Category: Technology

  • Turning Waste into Energy

    Secretary Ross Addresses National Renderers Association

    If it were up to her, CDFA Secretary Karen Ross would rather we all stopped using the word “waste.” That’s what she told the National Renderers Association last week at their conference in Orange County.

    When more than 62 billion pounds of animal by-products are converted annually into usable commodities such as animal feed, biofuels, fertilizers, soaps, and paints, that’s no longer “waste,” that’s a sustainable livestock and meat industry. Renderers play a critical role to agriculture by recycling fallen animals to protect the health of our livestock populations, public health, and the environment. Renderers also provide a vital service to the restaurant sector by converting used cooking oil into biodiesel.

    When 75 percent of California’s biodiesel production comes from used cooking oil, that’s no longer primarily a “waste” product – it’s an energy product. And when those diesel-substitute biofuels also provide significant greenhouse gas reductions, that’s not “waste,” that’s climate change mitigation. There are more opportunities out there along these same lines – ways to get organic waste out of landfills and into productive, beneficial roles in our marketplace. And California’s Rendering Industry has a long history of leading that transformation.

  • California launches first dairy digester pipeline cluster

    CDFA Undersecretary Jenny Lester Moffitt congratulates Calgren and their partner dairies and contractors at the launch of the new digester cluster facility.

    California is proud to announce the state’s first dairy digester pipeline cluster. CDFA Undersecretary Jenny Lester Moffitt was on-hand this week for the launch of Calgren Renewable Fuels’ new facility, which partners with local dairies in the Pixley, California area.

    Eleven digesters, 22 miles of pipeline and 75,000 cows contribute to this interconnected system, which will collectively reduce an estimated of 1,867,651 metric tons of CO2 (equivalent) over 10 years. That’s equal to 399,925 passenger vehicles driven for 1 year or 201,668 homes’ electricity use for 1 year. Now that’s cow power.

    Touring the Calgren facility.

    The digesters and the cluster project were made possible in part by grants in 2017 and 2018 from CDFA’s Dairy Digester Research and Development Program totaling approximately $16 million, with an additional $17.5 million in matching funds provided by the dairies and Calgren.

  • Testing Your Product for Glyphosate

    Glyphosate: In the News

    Chances are you’ve been hearing a lot in the news recently about glyphosate, the active ingredient in the herbicide and plant growth regulator Roundup®.

    In early August, a jury awarded $289 million to a former groundskeeper who claimed that exposure to Roundup® caused his non-Hodgkin’s lymphoma. This heavily publicized case was quickly followed by a report from the Environmental Working Group (EWG), which found that 31 out of 45 of the conventionally grown cereals being tested “…had glyphosate levels higher than what EWG scientists consider protective of children’s health with an adequate margin of safety”.

    According to the EWG report, glyphosate levels in cereals must remain under 0.01 milligrams or a concentration of 160 ppb (part-per-billion). Levels above this benchmark standard were reported to cause increased health concerns for consumers.

    The EWG report authors reached a consumption limit of 0.01 milligrams per day by applying a 100x safety factor to California’s Proposition 65 No Significant Risk Level (NSRL) for glyphosate (1.1 mg/day). This NSRL under Prop. 65 itself represents a more than a 100x reduction from the acceptable daily intakes (ADIs) set by both the United States Environmental Protection Agency (EPA) and the World Health Organization (WHO) after their reviews of the toxicity data for glyphosate. In other words, the Environmental Working Group set a “safety limit” that was 10,000-fold below the risk-based limits set by EPA and WHO!

    The European Commission is famously cautious when it comes to setting pesticide residue limits. Even using the safe intake level set by the Commission – consuming 0.3 mg of glyphosate per kg of body weight per day-a person would have to weigh less than one-tenth of a pound to stay under the EWG benchmark.

    Studies such as the EWG report raise the anxiety level for consumers trying to feed their families a healthy diet. As a result, that concern is filtering up through retailors, meaning if it hasn’t already reached you, it will soon.  As with most regulatory issues in agriculture, preparation is key. One step is to consider testingfor glyphosate residues now so that you’re pre-armed with the data your customers will demand.

