GEORGIA TECH RESEARCH CORP

Total received in grants · trailing 12 months
$20M
vs. GOVERNOR'S AUTHORIZED REPRESENTATIVE ($39.2B), largest tracked grant recipient
$0for every U.S. household÷ 131M U.S. households
In perspective
0.0%of all $401.9B in tracked grants
11separate grants, trailing 12 months

GEORGIA TECH RESEARCH CORP has received $20M across 11 federal grants of $1M or more on record.

Data as of August 5, 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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AgencyDescriptionAmount
PROJECT 19: CENTER OF EXCELLENCE STUDENT OUTREACH
$2,663,882
AUTONOMOUS, ADAPTIVE AND SECURE DISTRIBUTION PROTECTION (A2SDP)
$2,590,981
ADVANCED MULTIPHASE (MP) FORMING FOR ENHANCED EFFICIENCY OF DRYING PAPER, TISSUE AND OTHER FIBER COMPOSITE PRODUCTS
$2,504,673
MODULAR AND TUNABLE HIGH-TEMPERATURE HOLLOW FIBER ZEOLITE MEMBRANE REACTORS FOR DECARBONIZED OLEFIN AND METHANOL PRODUCTION
$2,287,690
WATER REMOVAL PRIOR TO EVAPORATION IN PAPER MACHINES
$2,200,954
CONVERSION OF 2,3-BUTANEDIOL TO BIOJET FUEL: SCALE-UP AND TECHNOECONOMIC ANALYSIS OF ENERGY-EFFICIENT SEPARATIONS AND FERMENTATIVE DIOL PRODUCTION
$1,601,359
THE OVERALL GOAL OF THIS PROJECT IS TO DEVELOP 22-23% EFFICIENT LARGE-AREA COMMERCIAL READY AG FREE PASSIVATED EMITTER AND REAR CELL (PERC) AND TUNNEL OXIDE PASSIVATED CONTACTS (TOPCON) CELLS BY REPLACING THE EXPENSIVE SCREEN-PRINTED AG CONTACTS IN OUR CURRENT CELLS WITH LOW-COST SCREEN-PRINTED CU AND /OR AL CONTACTS, WITHOUT COMPROMISING THE CELL EFFICIENCY.
$1,600,000
WATER MANAGEMENT AND REUSE SYSTEM FOR CRUDE OIL DESALTING PROCESSES VIA TUNABLE AND SCALABLE GRAPHENE OXIDE-BASED NANOFILTRATION MEMBRANES
$1,443,540
A COLLABORATIVE INDUSTRIAL ASSESSMENT CENTER (IAC) FOR EXPANDED OUTREACH WITHIN THE SOUTHEAST
$1,400,000
IMPROVING THE CURING EFFICIENCY FOR COMPOSITE AEROSTRUCTURES THROUGH MULTI-TASK OPTIMIZATION OF A PHYSICS-INFORMED MULTIPLE NEURAL NETWORK FRAMEWORK
$1,202,500
TO HELP GROW MORE FOOD IN EFFECTIVE WAY, FARMERS OFTEN USE SPECIAL FERTILIZERS THAT RELEASE NUTRIENTS SLOWLY. HOWEVER, THESE FERTILIZERS ARE CURRENTLY MADE FROM PETROLEUM, WHICH MAKES THEM EXPENSIVE AND CREATES PLASTIC WASTE THAT POLLUTES SOIL AND WATER. OUR PROJECT AIMS TO SOLVE THIS PROBLEM BY CREATING A NEW, ECO-FRIENDLY FERTILIZER COATING MADE ENTIRELY FROM BIOMASS WASTE, ESPECIALLY MATERIALS AVAILABLE IN THE FARM LIKE CORN STALKS, PEANUT SHELLS, AND SAWDUST. WE FIRST BREAK DOWN THE PLANT WASTE TO EXTRACT USEFUL NATURAL CHEMICALS. THEN WE SYNTHESIZED FULLY BIOMASS-DERIVED AND BIODEGRADABLE NON-ISOCYANATE POLYURETHANE (NIPU) FROM THESE NATURAL CHEMICALS. WE THEN COMBINED THIS NIPU WITH SPECIAL TYPE OF CLAY TO CREATE A THIN, BIODEGRADABLE COATING LAYER ONTO COMMON FERTILIZER GRANULES USING A SIMPLE, SCALABLE ROTATING DRUM. BY TURNING LOCAL WASTE INTO A VALUABLE PRODUCT, WE CREATE A SUSTAINABLE CYCLE: WE USE LEFTOVERS FROM FARMING TO HELP GROW NEW CROPS MORE EFFICIENTLY, REDUCING BOTH WASTE AND POLLUTION.
$1,000,000