Project Grant 2318616

Award Date 8/15/23
Completion Date 7/31/27
Dollars Obligated $425K
Federal Grant Program
47.041
Assistance Type
Project Grant
Place of Performance
Fountain Hill, PA 18015, USA
Similar Awards
This National Science Foundation (NSF) Engineering Program (CFDA 47.041) Project Grant award to the Research Foundation of the City University of New York (RFCUNY) provides $425,000 to accelerate the discovery of alternative high hydrogen capacity Liquid Organic Hydrogen Carriers (LOHCs) that are cost-effective, safe, and environmentally sustainable. The multidisciplinary research team will (1) rigorously evaluate the discharging and charging catalytic chemistries of ethanol-based LOHCs, (2)...
This federal Project Grant award from the National Science Foundation (NSF) Engineering program (CFDA 47.041) provides $425,000.00 to New York University (NYU) to accelerate the discovery and development of alternative liquid organic hydrogen carrier (LOHC) molecules for cost-effective, safe, and environmentally sustainable hydrogen storage and transportation. The project aims to: 1) rigorously evaluate the thermochemical and electrochemical discharging and charging properties of ethanol-based...
Lehigh University received a $398,806 Project Grant award from the National Science Foundation on September 1, 2021 to support research titled "CAREER: COMPUTATIONAL DESIGN OF SUSTAINABLE HYDROGENATION SYSTEMS VIA A NOVEL COMBINATION OF DATA SCIENCE, OPTIMIZATION, AND AB INITIO METHODS." The award is part of the NSF's Engineering program (CFDA 47.041), which seeks to improve quality of life and economic strength through engineering research and education. Under the award, Lehigh...
The National Science Foundation (NSF) awarded a $519,335 Project Grant under the NSF Engineering Program (CFDA 47.041) to Lehigh University to elucidate the mechanism of alcohol coupling to form acrolein. The 3-year project, beginning September 1, 2024, represents a collaborative effort between Lehigh University and the Hamburg University of Technology in Germany to develop novel catalytic materials and optimal reactor operating conditions for the energy-efficient production of acrolein from...
This National Science Foundation (NSF) Engineering program (CFDA 47.041) award of $150,000 to The Trustees of Columbia University in the City of New York provides funding for a collaborative research project to investigate using hydrogen peroxide, a cellular waste product, as an alternative energy source for efficient biofuel and biochemical production. The key objectives of the project are to: 1) develop an E. coli strain platform to control and monitor hydrogen peroxide production, 2) create...
This $137,790 Project Grant award from the National Science Foundation's (NSF) Engineering program (CFDA 47.041) supports collaborative research to develop atomically dispersed metal-site air cathodes for low-temperature hydrogen proton-exchange membrane fuel cells (PEMFCs) via electrospinning approaches. The project aims to advance the design of sustainable and earth-abundant catalysts and their integration into high-performance electrodes for hydrogen fuel cells and other electrochemical...
This $399,998 National Science Foundation project grant supports research at Lehigh University from January 1, 2023 to December 31, 2025 under the Engineering (47.041) federal grant program. The university will investigate molecular structure-activity relationships of mixed oxide catalysts for converting ethane to ethylene via oxidative dehydrogenation. Researchers will employ in situ and operando spectroscopy, transient kinetics analysis, and theoretical modeling to determine surface...
The National Science Foundation (NSF) awarded a $200,000 Project Grant under the Engineering program (CFDA 47.041) to the Trustees of the Stevens Institute of Technology in Hoboken, NJ. The award will fund research to characterize the nanoscale interactions between biomass-derived carboxylic acids and a platinum catalyst in aqueous reforming processes. This work aims to provide insights on how to design deactivation-resistant catalysts for converting biomass waste streams into renewable hydrogen...
The Department of Energy (DOE) Office of Energy Efficiency and Renewable Energy awarded a $999,975 Cooperative Agreement to Louisiana State University (LSU) on February 1, 2024 under the Renewable Energy Research and Development program (CFDA 81.087). The overarching goal of this 1-year project is to develop a safe, inexpensive, and recyclable hydrogen storage and generation system based on formate dehydrogenation and bicarbonate hydrogenation reactions. The primary objective is to create...
This $402,712 federal Project Grant award, provided by the National Science Foundation's (NSF) Engineering program (CFDA 47.041), focuses on improving the efficiency and reliability of calcium-based thermochemical energy storage systems. The primary goals are to enhance the understanding of particle behavior and system dynamics in these storage systems through advanced computational simulations and large-scale experimental validation. By integrating molecular dynamics, machine learning, and...

This National Science Foundation (NSF) Engineering (CFDA 47.041) project grant, awarded to Lehigh University, aims to accelerate the discovery of alternative high hydrogen capacity liquid organic hydrogen carrier (LOHC) molecules that are cost-effective, safe, and environmentally sustainable for storing and transporting renewable energy. The $425,000 award, spanning from August 2023 to July 2027, will support a multidisciplinary team's holistic research and development approach. This includes rigorously evaluating the discharging and charging catalytic chemistries of ethanol-based LOHCs, developing kinetic models, and assessing the techno-economics and sustainability of deploying LOHC systems in regional and global supply chains. The project will also explore novel alternative alcohol-based LOHCs and evaluate their performance relative to existing options. In addition to the technical research, the award includes efforts to train the next generation of STEM engineers from diverse backgrounds and engage with an Alaskan community to demonstrate the advantages of advanced renewable energy storage and transportation technologies.

Generated 7/2/24, 8:45 AM