Tag: Agricultural Technology

  • Turning Food Scraps into Opportunities

    For every juicy tomato or crunchy almond California grows, there’s a pile of pulp, hulls or scraps that often goes to waste. A new online tool, created by University of California, Davis researchers, tracks those agricultural byproducts aiming to find innovative ways to put them to use.

    The Byproduct Database, maintained by the AI Institute for Next Generation Food Systems, is an ongoing research project that includes a catalog of byproducts like fruit skins and nut shells, and potential ways to reuse them across different industries.

    Edward “Ned” Spang, principal investigator and associate professor with the Department of Food Science and Technology, said about one third of the food produced worldwide, doesn’t get eaten. The database consolidates information about food waste in one place, detailing what the various leftovers are made of and where they’re available in the state. Spang believes it could help guide decisions on reducing waste by potentially turning these materials into new products for food, cosmetics or pharmaceutical industries.

    “In the food production space, there’s a lot of edible material, or potentially valuable material, that’s been overlooked for a long time as waste,” Spang said. “So, the questions we are trying to understand include: ‘How much of this material is out there? What is it composed of? Where is it? When is it available?’”

    Tomatoes, almonds, pistachios and pomegranates

    The pilot phase of the database currently features four major crops: tomatoes, almonds, pistachios and pomegranates. As the research team continues to gather data, they will update the site to include other crops and byproducts, including wine grapes, stone fruits and citrus. In collaboration with Ilias Tagkopoulos with the Department of Computer Science, Spang is looking into developing and applying AI tools to expand the site faster and with less manual work.

    For pistachios, the website illustrates that the largest byproduct is the hull, which is often discarded, and that undersized pistachios could be a valuable resource if there was a market for it. The website helps outline the various byproducts for potential upcycling, where leftovers are transformed into new ingredients. Local companies are already developing new products using materials such as brewers’ spent grain (a byproduct of beer production), okara (a fibrous byproduct from soymilk production) and grape pomace (leftovers from winemaking).

    Researchers are looking at where food gets lost in the field and at the processing plant. With tomatoes, some get damaged on the vine, others get tossed out for not meeting quality standards. Spang said those leftovers, or side streams, are opportunities for upcycling.

    “It’s a material that’s already been cultivated, harvested and processed, so anything you do that’s economically productive means that all the resources embedded in that material, like fertilizer, water and energy, were not wasted in vain,” said Spang, who also directs the Robert Mondavi Institute of Wine and Food Science. “It is a real win-win opportunity.”

    Finding new uses

    The skin and pulp of a tomato contain lycopene, an antioxidant known for its health benefits. Users of the website can visualize where these leftover tomato parts, and its valuable lycopene, are found, helping to imagine new ways to make use of this healthy compound.

    “We expect our primary user to be entrepreneurs who are looking for new business models in upcycling, or who might have an advanced extraction technology to derive value from some of these overlooked materials,” Spang explained. “But producers and growers would also benefit as new revenue streams deliver value up and down the food supply chain.”

    The database will soon include cost estimates and economic variables to help users make more informed decisions. This will allow them to assess factors like how much lycopene is in a byproduct, its value per milligram and the costs associated with extracting it.

    New space for agricultural innovation on campus

    The research project is funded by a grant from the Resnick Agricultural Innovation Research Fund, created by a $50 million gift by Lynda and Stewart Resnick, co-owners of The Wonderful Company. Part of that donation also establishes the Resnick Center for Agricultural Innovation, currently under construction on campus, that will include a large space for biomass staging and extraction, a process to pull valuable compounds from fruits, vegetables and grain residues.

    Food waste happens, but this work is helping build a food system that wastes less and supports sustainability, which Spang hopes will excite everyone.

