Tag: agricultural innovation

  • Hillari Bynum Promoted to Senior Position at DFA of California and Safe Food Alliance

    DFA of California and Safe Food Alliance recently announced the promotion of Hillari Bynum to Senior Director, Growth and Innovation. In this newly expanded leadership role, Hillari will oversee the organization’s growth-focused functions, including business development, marketing, customer experience, technology enablement and innovation initiatives.

    “Hillari has consistently demonstrated the ability to look beyond traditional marketing and identify opportunities to strengthen our organization. From relaunching Safe Food California to leading technology initiatives, she has helped modernize how we serve our members and customers,” said Brendan O’Donnell, President and CEO of DFA of California and Safe Food Alliance.

    Reflecting on her new role, Hillari shared, “By combining three teams into one cohesive organization with two clear mandates, we’re creating a stronger, more aligned team that can move faster, innovate more effectively, and deliver greater value to our customers and
    members.”

  • UC Davis Opens Resnick Center for Agricultural Innovation

    The University of California, Davis, celebrated the grand opening of the Resnick Center for Agricultural Innovation.

    Made possible by philanthropic support, including a lead transformative gift from Lynda and Stewart Resnick, through their foundation in 2022, the new center is housed within the UC Davis College of Agricultural and Environmental Sciences. The center builds on the university’s longstanding global leadership in agriculture with a focus on translating research into real-world impact.

    “This center represents the best of UC Davis, uniting our strengths in agriculture, engineering and environmental sciences to address challenges facing communities across California and around the world,” said Chancellor Gary S. May. “We are deeply grateful to Lynda and Stewart for their partnership and support, which expand research opportunities and drive solutions that will shape the future of agriculture.”

    Students, faculty, staff, donors and industry partners joined university leaders May 19 to celebrate the opening with a ribbon-cutting ceremony, open house and tours.

    “Lynda and I have always believed that growing more food with fewer resources is one of the most important things we can do,” said Stewart Resnick, chairman of The Wonderful Company. “UC Davis is the leading ag university in the country, and we all have a stake in giving them everything they need to continue leading on this important work. This center will train the next generation, drive practical solutions, and get this urgently needed progress to growers and communities around the world.”

    The Resnick Center reflects a broader commitment from the couple and their foundation, whose $50 million gift to UC Davis in 2022 included $40 million for the facility and $10 million to establish the Resnick Agricultural Innovation Research Fund, advancing research into sustainable uses for agricultural byproducts. Stewart Resnick also serves on the Chancellor’s Board of Advisors, underscoring the Resnicks’ longstanding commitment to the university and its mission.

    The 34,000-square-foot facility includes hands-on learning in an innovative and immersive environment that connects education to research and discovery. Experts across disciplines will work in labs equipped with robotics, sensors, data science and artificial intelligence — technologies transforming how agriculture is managed and scaled. Research efforts will focus on making agricultural systems more resilient, developing advanced technologies, maximizing sustainability through water and energy efficiencies, and expanding access to nutritious food.

    “The new Resnick Center strengthens our ability to integrate research, teaching and extension in ways that directly serve California and beyond,” said Ashley M. Stokes, dean of the College of Agricultural and Environmental Sciences. “It creates a dynamic environment where discovery, learning and community engagement come together — accelerating innovation, deepening partnerships with industry, and translating knowledge into real-world solutions. The design and flexibility of the space allow us to reimagine ideas and respond with agility to the evolving needs of our communities.”

    The center will incorporate specialized labs and equipment that bolster efforts to transform agricultural byproducts into useable materials. This work is supported by the annual competitive research grants funded by the Resnicks, through their foundation.

    Over the past three years, UC Davis researchers have explored how agricultural waste — including discarded hulls and shells from California’s iconic specialty crops like almonds, pistachios and pomegranates — can be repurposed as soil amendments, sustainable food products and low-cost industrial materials. The new facility will allow for widespread exploration of even more agricultural crops and potential uses.

    In addition to experiential learning opportunities, the facility houses The Wonderful Scholar Center, a student success hub that offers academic and career advising for more than 50 students who are attending UC Davis on a Wonderful Scholarship. With a commitment to supporting first-generation students, the Resnicks, their foundations and The Wonderful Company have awarded over 3,500 scholarships of up to $40,000, providing mentorship and tutoring support with dedicated coaches, and equipping students with the tools to succeed in college and beyond.

