Project Grant S15OD039775
- The National Science Foundation (NSF), through its Integrative Activities program (CFDA 47.083), awarded a $271,925 Project Grant to Montana State University (MSU) to acquire a helium recovery system for their NMR core facility. This system will reduce MSU's consumption of liquid helium, which is required to operate the state-of-the-art NMR spectrometers. The helium recovery system will lower the facility's operational costs and carbon footprint, making the NMR core's activities more sustainable...
- This $320,810 National Science Foundation project grant supports the acquisition of a helium recovery and liquefaction system by Indiana University Bloomington. Funded under the NSF's Mathematical and Physical Sciences program (CFDA 47.049), the system will capture helium gas evaporating from eight nuclear magnetic resonance spectrometers in the university's NMR facility. By recycling this helium into liquid form for reuse, the facility expects to substantially reduce its annual purchases of...
- Federal Project Grant Award Summary The University of Texas Health Science Center at San Antonio received a $346,350 Project Grant from the National Institutes of Health Office of the Director under the Research Infrastructure Programs (CFDA 93.351) effective August 1, 2025 through July 31, 2027. The award funds site preparation and installation of a helium capture and reliquification system for the institution's biomolecular Nuclear Magnetic Resonance (NMR) facility. This system will recycle...
- The National Science Foundation (NSF) Office of Integrative Activities awarded a $500,408 Project Grant to Oregon State University (OSU) to acquire and install an integrated helium capture and recovery system for the university's Nuclear Magnetic Resonance (NMR) facility. This system will enable the recycling of at least 90% of the over 1,000 liters of liquid helium used annually by the facility's five NMR spectrometers, including Oregon's two highest field NMR instruments. The project...
- This $322,300 Project Grant from the National Science Foundation Division of Molecular and Cellular Biosciences, under the Biological Sciences federal grant program (CFDA 47.074), will support Brown University's acquisition of helium recovery equipment. The equipment will recapture and reliquefy the helium released from three nuclear magnetic resonance spectrometers in Brown University's Structural Biology Core Facility. Recycling the approximately 2,200 liters of liquid helium used per year...
- This $190,000 National Science Foundation project grant, funded under the Integrative Activities program (CFDA 47.083), supports the acquisition and implementation of a helium recovery system at the University of Kansas. Dr. Justin Douglas and the University of Kansas Center for Research Inc. will install manifolds to collect helium exhaust from nine scientific instruments across four buildings without disrupting operations. The collected gas will be compressed into high-pressure cylinders for...
- This Project Grant award from the National Science Foundation Division of Chemistry provides $107,085 to California State University, Northridge for the acquisition and installation of a helium recovery system. The system will collect and recycle evaporated helium gas from two nuclear magnetic resonance instruments, reducing helium consumption by an estimated 70% and preserving access to these critical research tools. The award supports the Mathematical and Physical Sciences program's goals of...
- The National Science Foundation (NSF) Division of Chemistry awarded a $322,980 Project Grant to the University of Toledo for the "MRI: TRACK 3 ACQUISITION OF HELIUM RECOVERY EQUIPMENT TO ESTABLISH A SUSTAINABLE NMR FACILITY". This grant, which runs from September 1, 2023 to August 31, 2026, is funded under the NSF's Mathematical and Physical Sciences (CFDA 47.049) program. The grant supports the University of Toledo's acquisition of a helium recovery system to capture and reLiquefy...
- Wayne State University received a $219,353 Project Grant award from the National Science Foundation Division of Chemistry to implement a closed helium recovery system for shared research nuclear magnetic resonance and mass spectrometry instruments. The system will capture helium from superconducting magnets associated with NMR and FT-ICR MS instruments in the Chemistry Department facility, temporarily store the collected gas in medium-pressure tanks, liquify it at a centralized station, and...
- The National Science Foundation (NSF) awarded a $431,976 Project Grant under the Integrative Activities (CFDA 47.083) program to the University of Texas at Austin (UT Austin) to acquire helium recovery equipment for quantum materials research and nuclear magnetic resonance (NMR) facilities. The equipment establishes a helium recycling system to recapture and recondense exhaust helium gas, ensuring the continuation of critical low-temperature research in physics, chemistry, and engineering at...