    What You Need to Know About Glyphosate Analysis

    The first thing to know about glyphosate testing is that, despite the fact that it is one of the most commonly used pesticides in the US (and the world), it is not included in general pesticide residue screens.  With modern techniques and instrumentation, a multi-residue screen can cover over 300 compounds, but the chemical nature of glyphosate (high polarity / water solubility) makes it distinct from the vast majority of commonly applied pesticides. That means a specialized test is needed to be able to detect it.

    The good news is that the specific formulation of glyphosate used (isopropylamine salt, sodium salt, etc.) does not affect the analysis needed.  It is, however, important to know the residue definition for your specific market and commodity. For instance, the residue definition for glyphosate in wheat for the US and the EU requires that you only measure the amount of glyphosate in the commodity.  Codex, on the other hand, requires that you also measure the amount of N-acetylglyphosate, which is a metabolite of glyphosate; Australia requires glyphosate, N-acetylglyphosate and AMPA (another metabolite).  Make sure the testing lab you use is measuring the correct compounds for your needs. 

    The last thing that’s important when testing for glyphosate is to make sure that the laboratory doing your testing has previously validated their method for your commodity or commodity group.  Many of the methods for glyphosate analysis, including the official EU QuPPE method, have not been validated for tree nuts, avocado, animal products or other high fat matrices. Safe Food Alliance offers glyphosate analysis for most agricultural commodities grown in California (including tree nuts); either by itself, or as part of our Polar Pesticide Screen, which also includes glufosinate, ethephon, paraquat, diquat, mepiquat, and chlormequat.

    For more information on the services Safe Food Alliance laboratory offers, contact Annette Magee at annettem@safefoodalliance.com.

    This article was written by Wiley Hall from the Safe Food Alliance.  https://safefoodalliance.com/newsletter/2018-09/testing-your-product-for-glyphosate/

  • New Technology to Irrigate More Precisely at Pine Ridge Vineyards

    Irrigating grapevines just got much easier for Gustavo Avina at Pine Ridge Vineyards in Napa Valley.  Utilizing new weather stations and tracking vine evapotranspiration rates has helped to simplify his job as vineyard manager and cover more ground.  Watch this brief video with Gustavo as he shares his experience, and read more about it in the coming issue of American Vineyard Magazine.

    Enjoy our Ag video news?  Be sure to let our sponsor Duarte Nursery know & thank them for their industry support!
  • Water-Smart Dairy: Farmers conserve and protect water using precision technologies

    More than 20 dairy farmers across California have been pioneering the use of subsurface drip irrigation to grow feed crops, including corn, wheat, and alfalfa. By working with innovative companies and non-governmental organizations, dairy farmers have helped take sustainable farming to the next level. They are reducing water use by 47 to 67% and improving groundwater protection. Their collective efforts have helped develop new tools for California dairy farmers to continue advancing nutrient and water management.

    California dairy farmers had already made great strides to increase their overall water-use-efficiency and on-farm water recycling, but in 2014 and 2015, two ground-breaking efforts began. One is led by Sustainable Conservation, and the other is known as The Alfalfa Project (TAP). Both projects are aimed at advancing further into the new frontier of subsurface drip irrigation. Today, with fast-approaching groundwater management regulations and the threat of significant decreases in both surface and groundwater availability, water conservation has never been more important, and these innovators are paving a sustainable path to follow.

    “As farmers, we know we have to rethink how we approach our practices given the realities of sustainability and the mandates that will come with new groundwater regulations,” said Stephen Maddox Sr. of Maddox Dairy. “What is critical is that we don’t inadvertently hurt our farms, our dairy and cattle industries, and our state’s critically important agricultural economy. We feed not just California, but our country and the entire world.”

    Farmers, environmental organizations, and innovative companies have been working side-by-side to proactively address the challenges that come with subsurface drip irrigation, including line clogs and rodent damage. As an added feat, Sustainable Conservation and irrigation technology company Netafim have developed a model for applying a mixture of water and dairy manure-water via subsurface drip irrigation. Four years later, the technology and management strategy have been refined and pilot-tested several times.