    “We have to be a little more creative with our food system,” he said. “We can make our current food system more productive by investigating novel upcycling ideas and processing systems that create more revenue for producers and hopefully deliver more value to consumers as well.” — By Tiffany Dobbyn, College of Agricultural and Environmental Sciences, UC Davis, tadobbyn@ucdavis.edu

  • New Technology is Helping Nut Growers Spray More Effectively – Especially at Hull Split

    SPONSORED CONTENT

    In California’s Central Valley, timing and precision are everything—especially during Hull Split, the most critical spray window of the season for nut growers. With the pressure on and no room for error, visibility into spray performance can make the difference between a successful season and significant crop losses.

    That’s where Fieldin comes in.

    A Fresno-based company with over a decade of experience serving nut growers, Fieldin has established itself as the gold standard in smart farm operations. With more than 300,000 acres of nut orchards under management, Fieldin’s platform helps growers streamline everything from spraying to mowing and harvesting, delivering actionable insights that improve efficiency and reduce costly mistakes.

    Now, Fieldin is expanding its value with cutting-edge spray monitoring technology, just in time for Hull Split.

    Introducing Remote Flow Monitoring

    Through a new partnership with ARAG and PAS, Fieldin now offers real-time flow monitoring that gives growers precise, in-the-moment visibility into their spray operations. This technology eliminates the guesswork around what was applied and how much, allowing farm managers to make data-driven adjustments on the fly.

    “The Hull Split spray is the most important of the season,” says Iftach Birger, Co-Founder and COO of Fieldin. “And when poor coverage means poor control, the risk of significant losses is real.”

    Research shows that three factors drive Hull Split spray performance: spray speed, GPA (gallons per acre), and canopy size. With Fieldin’s Remote Flow Monitoring, growers gain live visibility into both spray speed and GPA—the two most critical metrics for Hull Split accuracy—without needing to replace existing equipment or disrupt current workflows.

    Real-Time Visibility, Real-World Results

    Many growers rely on maps or assumptions to confirm their sprays. But these can be deceiving. In one case, Fieldin’s coverage maps indicated a block was fully treated—but flow data revealed the spray rate dropped near the end, leaving key sections under-treated. In another case, a 20% drop in application rate went undetected until Fieldin’s flow monitoring flagged it in real time.

    Without this technology, those issues would have gone unnoticed until it was too late, leading to reduced pest control, weakened nut quality, and potentially a second costly pass.

    Fieldin’s solution changes that. With Remote Flow Monitoring, managers can:

    • Verify coverage and GPA targets in real time

    • Streamline the calibration process

    • Identify underperforming machines or crews (e.g., RPM issues or clogged nozzles)

    • Avoid missed applications and unnecessary re-sprays

    • Protect yield, quality, and long-term resistance management

    Easy to Adopt, Built for the Field

    Best of all, the system integrates seamlessly with most sprayers and is quick to install. No major equipment changes are required, and Fieldin’s experienced team handles setup and onboarding to ensure success from day one.

    Though designed with Hull Split in mind, Remote Flow Monitoring delivers value across every spray event—from post-harvest cleanups to nutrient applications—making it a lasting investment in operational excellence.

    “We built this for real-world challenges,” Birger explains. “Growers need control and clarity, not complexity. That’s what we deliver.”

    Special Promotion for Hull Split Season

    To help new customers prepare for the Hull Split window, Fieldin is offering limited-time introductory pricing for its Remote Flow Monitoring solution.

    “This tool pays for itself quickly when you factor in the cost of a missed spray,” Birger says. “We’re here to make sure growers don’t have to take that risk.”

    To learn more or schedule a demo, visit fieldin.com.

    Follow Fieldin for more updates and in-season spray management tips:
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  • Are Autonomous Self-Driving Tractors Legal in California?

    As California’s agricultural industries progress towards a more sustainable future with new technologies and innovations, current Cal OSHA regulations (unless changed) may hinder their progress, particularly with regard to autonomous or self-driving tractors.  Watch this brief video with Michael Miiller from the California Association of Winegrape Growers as he explains.
     
    Please thank this video’s sponsor Suterra for their industry support.