    “As a first-generation college student who grew up around agriculture, I came to UC Davis with a deep appreciation of what farming families are up against. The Wonderful Scholarship brought me here, and this center has shown me how research, innovation, and policy all have to work together to change the future of agriculture,” said Jose Gomez, Wonderful Scholar and second-year political science major. “What the Resnicks have built isn’t just a building. It’s a bridge across disciplines — driving research, innovation, and people forward. I intend to spend my life serving others and advancing solutions that strengthen our communities.”

    “Today marks the beginning of a new era,” Chancellor May said. “The discoveries made inside this building will extend into farms, fields, and communities around the globe, shaping a more resilient and sustainable future for agriculture.” — Story by Courtney Tompkins, UC Davis

  • USDA NIFA Launches Grants Opportunity to Combat Emerging Ag Threats

    The U.S. Department of Agriculture’s National Institute of Food and Agriculture (NIFA) announces the launch of a new competitive grants program aimed at rapidly addressing emerging and re-emerging pest and disease threats across the nation’s food and agricultural systems.

    The grants program, Rapid Response to Emerging and Re-emerging Pest and Disease Events Across Food and Agricultural Systems, is designed to deploy timely, science-based solutions to protect agricultural productivity, ecosystem health, and food security.

    “Invasive and emerging pests and diseases can devastate crops, livestock, and ecosystems, disrupt supply chains and threaten food security,” said NIFA Director Dr. Jaye Hamby. “This program empowers researchers and Extension professionals to act quickly, delivering practical solutions that safeguard our agricultural communities and the nation’s food supply.”

    This program is part of NIFA’s Agriculture and Food Research Initiative (AFRI), designed to improve plant and animal production and sustainability, and human and environmental health. AFRI is the nation’s leading and largest competitive grants program for agricultural sciences. These grants are available to eligible colleges, universities, and other research organizations.   

    With a maximum award of $500,000 and a grant duration of 12 to 24 months, the program supports grants for research, Extension, or integrated projects. Applications are accepted on a continuous basis, within 180 days of a qualifying pest or disease event, ensuring swift mobilization of resources when threats arise.

    Applications must directly address the effects associated with the emergence or re-emergence within the last 180 days of pests and/or disease in animal and/or plant production systems or within the food supply, and one or more of the following emphasis areas: One Health, plant and animal health, and ecosystem health.

    Funded projects will focus on applied research and Extension and outreach activities that generate actionable knowledge and tools. These may include:

    • Rapid understanding of pest/pathogen ecology, epidemiology, and immunology.
    • Development and validation of diagnostics, vaccines, and control methods.
    • Communication strategies, training programs, and best practices for mitigation.
    • Technologies and protocols for detection, management, and prevention.

    To ensure impact, projects must implement or develop at least one deliverable within six months of award receipt, with all activities completed within the grant period. Proposals are encouraged to integrate biological and social sciences, engage public-private partnerships, and support small- and medium-sized farms and ranches.

    “This program reflects USDA’s commitment to proactive, science-driven responses to agricultural threats,” Hamby said. “By supporting rapid innovation and collaboration, we’re helping communities stay resilient in the face of evolving challenges.”

    The program also welcomes proposals that address ecosystem health, including strategies to mitigate the environmental impacts of pests and diseases affecting plants, animals, and pollinators. Projects that incorporate community development, youth development, and 4-H are also eligible, provided they align with the program’s emphasis areas.

    Applicants are encouraged to coordinate efforts across institutions and regions, and to contact program staff at afri-rapidresponse@usda.gov with questions regarding project fit. While this program is designed for short-term, rapid response efforts, longer-term projects may be better suited for other AFRI program area priorities such as Agricultural Biosecurity, Diseases of Agricultural Animals, or Food Safety and Defense.

    For more information, visit nifa.usda.gov or email afri-rapidresponse@usda.gov. — By the USDA National Institute of Food and Agriculture

  • AI Tool to Help Farmers Measure Real-Time Crop Health from the Field

    Leaf Monitor, a new mobile tool backed by artificial intelligence and predictive modeling, could revolutionize how farmers monitor crops and make decisions by providing real-time nutrition and leaf trait information in the field.

    “Having this information is very valuable for the farmers,” said Alireza Pourreza, associate professor of Cooperative Extension and director of the Digital Agriculture Laboratory in the Department of Biological and Agricultural Engineering at the University of California, Davis. “In five seconds, they can have a sense of how much nutrition they have in a leaf.”

    Development of the AI model was funded by the U.S. Department of Agriculture’s National Institute of Food and Agriculture’s HiRes Vineyard Nutrition multistate project and its Animal and Plant Health Inspection Service, as well as the California Table Grape Commission.

    Maha Afifi, director of viticulture research at the California Table Grape Commission, said the tool could be a game changer for the table grape industry if it leads to faster decision-making about fertilizer use. The right amount typically leads to healthier vines that produce more grapes with optimal size, weight and color.

