND PIONEERING COMBINATIONS OF FLASH-RT WITH MIZZOU-PRODUCED RADIOPHARMACEUTICALS. THIS S10 GRANT WILL PROVIDE ESSENTIAL, CUTTING-EDGE SHARED INSTRUMENTATION THAT DIRECTLY SUPPORTS HIGH-PRIORITY NIH PROJECTS, FOSTERS INTERDISCIPLINARY COLLABORATION, ENHANCES MIZZOU’S RESEARCH INFRASTRUCTURE, AND ACCELERATES THE TRANSLATION OF FLASH-RT TOWARD IMPROVED CLINICAL CANCER CARE. LED BY DR. ZHANG, THE TECHNICAL EXPERTISE AND MANAGEMENT PLAN ENSURE ACCESS AND LONG-TERM SUSTAINABILITY. | $1,014,209 |