    Demonstration systems are now operating on three Central Valley dairy farms. The projects are funded by a $1.7 million United States Department of Agriculture, Natural Resource Conservation Service (NCRS) research grant. For silage corn, results have shown increased water-use efficiency (up to 67.7%), increased nitrogen-use efficiency (up to 161.9%), and increased crop yields (up to 21.1%). Results from the most-recent winter wheat crop have shown even greater success, but these numbers can vary greatly depending on annual rainfall.

    “We’re demonstrating that subsurface drip irrigation can be used across the Central Valley to save water, better protect groundwater, and boost crop yields,” said John Cardoza, project manager for Sustainable Conservation. “Dairy farmers continue to be very interested in implementing this type of farming practice.”

    The Alfalfa Project (TAP) started with seven farmers in 2015 and now has more than 20 farmers participating. By this fall, nearly 4,000 acres of alfalfa will be grown with subsurface drip irrigation. Achieving up to 47% water savings, TAP has saved more than 3.1 billion gallons of water over the last three years—enough to supply the annual water needs of 100,000 Californians. It is anticipated that an additional 1 billion gallons of water will be saved by the end of the 2018 growing season. While TAP does not currently include manure application, the program has also been testing a filter that would allow manure-water to be added to the drip lines.

    TAP continues to work toward an ambitious goal, converting 350,000 acres of alfalfa grown in the San Joaquin Valley from traditional flood or sprinkler irrigation to subsurface drip irrigation, paired with precision farming practices. Full project implementation would reduce water usage by more than 400 billion gallons of water annually. That’s enough water to supply the annual needs of more than 12 million Californians.

    “With our farmers facing multiple pressures to reduce their water usage significantly, The Alfalfa Project offers a unique path forward to help them not just manage their water use, but actually improve their yields and strengthen the health of their business,” said Tyler Bennett, founder of TAP.

    As demonstrated by Sustainable Conservation and TAP, subsurface drip irrigation shows great potential to reduce water use, improve yields, and boost economic and environmental sustainability. A key to this success is the element of precision. Subsurface drip irrigation delivers water directly to the plant’s roots. The use of additional precision technology helps ensure best results. This includes continual monitoring and reporting of soil moisture and crop growth, as well as strategic irrigation scheduling. Drones are used to monitor irrigation uniformity and crop growth, helping farmers achieve optimum water savings and crop yields.

    Both Sustainable Conservation and TAP are working to make these technologies practical for dairy farmers, despite current economic challenges and rising energy costs. Sustainable Conservation aims to continue working with NCRS to ultimately establish incentive funding to allow more dairies to implement manure-drip projects. TAP provides capital financing options for implementing drip irrigation and precision management technologies.

    There is a tremendous opportunity for public and private partners to help California dairy farmers invest in these significantly beneficial technologies. Through expanded adoption of subsurface drip irrigation, dairy families can advance water conservation and protection, while improving their economic sustainability and cost-effectively meeting regulatory requirements—further improving the environment we share and safe-guarding the long-term viability of family farms.

    California’s dairy farmers are leading the way for water-smart farming. Learn more about these efforts at the inaugural California Dairy Sustainability Summit , this November 47- 28, 2018 in Sacramento.

  • Drones in Ag Meeting: Technology, Laws & Regs

    Griswold LaSalle Law Firm is hosting an informational event about drones in the agriculture industry on August 1, at 6:00 p.m. The law firm is located at 111 E 7th Street, Hanford, CA, 93230.

    The event will cover drone technology; regulations and municipal ordinances; visual line of sight aircraft operation; and the permit process.

    For any questions or to RSVP, contact Lane Alves at (559) 584-6656 or alves@griswoldlasalle.com.

    See the Flyer Here.

  • 5 Tips for Using Livestock Scales Effectively for Weighing Animals

    There are numerous challenges when it comes to weighing animals. They may move about a lot or get nervous, agitated or anxious making it very difficult to weigh them accurately using the standard or conventional scales. This is where livestock scales come in handy. They weigh the animals with high accuracy and precision while overcoming the usual challenges.

    They are designed with weight average and have options that allow you to make sure that accurate measurement is obtained regardless of whether the animal was restless while on the machine or it was patient.