    “The evaluation of vine nutrient status is one of our top priorities,” Afifi said. “At the same time, exploring new technology tools like this project is a high priority for us because they will be important to the future of the table grape industry.”

    Field testing

    The Leaf Monitor tool uses a handheld spectrometer to measure leaf reflectance beyond the range of light visible to the human eye.

    Once a leaf is scanned, its spectral data is uploaded to a cloud-based machine learning system designed to predict leaf traits and nutrient content. This algorithm was developed and trained by the Digital Agriculture Laboratory over five years using a dataset of thousands of leaf samples collected from California’s specialty crops, primarily grapevines and almonds. The samples were chemically analyzed to determine nutrient levels and structural leaf traits, providing the data needed to build an accurate prediction model.

    “Nutrient deficiencies in plants often go unnoticed until late in the season, by which point the damage is already irreversible,” said graduate student Parastoo Farajpoor, who is running the project. “This is why early detection is essential. Spectrometry provides a rapid and reliable way to identify these deficiencies before visible symptoms appear.”

    After a recent demonstration, Bulleseye Farms Irrigation Manager Geoff Klein said the tool could help save money and improve yields. Bullseye grows walnuts, pistachios, tomatoes, corn, wheat, rice and sunflowers in Yolo and Solano counties.

    Tailored crop management

    Currently, farmers typically take leaf samples, dry them, grind them up and send the samples off to a lab for testing, which can take up to two weeks to return results. Bullseye samples leaf tissues about three times a year.

    “Right now, it doesn’t really make sense to go out and take tissues in every single corner just because it’s expensive,” Klein said. “It’d be really cool if I could just walk out there and test a couple of different places.”

    The Leaf Monitor tool helps farmers tailor management decisions to specific areas rather than an entire field. Calibrating fertilizer use to real-time data can prevent overuse and nitrogen runoff, a financial and environmental challenge that many growers face.

    “I feel like there’s a lot of times we do need to put less [fertilizer] on, where we end up putting more, because that’s what the nitrogen removal formula says,” Klein said. “But with this app we can use less because we know the actual conditions at the time. I think it opens a lot of doors in terms of getting data back in real time and also utilizing the level of control we have with the data.”

    The app can also aggregate the scans and map out spatial patterns over a large area.

    “What we know is every field has variability that is not necessarily visible to the farmer’s eye,” Pourreza said.

    The prototype Leaf Monitor tool is free and included in a set of tools that can be downloaded on the Digital Agriculture Laboratory website. A web-based version of the tool will follow while the team continues to feed new data into the algorithm to refine the predictions. On average, it achieves about 65% accuracy across all traits, with predictions for certain nutrients, such as nitrogen and phosphorus, performing better than the overall average. Users will need to pair it with a spectrometer.

    “We need to produce more food while using less resources so we need to have some kind of monitoring system to give us precise and accurate feedback on our management practice,” Pourreza said. “This technology is growing very fast.” — By Emily Dooley, UC Davis

  • Commercializing Almond Hulls as Food Ingredients

    Almond Board of California — Historically used for dairy cattle feed, almond hulls have had a consistent place in the animal nutrition space. However, a declining dairy herd, in combination with hulls being traded below their production cost, has propelled the industry and the Almond Board of California (ABC) to think about alternative revenue-generating opportunities.

    Helping lead this charge is ABC’s Biomass Working Group, formed in 2017 to explore new applications for almond co-products.

    “This biomass working group is where business meets science,” said Michael Kelley, chairman of the committee and president of Central California Almond Growers Association (CCAGA). “We have become exceedingly appreciative of the ideas and the potential for the commercialization of products using almond hulls.”

    Nutrition Potential

    One area almond hulls have shown strong potential for is human food products. Because of their high fiber content, natural sugars, phytochemicals, minerals, and processing versatility, they offer multiple benefits in the value-added ingredients food space.

    Being that they make up 50% of the almond fruit, they are also abundant in California, creating a reliable and readily available supply for large-scale product development.

    While some may question their safety for human consumption, there are positive indicators that prove almond hulls can meet food-grade quality standards. ABC Associate Director of Food Research and Technology, Guangwei Huang, noted that almond hulls have long been used safely in livestock feed, with no negative effects on animal health or performance. Studies have also shown that pesticide residue and toxicity exposure are not a concern.

    To explore these possibilities further, ABC partnered with Mattson, a product innovation firm, to develop samples of what could be done with hulls.

