Tag: Almond Hulls

  • Almond Hulls Receive GRAS Status from FDA

    Almond hulls were recently given Generally Recognized as Safe (GRAS) status by the FDA. This designation opens the door for them to be used in a variety of different food products, as they are high in fiber and phytonutrients. Almond Board of California CEO and President Clarice Turner spoke with Matthew Malcolm at California Ag Network to discuss this recent breakthrough and what it means for the almond industry. Watch this quick video and learn more in Pacific Nut Producer Magazine.

  • Almond Hulls Get Gras Status

    For decades, almond hulls have had a specific job — to be a low-cost animal feed ingredient. But a recent milestone could open the door to a different future for this familiar byproduct. Based on an extensive evaluation, almond hull powder (AHP) has been confirmed as Generally Recognized as Safe (GRAS) for use in human food, following a review by an independent expert panel.

    That may sound technical, but for almond growers, this decision has the potential to reshape the conversation around almond hull value.

    First, What Does ‘GRAS’ Actually Mean?

    In plain terms, GRAS status means that qualified experts agree that a food ingredient is safe for people to eat, based on scientific evidence and a long list of safety data. It’s a designation recognized by the U.S. Food and Drug Administration and is a key factor for any ingredient that wants to enter the human food supply.

    In this case, an independent expert panel reviewed a comprehensive dossier, more than 180 pages, covering how Almond Hull Powder is made, safety for human consumption, how much people might eat and what happens when they do. The panel concluded that AHP is safe for its intended uses in food. The dossier and expert panel findings are finalized and submitted to the FDA.

    Why Almond Hulls?

    Almond hulls make up a significant share of the almond fruit by weight, yet historically they’ve delivered modest returns to growers. Most hulls end up in livestock rations, where they’re valued for fiber and energy, but prices can be volatile and demand is tied closely to dairy and feed markets.

    GRAS status changes the playing field by allowing almond hulls, when processed into Almond Hull Powder, to be used in human food products. According to the expert panel review, AHP can be used in a wide range of foods, including baked goods, cereals, beverages, bars and nutritional products. That doesn’t mean hulls suddenly replace almonds on the grocery shelf. But it does mean there is a pathway where hulls can move beyond feed and into higher-value food ingredient markets.

    What This Could Mean for the Hull Market

    GRAS status doesn’t instantly create new demand, but it removes a major barrier. The expert review means food companies can now seriously explore AHP as an ingredient without having to clear safety hurdles themselves. That opens the door to:

    • New markets beyond traditional feed channels
    • Higher-value applications tied to human nutrition and functional foods
    • More diversified demand, reducing reliance on any single end use

    The announcement also points to the next steps already underway, including finalizing processing parameters and external engagement with food manufacturers and partners.

    For growers, this matters because diversified demand is often the first step toward improved and more stable byproduct economics.

    The Bottom Line for Growers

    Almond Hull Powder earning GRAS status doesn’t change the hull market overnight. But it does something just as important; it expands what’s possible.

    By clearing the scientific and regulatory considerations for human food use, almond hulls move from being only a feed ingredient to becoming a potential food ingredient as well. Over time, that shift could translate into new demand streams, new partnerships, and a stronger value proposition for growers.

    For an industry always looking to make the most of every pound —Story contributed by the Almond Board of California

  • 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

  • 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.”

  • Getting California Almond Hulls into China’s Animal Feed Market

    The trade dispute with China has proved challenging for tree nut exports into China, but the California almond industry has even more to provide the Chinese market — almond hulls.  Almond hulls have long been used on California dairies, but the potential to reach China’s animal feed market brings promising opportunity and value for this byproduct. Watch this brief interview with Keith Schneller, Trade Policy Specialist for the Almond Board of California, as he shares the progress on getting approval to start shipping hulls. Read more about it in Pacific Nut Producer Magazine.
    Please thank this video’s sponsor Trece for their industry support.
  • Opportunities for Almond Hulls in Asian Feed Markets