HELIUM RECOVERY SYSTEM - PROJECT SUMMARY/ABSTRACT NIH-FUNDED PRINCIPAL INVESTIGATORS AT THE UNIVERSITY OF MARYLAND, BALTIMORE (UMB) REQUEST FUNDS FOR A STATE-OF- THE-ART HELIUM RECOVERY SYSTEM TO BE INSTALLED WITHIN THE UMB NMR CORE FACILITY TO ADVANCE THEIR NIH FUNDED NMR RESEARCH. INTEGRATION OF A HELIUM RECOVERY SYSTEM WOULD BE BENEFICIAL TO THE UMB SCIENTIFIC COMMUNITY BY (I) PROVIDING A SIGNIFICANT COST SAVING MEASURE, ALLOWING FOR THE REDUCTION IN NMR USAGE FEES TO OUR NIH- FUNDED INVESTIGATORS, MAKING NMR DATA COLLECTION FEASIBLE TO BOTH AN INCREASED NUMBER OF SCIENTISTS AND ENABLING OUR CURRENT USERS TO EXPAND THEIR NMR-FOCUSED RESEARCH, (II) PROTECTING OUR THREE NIH-FUNDED NMR SPECTROMETERS FROM FUTURE LIQUID HELIUM SHORTAGES, WHICH PUT THEM AT RISK OF FORCED DECOMMISSION, AND (III) SUPPORTING THE UNIVERSITY'S "GREEN INITIATIVE" BY GREATLY REDUCING OUR CONTRIBUTION TO REDUCTION OF AN EXTREMELY LIMITED PLANETARY RESOURCE, WHILE ALSO REDUCING GREENHOUSE GAS EMISSIONS. THIS IMPROVEMENT WILL PROVIDE STABILITY FOR NOT ONLY THE UMB NMR CORE FACILITY, BUT BY EXTENSION TO THE ENTIRE UMB STRUCTURAL BIOLOGY MISSION. AS PART OF THE STRUCTURAL BIOLOGY SECTIONS WITHIN BOTH THE GREENEBAUM COMPREHENSIVE CANCER CENTER (GCCC) AND THE UNIVERSITY OF MARYLAND CENTER FOR BIOMOLECULAR THERAPEUTICS (CBT), OUR GOAL IS TO PROVIDE A "TOP-DOWN" STRUCTURAL BIOLOGY APPROACH THAT INCLUDES CRYOEM, X-RAY CRYSTALLOGRAPHY AND NUCLEAR MAGNETIC RESONANCE (NMR) TO ACCOMPLISH THE MISSION OF FACILITATING STRUCTURE-BASED DRUG DESIGN FOR ALL INVESTIGATORS AND TO USE ALL AVAILABLE TECHNOLOGIES TO COMPLEMENTARILY AND COLLECTIVELY PROVIDE GUIDANCE FOR BASIC SCIENCE DISCOVERIES AND STRUCTURE-BASED DRUG DESIGN EFFORTS. THE USERS OF THE UMB NMR CENTER INCLUDE FACULTY MEMBERS FROM THE UMB SCHOOL OF MEDICINE (SOM), THE UMB SCHOOL OF PHARMACY (SOP), THE GCCC, THE UNIVERSITY OF MARYLAND CBT, USERS FROM OTHER UNIVERSITY OF MARYLAND CAMPUSES (UMBC, UMCP), AND USERS FROM OTHER UNIVERSITIES (JOHNS HOPKINS UNIVERSITY, GEORGETOWN UNIVERSITY, COLUMBIA UNIVERSITY) AND PRIVATE COMPANIES. THE MAJOR ONGOING NIH-FUNDED PROJECTS THAT ARE HIGHLIGHTED IN THIS PROPOSAL ARE: 1. DR. ALEX DROHAT, MECHANISMS OF BER IN GENOMIC INTEGRITY AND EPIGENETIC REGULATION; 2. DRS. FILIPPO MANCIA/DAVID WEBER (PI), STRUCTURAL BASIS OF RECEPTOR-MEDIATED CELLULAR VITAMIN A UPTAKE; 3. DRS. FRANCE CARRIER/DAVID WEBER (PI), FIRST IN CLASS SMALL MOLECULES TO SIMULTANEOUSLY INHIBIT PROTEIN TRANSLATION AND AN IMMUNE CHECKPOINT IN CANCERS; AND 4. DR. AIKATERINI KONTROGIANNI-KONSTANTOPOULOS, INVESTIGATING THE MOLECULAR PATHOGENESIS OF A NOVEL MYBPC1 DUPLICATION MUTATION LINKED TO MYOPATHY WITH TREMOR. IN ADDITION, 8 OTHER NIH-FUNDED PROJECTS CURRENTLY HAVE AN ESSENTIAL NEED FOR CONTINUED USE OF THE UMB NMR CORE FACILITY, AND THEY ARE LISTED IN A SUPPLEMENTARY TABLE (SEE ATTACHED TABLE 1).
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $0 | 4/1/26 | ||
| Not listed | $349.5k | 8/11/25 | ||
| Not listed | $349.5k | 8/11/25 |