Awarded Grants
Below is a listing of our awarded grants that tackle big food and agriculture challenges.

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430 Grants found

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Equipping Conservation Professionals and Farmers with Tools to Deliver Edge of Field Practices 

Year Awarded  2023

FFAR award amount   $226,636

Total award amount   $480,426

Location   Ames, IA

Program   Achieving Conservation Through Targeted Information, Outreach & Networking (ACTION) Program

Matching Funders   Agricultural Drainage Management Coalition, Illinois Sustainable Ag Partnership, Walton Family Foundation

Grantee Institution   Iowa State University

The cost and complexity of technical assistance is a major barrier to large scale adoption of edge-of-field conservation practices. This project is equipping professionals and farmers to deliver edge-of-field practices at scale in the Upper Mississippi River Basin. Researchers are studying models being used to implement these practices and are compiling intervention and engagement strategies that can be tailored to local conditions and target audiences. The project is using these studies to produce data-driven decision support tools that will allow farmers to scale up practices.

A Multi-Source Remote Sensing-Based Framework & Decision-Support Tool for Flash Droughts & Floods Under Climate Change 

Year Awarded  2023

FFAR award amount   $434,038

Total award amount   $966,119

Location   Knoxville, TN

Matching Funders   University of Tennessee, Knoxville

Grantee Institution   University of Tennessee, Knoxville

Ninety percent of crop losses in the United States occur due to extreme weather. Flash floods and droughts are increasing in severity, but farmers have limited information on how to manage crop, soil and water in response to changing climate conditions. Researchers at the University of Tennessee, Knoxville are developing and testing a weather-based tool to bolster field operations across the Tennessee River Basin in the face of both long- and short-term weather hazards.

Integrating Genomics, Milk Spectrometry & Microbial Manipulations to Mitigate Enteric Methane Emissions from Dairy Cattle 

Year Awarded  2023

FFAR award amount   $2,301,499

Total award amount   $3,301,496

Location   Madison, WI

Matching Funders   Innovation Center for U.S. Dairy, ADM, the Council on Dairy Cattle Breeding (CDCB), Elanco, Genus plc, JBS USA, the National Dairy Herd Information Association, Nestlé and the New Zealand Agricultural Greenhouse Gas Research Centre (NZAGRC)

Grantee Institution   University of Wisconsin–Madison

Cows and other ruminant animals produce enteric methane as part of their natural digestive process. This methane is the single largest source of direct greenhouse gases in the dairy sector. University of Wisconsin–Madison researchers are combining interventions addressing breeding, data on milk composition and rumen microbes to selectively breed U.S. dairy cattle with lower emissions.

Hydrogen Production and Hydrogen Utilization in the Rumen of Beef & Dairy Cattle: Key Rumen Microbiome Measurements to Understand Mechanisms Controlling Methanogenesis & Mitigating Enteric Methane Emissions 

Year Awarded  2023

FFAR award amount   $1,066,820

Total award amount   $3,221,254

Location   Champaign, IL

Matching Funders   Innovation Center for U.S. Dairy, ADM, the Council on Dairy Cattle Breeding (CDCB), Elanco, Genus plc, JBS USA, the National Dairy Herd Information Association, Nestlé, the New Zealand Agricultural Greenhouse Gas Research Centre (NZAGRC) and the University of Illinois Urbana-Champaign

Grantee Institution   University of Illinois Urbana-Champaign

Cows and other ruminant animals produce enteric methane as part of their natural digestive process. This methane is the single largest source of direct greenhouse gases in the beef and dairy sectors. University of Illinois Urbana-Champaign researchers are studying how diets and different additives affect hydrogen production, which is essential to producing enteric methane, and how changes in hydrogen affect the amount of enteric methane produced.

Scaling Quantified and Verified Soil Health, Climate and Natural Resources Outcomes from U.S. Agriculture in an Innovative Ecosystem Services Market Program 

Year Awarded  2023

FFAR award amount   $5,150,000

Total award amount   $10,300,000

Location   Falls Church, VA 

Matching Funders   Ecosystem Services Market Consortium

Grantee Institution   Ecosystem Services Market Consortium

The agriculture sector contributes about 11% of U.S. greenhouse gas emissions, which impacts climate change. FFAR invested in the Ecosystem Services Market Consortium for research that creates sound social, economic and environmental outcomes to benefit producers, local communities, supply chain companies and consumers through the expansion of Eco-Harvest, an ecosystem services market program.