    The California almond industry has grown tremendously in recent years, and so has the supply of almond byproducts such as hulls and shells.  While industry groups and companies are working to expand the consumer markets internationally for California almonds, some are also at work striving to expand the value and uses for almond byproducts. Almond hulls have commonly been used in animal feed locally, but what we they could also be profitably marketed across the sea where greater demand lies. Watch this brief video with Joe Onorato  who represents the first company that has shipped almond hulls to China, and read more about it in Pacific Nut Producer Magazine.
    Please thank this video’s sponsor Suterra for their industry support.
  • Black Soldier Fly to Support Almond Industry

    With a growing almond industry and an increasing supply of coproducts, such as hulls and shells, researchers are searching for new and resourceful ways of utilizing the extra material as an asset.  Breaking these coproducts down to a form that may be utilized back in the soil or as a feed supplement has been a challenge in the past; but this may all change with the introduction of a new helpful fly on the block.  Watch this brief interview with Eric Tilton from Hermetia Pro Inc. regarding this Black Soldier Fly, and read more about it in Pacific Nut Producer Magazine.

     

    Please thank our sponsor Duarte Nursery for their industry support by visiting them at their booth at the following November Events: Tree & Vine Expo, the Grape, Nut & Tree Fruit Expo & Blue Diamond Growers Annual Membership Meeting.

  • Successful Hullsplit Requires Thoughtful Irrigation, Nutrient Management

    While the onset of hullsplit signals that harvest season is near, it also marks the start of an unwelcomed orchard guest: hull rot. Almond hulls are susceptible to hull rot fungi from the beginning of hullsplit until the hulls dry, which is typically a month long, though the period may vary depending on fertilization and irrigation. Successful hull rot control is based upon effective strategic deficit irrigation and nitrogen management.

    Strategic Deficit Irrigation

    Strategic Deficit Irrigation (SDI) is the practice of stressing almond trees at specific crop stages to reduce water use without impacting crop productivity. By managing SDI, growers can reduce hull rot by 60–90% and experience a more uniform hullsplit and earlier harvest. These factors may contribute to less crop damage from weather, late-season NOW flights and aflatoxin contamination.

    The target period for stressing trees is from the start of hullsplit through 90% hullsplit, a period of about two weeks. The most accurate way to implement SDI is to use a pressure chamber to track and maintain slight tree water stress levels, between -14 bars and -18 bars, depending on the weather. Watch a short video from the Almond Board of California (ABC) about how to use a pressure chamber here.

    Growers who do not rely on pressure chambers, particularly those with a history of hull rot and a visual baseline from which plant stress can be observed, may achieve similar results by irrigating at 50% of normal tree demand, using crop evapotranspiration (ETc) calculations during hullsplit. More information about this strategy is available at the UC Almond Doctor’s website.

    Hullsplit typically occurs at the beginning of July in the early growing seasons and spreads to later growing seasons accordingly. However, onset of hullsplit can vary according to orchard conditions, with stress levels varying based on soil type and other factors. In shallow soils where trees may dry quickly, growers should initiate stress when blanks start to split, usually about a week before the onset of hullsplit. On deeper, well-drained soils, it can take up to 20-to-30 days to reach mild-to-moderate stress levels. In this case, growers may want to use the UC Almond Hull Split Prediction Model to determine when to initiate water stress. More information about the fundamentals of strategic deficit irrigation are explained in this short ABC video here.

    Nitrogen Management

    Almond Board-funded research has found that excessive nitrogen increases incidences of hull rot. It is critical that a proper nitrogen budgeting plan is in place for the growing season to ensure that only the necessary amount of nitrogen is applied. It is important to follow the nitrogen budgeting plan throughout the growing season, which is a function of crop load.

  • Biochar as an Alternative Use for Almond Biomass

    With record acreage of almonds coming into production in California, hullers and processors are going to need to find new/alternative uses for hulls & shells. The Almond Alliance is working with the Almond Board of California to come up with sustainable alternatives including almond biochar to increase the water holding capacity and bring nutrients back into the soil. Watch this video interview of Karen Lapsley from the Almond Board with California Ag Network as she talks about biochar and its potential for the industry.

    Sponsored By:

    Calagnet & YARA