    5 Tips to Keep in Mind

    1. Choosing the right livestock scale

    The first step would be to identify your needs and determine what exactly you need from the livestock scales. Do you want to track the growth of the livestock by accessing the amount of feed provided to them and their weight gain or do you want to maximize your profits? There is no right or wrong way to choose the livestock scales. Your purchase decision must be based on your management goals, usage, kind of livestock you have, weighing goals, location and type of setup. Once you cross out all the questions, you can determine which scale would be the best choice for you.

    1. Determining Weighing Setup

    You can either choose between a permanent livestock scale or portable ones for weighing the livestock. A permanent scale weighing system is quite sturdy and reliable, and the load bars would be encased in concrete for safety. You will have to move the livestock near the setup in order to weigh them.

    On the other hand, portable scales would be ideal for weighing livestock at multiple locations. You can move the scale to different environments, thus increasing efficiency and productivity.

    If you use electronic scales that require AC power, then ensure that you place them strategically with an access to a dry and safe power outlet. The wire lengths should be minimum for safety reasons.

    1. Use a Stable Weighing Surface

    Balance is extremely essential while weighing. You must have a stable surface while weighing the livestock. If the surface is unstable, it will cause weighing inaccuracies and it will be dangerous for the livestock moving in and out of the scales. There is no need to level and flat the surface totally but ensure that it is firm enough to hold and balance the livestock when they are being weighed.

    1. Check for Interferences

    Weighing scales are sensitive to interferences and cattle scales are no exception. You must keep the weighing platform free of obstructions like rocks, sticks and livestock manure as they will cause false readings on the scale.

    The load cells are situated below the weighing platform, so ensure that the cables running out of them are free of snags, twists or possible tangling with operating personnel or livestock. If there are any coiled cables, keep them out of reach to prevent accidental tangling and resulting discrepancies in the livestock scale readings.

    1. Minimize Stress and Livestock Shrinking

    Moving your livestock through different locations causes them to stress and leads to a phenomenon known as ‘shrinking’. This term refers to a weight loss in animals. You can minimize this problem by using portable scales. Moreover, it will minimize losses as well.

    You can keep a side table with all the necessary apparatus and accessories near the weighing chute to further lower the stress for animals as the amount of time they would need to spend on the scale platform would be drastically reduced.

    Evaluating these tips before weighing and measuring livestock will help minimize chute time. Additionally, you can collect accurate date which you can implement to improve efficiencies.

    Kevin Hill

    Author Bio:

    Kevin Hill heads the marketing efforts at Quality Scales Unlimited in Byron, CA. Besides his day job, he loves to write about the different types of scales and their importance in various industries. He also writes about how to care for and get optimized performance from different scales in different situations. He enjoys spending time with family and going on camping trips.

  • Four Tools to bring Navel Orangeworm Damage Down to Zero

    Special Thanks to This Video’s Sponsor

    Navel Orangeworm (NOW) continues to increase its presence in California right alongside the growing number of orchard hosts for this pest. Many nut growers experienced significant levels of NOW damage in their orchards last season, in spite of their ongoing pesticide spray programs. So what’s a grower to do? Watch this interview with Zach Raven from Keenan Farms, who shared his experience in utilizing several key tools in to control this pest and keep Aflatoxin levels down, going from 3% damage to nearly zero from one season to the next. Read more about it in Pacific Nut Producer Magazine.

    Enjoy our Ag video news?  Be sure to let our sponsor Duarte Nursery know & thank them for their industry support!
  • Seed Biology & Quality Course, UC Davis, June 19 – 21, 2018

    Delivering improved varieties and crop protection through high quality seed is a vital component of modern agricultural production systems. It is critical that seed producers and marketers have an understanding of the biological factors that contribute to the development and maintenance of seed health, vigor and viability, and how those qualities are measured. This course presents the scientific background and technical protocols for assessing, enhancing and maintaining high seed quality and updates participants on new information in these topics, including seed pathology and enhancement. The program targets quality assurance professionals in the seed industry, new employees, consultants, breeders and seed producers to extend and update their knowledge.

    2 RST credits available to class participants!

    This course is taught by widely respected academic and public sector researchers and industry executives.