Integrating On-farm Solar Arrays to Enhance Groundwater Resources, Produce Energy & Diversify Farm Income 

Year Awarded  2023

FFAR award amount   $881,526

Total award amount   $1,763,053

Location   Lawrence, KS

Program   Seeding Solutions

Matching Funders   University of Kansas Center for Research, Inc., Kansas State University, Michigan State University, Wheatland Electric Cooperative, Inc.

The High Plains Aquifer provides irrigation to support a $3.5 billion agricultural economy across eight states, but due to decades of groundwater extraction, water levels have fallen dangerously low across much of the aquifer. Researchers at the University of Kansas are studying the integration of solar panel arrays outfitted with rain collection gutters on farmland to recharge groundwater and provide marketable electricity to growers.

Evaluation of the Efficacy, Agronomic Fit & Environmental Fate of Biopesticides for Management of Economically Important Diseases & Arthropod Pests of Hemp 

Year Awarded  2023

FFAR award amount   $210,000

Total award amount   $420,000

Location   Geneva, NY

Matching Funders   BioWorks

Because federal laws restricted hemp cultivation and research until recently, commercial hemp production lacks best practices, including effectively and safely managing pests and diseases. Academic and industry partners are collaborating to identify biopesticides – biologically derived crop protection products – that can control hemp’s major pest and disease threats. Researchers are studying the effectiveness of biopesticides, their compatibility with other crop protection products and the ability of hemp plants to tolerate biopesticide applications.

A holistic approach to improving keel bone health of breeders and commercial layer hens 

Year Awarded  2023

FFAR award amount   $1,499,686

Total award amount   $2,999,372

Location   Davis, CA

Program   Layer Hen Keel Bone Health Program

Matching Funders   Hy-Line International; Open Philanthropy

Grantee Institution   University of California Davis

This research is bringing an interdisciplinary approach to the complex, multi-faceted challenge of keel bone damage. The research team is aiming to decrease the occurrence of keel bone damage by examining the birds’ housing environments and assessing the key relation and role of genetics. The researchers are identifying genetic markers associated with keel bone damage in breeding flocks raised under different housing environments and improving genetic selection to promote resistance to keel bone fractures. They are also evaluating the effects of housing design interventions on the development, type and prevalence of keel bone damage. Finally, the researchers are exploring alternative housing designs and conducting economic analyses to determine the costs and gains from the proposed adjustments to breeding and housing designs.

Using the power of functional genomics and genetics to reduce keel bone damage 

Year Awarded  2023

FFAR award amount   $1,489,326

Total award amount   $3,991,105

Location   Edinburgh, United Kingdom

Program   Layer Hen Keel Bone Health Program

Matching Funders   Hy-Line International; Lohmann Breeders GmbH; Open Philanthropy; Roslin Institute, University of Edinburgh; Swedish University of Agricultural Sciences; Universidad de Granada; University of Alberta

Grantee Institution   University of Edinburgh

The research consortium is using genetic selection to address keel damage. The team is using x-ray images and machine learning to refine and validate the measurements of bone quality and keel damage in living hens to inform the selection of hens to reduce keel bone damage. This work is also examining if breeding programs for improved keel health need to vary depending upon poultry housing design. The consortium’s work also is exploring the relationship of age at puberty on bone strength by manipulating diet and light to delay puberty and measuring the resulting effects on bone quality. Finally, they are determining whether a diet that produces lower homocysteine, an amino acid, increases collagen strength and improves keel quality.

Developing Tomato Lines Resistant to Broomrape, a Critical World-wide Pest 

Year Awarded  2023

FFAR award amount   $232,728

Total award amount   $465,456

Location   Davis, CA

Program   Seeding Solutions

Matching Funders   University of California, Davis

Grantee Institution   University of California, Davis

Branched broomrape is a parasitic weed threatening the United States’ supply of processing tomatoes. The weed can completely decimate tomato crops, creating significant economic losses for growers. Current processing tomato varieties are not resistant to the weed. University of California, Davis researchers are developing a tomato variety with branched broomrape resistance.