Closed · W81EWF-22-SOI-0036 · CFDA 12.630 · Discretionary
: “Developing Biotechnologies for Detection and Recovery of Rare Earth Elements”
Federal grant opportunity posted by Dept. of the Army -- Corps of Engineers, cataloged on Grants.gov.
- up to $350K
- Award range
- Closed
- Status
- August 19, 2022
- Close date
- -
- Expected awards
The verdict
: “Developing Biotechnologies for Detection and Recovery of Rare Earth Elements” is a closed discretionary listing from Dept. of the Army -- Corps of Engineers that offered Up to $350,000. Future funding cycles may be published under the same CFDA number.
- up to $350K
- award range
- Closed
- application status
- 12.630
- CFDA program
Opportunity snapshot. This Grants.gov announcement - : “Developing Biotechnologies for Detection and Recovery of Rare Earth Elements” - is cataloged under number W81EWF-22-SOI-0036 and tied to CFDA assistance listing 12.630, posted by Dept. of the Army -- Corps of Engineers. Grants.gov currently shows the opportunity as closed, first posted on July 1, 2022. The funding category is Discretionary, delivered as a cooperative agreement.
Award economics. The award range on file is Up to $350,000. Cost sharing is not required, so applicants do not need to commit matching funds to be competitive on this opportunity. Federal award ranges are often upper bounds; actual allocations reflect program appropriations, the strength of the applicant pool, and the evaluation committee's scoring.
Deadline and action path. This opportunity closed on August 19, 2022. Future funding cycles may be published under the same CFDA number, so monitoring the parent program page is the most reliable way to catch re-announcements. Every Grants.gov submission requires an active SAM.gov registration and a Unique Entity ID. Review the Eligibility section below carefully, federal eligibility categories (nonprofit, state or local government, tribal, individual, educational institution, small business) have distinct registration and reporting requirements. Pre-application outreach to the listed agency contact is permitted and often welcomed, it helps clarify scope and scoring priorities. Before acting on the deadline or award figures above, verify them directly on the official Grants.gov listing, amendments can change dates and amounts after this page was last refreshed.
Award Range
Up to $350,000
Close Date
August 19, 2022
Posted
July 1, 2022
Instrument
Cooperative Agreement
Description
Background: Rare earth elements (REE) are critical components of many advanced technologies including magnets in hard drives and components of lasers. Of the 17 rare earth elements, 16 (cerium, dysprosium, erbium, europium, gadolinium, holmium, lanthanum, lutetium, neodymium, praseodymium, samarium, scandium, terbium, thulium, ytterbium and yttrium) are designated critical minerals and are present in different combinations and concentrations depending on the primary (e.g. ores, red mud, geological deposits) and secondary (e-waste, coal ash and landfill leachate) sources of the critical minerals. Of these 16, all except for cerium and lanthanum, are in undersupply. Individual REE are used in different combinations to develop advanced technologies necessitating the isolation of elements from primary and secondary sources and the purification of defined REE mixtures or individual elements. However current approaches are energy and solvent intensive and do not easily separate the different REE from each other. Biotechnology applications such as bioleaching and biosorption are promising approaches for REE recovery but require further research and development to increase selectivity, efficiency, cost effectiveness and scalability. Brief Description of Anticipated Work: Required Work Objectives: This project will develop novel microbes with increased capability to dissolve and capture REE from solid sources such as crushed ore and e-waste. The project will also examine approaches to increase the selectivity and affinity of biomolecules for different REE. Additionally, the project will investigate different technologies/approaches that improve scalability of REE recovery processes (e.g. concentration and monitoring of REEs during processing). The ultimate goal of this effort is to develop methods that accelerate our ability to recover individual or discrete mixtures of REE from domestic primary and secondary sources. Objective 1: Increase the selectivity and affinity of biomolecules for different REE. Create semi-synthetic platforms for specific lanthanide-binding, with the reliance on modification of proteins and spores using designed chemical structures for chelation moieties. These platforms should improve the concentration of lanthanides by spores and proteins, while providing methods for tuning protein/spore affinity and selectivity. The specificities of both the semi-synthetic and protein-alone chelators should be further modified using computational models to design peptides and proteins with a variety of affinities and specificities for REE.Objective 2: Technologies/approaches that improve scalability of REE recovery processes. Surfaces of fluorescent proteins should be modified to create protein biosensors that can bind lanthanides with high affinity and selectivity, and also allow FRET detection both in vitro and in vivo of lanthanides (samarium, europium, terbium, and dysprosium). Such biosensors will serve as tools for monitoring the efficiencies of processing streams and of the efficacies of different technologies. The successful offeror work with ERDC researchers to examine novel approaches to condense process streams to increase efficiency of downstream processing events.Results from these objectives will be communicated to ERDC regularly in interim reports and transferred to the Public using conference presentations and the peer-reviewed literature. All methods and protocols will accompany the results and meet peer-review scrutiny for any interim reports. A successful application would likely include experience with genetic engineering of spores, molecular evolution and synthetic biology, and successful publication record of these methods. Public Benefit: Development of approaches to harvest critical minerals from domestic sources is essential to establishing secure domestic supply chains for REE. Furthermore, the environmentally friendly biotechnologies developed here will greatly lower adverse environmental and climate effects caused by existing REE mining approaches. Further, understanding how to selectively isolate REE from many sources will greatly increase our ability to isolate other critical minerals. This project will benefit the public by providing new approaches to harvest critical minerals, by educating the public about environmentally friendly approaches for mining/recycling, and by increasing availability of critical materials for development of advanced technology.
Eligibility
Grants.gov lists this opportunity under eligibility category code 25. These codes correspond to applicant types (state/local government, tribal organization, nonprofit, educational institution, individual, small business, etc.) defined in Grants.gov's own eligibility reference. See the current Grants.gov eligibility categories or check the official listing below for this opportunity's exact eligibility statement.
Official Listing on Grants.gov
View full details, application forms, and submission instructions.
Agency Contact
Stacy Thurman Grantor
Key Dates
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