    Core Instructors and guest lecturers include:

    Kent J. Bradford — Professor, Department of Plant Sciences and Director, Seed Biotechnology Center, UC Davis

    Phyllis Himmel — Director, Collaboration for Plant Pathogen Strain Identification (CPPSI)
    Samantha Thomas — Global Stewardship and Industry Affairs Lead, Monsanto
    Deborah Meyer — Program Supervisor of the Seed Science, Nematology, and Plant Pathology Laboratories at the California Department of Food and Agriculture Plant Pest Diagnostics Center

    Diane Krause — Plant Pathology Researcher, Monsanto
    Matt May — Seed Pathology Scientist, Monsanto
    Mike O’Leary — PhD Researcher, Department of Plant Pathology, UC Davis
    Pedro Bello — Research Associate, Department of Plant Sciences, Seed Biotechnology Center, UC Davis

    Riad Baalbaki — Senior Seed Botanist, Plant Pest Diagnostics Center, California Department of Food and Agriculture

    Course Topics

    • Seed development and maturation
    • Seed vigor and viability
    • Seed health and phytosanitation
    • Seed testing
    • Seed enhancement
    • Seed longevity and storage
    • Seed biotechnology
    • Seed pathology

    Lab Topics

    • Standardized seed health testing methods
    • Certification of labs for seed health testing
    • Testing treated vs. non-treated seed (fungicide, bactericide, biological, organic & disinfectant treatments)
    • Molecular vs. ‘biological’ seed health assays (indirect vs. direct assays)
    • Location of infection of seeds by plant pathogens
    • Sample size for seed health testing, seed sampling protocols

    For more information and registration about Seed Biology and Quality, please contact Julie Tillman (jtillman@ucdavis.edu)

    or online @ http://sbc.ucdavis.edu/Courses/Seed_Biology_and_Quality/

  • UC Davis Seed Biotechnology Center (SBC) Recognized for Education Efforts

    UC Davis SBC Education Director Rale Gjuric

    UC Davis is excited and proud to announce the placement of UC Davis SBC Education Director Rale Gjuric on EUROPEAN SEED’s list of highly influential people in 2017. In a time where seed companies worldwide are having trouble filling their breeding vacancies, Rale has been instrumental in spearheading education efforts that have trained numerous students. Under his leadership, the UC Davis Plant Breeding Academy has offered 15 classes worldwide since 2006 that were attended by 281 breeders from over 60 countries, making this organization the most recognized program of its kind.

    Read about Rale in European Seed article: http://sbc.ucdavis.edu/files/283367.pdf or full article at: http://www.european-seed.com/docs/books/volume-5/issue-2/inc/pdf/flipbook.pdf.

    The next class of the UC Davis Plant Breeding Academy in Davis starts in September 2018.  The registration is still open for the few remaining spots.  For more information on the UC Davis Plant Breeding Academy contact Joy Patterson at jpatterson@ucdavis.edu or visit http://pba.ucdavis.edu.

    The mission of the Seed Biotechnology Center (SBC) is to mobilize the research, educational and outreach resources of UC Davis in partnership with the seed and biotechnology industries to facilitate discovery and commercialization of new seed technologies for agricultural and consumer benefit.  As part of its educational program, the UC Davis SBC offers a variety of courses catered to the needs of seed industry professionals.

    UPCOMING COURSES

    Seed Biology and Quality, June 19-21, 2018, Davis, CA

    (http://sbc.ucdavis.edu/Courses/Seed_Biology_and_Quality/)

    Seed Business 101 Field Crops, August 20-24, 2018, St. Charles, IL

    (http://sbc.ucdavis.edu/Courses/Seed_Business_101/Seed_Business_101_-_Field_Crops/)

    Program Management for Plant Breeders, September 18 – 20, 2018, Davis, CA
    (http://sbc.ucdavis.edu/Courses/Program_Management_for_Plant_Breeders/)

    Seed Business 101 Horticulture, December 3-7, 2018, Davis, CA

    (http://sbc.ucdavis.edu/Courses/Seed_Business_101/Seed_Business_101_-_Horticulture/ 

    Seed Production, February 12 – 14, 2019, Davis, CA USA

    (http://sbc.ucdavis.edu/Courses/Seed_Production/)