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Society relies on chemical processes to turn raw materials into useful products. The Chemical Process Systems (CPS) program invests in fundamental research on chemical and biochemical processes to make them more efficient, sustainable, and resilient. New CPS technologies for manufacturing, biotechnology, critical minerals, energy, food, and other national priorities will help make the U.S. more competitive and secure. Research supported by the CPS program covers the full breadth of chemical and biochemical process innovation. It spans reaction engineering and molecular thermodynamics; reactor design; catalysis; electrochemical systems; separations; and process design. The program encourages proposals that connect the molecular scale to process and plant scales. The CPS program explores active-site structure and function, reaction mechanisms, in situ and operando characterization, durability, and device-level integration. Microreactors, membrane and catalytic reactors, atmospheric plasmas, and other novel configurations are of interest. The program supports research in catalysis and electrochemical systems to produce, use, and store energy, to reduce waste, to process polymers, and to synthesize fuels and chemicals. This includes process and materials innovation to support the nuclear fuel cycle. The CPS program also targets chemical and biological separations that are efficient and scalable. Research includes the design of membranes, sorbents, and specialized interfaces. Advances can be used in gas separations, the recovery of critical minerals, bioprocessing, and protein and water purification. The program supports research in process design and optimization that uses tools such as artificial intelligence, machine learning, and uncertainty quantification. CPS research also explores quantum information science and engineering; quantum simulation and sensing, for example, may accelerate the discovery of materials and improve process models. Partnerships: To speed discovery and innovation, NSF partners with federal agencies, industry, international groups, and others. Current opportunities are at NSF ENG Partnerships.
Funding Opportunity Number: PD-26-367Y. Assistance Listing: 47.041. Funding Instrument: G. Category: ST.
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Or search similar grants →According to the current listing, eligibility includes: Eligible applicants: Unrestricted (i.e., open to any type of entity above), subject to any clarification in text field entitled Additional Information on Eligibility. Confirm the full requirements in the official notice before applying.
Yes — Chemical Process Systems (CPS) is offered by U.S. National Science Foundation and this listing comes from Grants.gov, an official U.S. federal source. Federal applications generally require registrations (for example SAM.gov or an agency submission portal), so allow extra lead time.
Start from the official opportunity page linked in this listing — it carries the sponsor's submission instructions.
Past winners and funding trends for this program
From FY2021 through FY2025, the National Science Foundation made 76,524 awards totaling roughly $38.5 billion to 3,947 recipients across 56 states and territories. Top recipients included the University of Illinois ($687.6 million) and the University of Texas at Austin ($680.0 million), while the median award was $190,296.
| Organization | Total awarded |
|---|---|
| University of Illinois(IL) | $687.6M |
| University of Texas at Austin(TX) | $680.0M |
| Woods Hole Oceanographic Institution(MA) | $662.4M |
| Association of Universities for Research in Astronomy, INC.(AZ) | $645.9M |
| Regents of the University of Michigan(MI) | $623.3M |
| University Corporation for Atmospheric Research(CO) | $609.0M |
| University of Washington(WA) | $604.3M |
| Associated Universities INC(DC) | $588.8M |
Linked organizations have Granted profiles. Top recipients of National Science Foundation (NSF) assistance awards, FY2021–FY2025, ranked by total obligations (CFDA 47.x). Source: USAspending. Last verified July 2026.
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