    These included a high-fiber bar made with 15% almond hulls, delivering five grams of fiber per serving, and a coffee beverage crafted from coarse-ground, roasted hulls. When added to coffee, almond hull powder helped reduce bitterness and enhanced sweetness. In baked goods like bread, it boosted both fiber and phytochemical content.

    Opportunity in “Upcycled” Markets

    Another advantage almond hulls offer is that by adding just 10% or more of almond hull powder to a product, it can qualify for a new third-party “upcycled” certification. While “upcycling” is a relatively new term, it’s become increasingly important to consumers concerned about food waste, noted Daniel Kurzrock, founder and CEO of Upcycled Foods.

    After working with upcycled ingredients across various commodities, Kurzrock said he’s seen firsthand the wide-ranging benefits. These include improved sustainability and circularity, the creation of new revenue streams, reduced disposal costs and stronger alignment with shifting consumer values.

    “The almond industry is not alone in seeing this potential,” he said. “There’s profit potential for every aspect of the stakeholder chain if we’re able to create uses that are solving problems for companies that buy ingredients.”

    Because the end-market for almond hulls is still being widely explored, he also suggested that at this stage in development, it’s important to initiate customer conversations before deciding what to invest in.

    “An approach that we find to be working with other materials is doing a pilot to produce some quantity of viable hulls that can go to a miller or a secondary processor to start those customer conversations,” he said.

    Steps for Commercialization

    While it’s not realistic to expect the hulls to be process-ready when leaving the huller/sheller, Huang said efforts to clean and improve their quality can still make a significant impact.

    “When the time comes, the industry needs to set minimal specifications or quality requirements for almond hulls for food uses,” Huang said. “We are trying to minimize foreign material, and most importantly, we need the involvement and attention of stakeholders. We’re not expecting the huller/seller to get hulls to the ready-to-process stage, but they can minimize those foreign materials down to less than 5%.”

    The industry must also complete a GRAS (Generally Recognized As Safe) assessment for human consumption, a requirement mandated by the Food and Drug Administration since hulls haven’t previously been used as a food ingredient. This assessment  is expected to be completed by late 2025, Huang said.

    Innovations in Processing

    Several companies in the almond industry are already investing in hull-cleaning systems to ensure they are ready for when almond hulls receive food-safe approval. One of those pioneer companies is Cortez Growers Association.

    Recognizing almond hulls as a potential revenue stream, Cortez implemented a cleaning system to remove unwanted materials – sticks, shells, and almond meats – that typically end up in the hull pile. By separating these components, they could sell the almond meats as hash, a “refreshing benefit” to add value to what was once considered waste, said general manager, Dave Thiel.

    Other processors are also refining their methods. Corbin Sturdivan of Wilkey Industries explained that current hull cleaning systems include an aspirator to remove the shell from the hull and a detwigger deck to remove sticks from the hulls.

    “While this has worked for many years to reduce the fiber content for dairy feed, there is more refinement that we can do with this system by introducing additional screening and additional aspiration,” Sturdivan said.

    Through their trials with ABC, Sturdivan and his team discovered that by adding a screen to sift through the hulls, they could be better classified and ranked.

    “We would de-twig the product; it would be screened, and the screen would sift out all of the fines from the hulls,” he said. “What is left over is what we would call scalped hulls, and this is your larger, good material created from the early stages of hulling.”

    From their observation, Wilkey Industries also found that 1 to 1.3% of total hull weight can actually be recoverable kernel.

    “That translates to roughly 3% of your kernel production that is actually sitting in the hull pile,” he said. “So, by integrating a screen and some additional aspiration, not only can we clean the hulls, but we can also reclaim those kernels and hash that have much higher value to be sold instead of letting them go to dairy feed uses.”

    Additional Sorting Techniques

    As cleaning technologies continue to advance, innovations in color sorting are emerging as a key tool for preparing almond hulls for food-grade applications. The team at Chandler Automation has spent time working on this, and the initial models have been successful at “creating pure hull piles in one pass,” said CEO, Sean Chandler.

    More research is needed to determine where this best fits in the manufacturing process – be it at the huller, processor, or a separate site and how it will be financially feasible.

    “We have to do more research on our side to see the best way to mechanically clean hulls, mechanically feed it, and mechanically pass it through our systems because the technology is there to create that pure, premium hull,” he said.

    Looking Ahead

    As ABC continues to refine its strategy for marketing almond hulls as a food ingredient, the industry is taking proactive measures to position itself for success, and that starts with collaboration among all players involved.

    “We are about to begin a new journey to generate more revenue from almond hulls,” Huang concluded. “It will take a while and more effort to develop the market and demand, but if you are interested in creating more value out of almond hulls, many of us can work together to shorten the process.”