Tag: FSMA

  • Safe Food California Conference Returning After Six Year Hiatus

    Food safety professionals in the dried fruit, nut and fresh fruit industries will be gathering in Monterey this June for DFA of California’s Safe Food Conference.  This annual event finally returns after a six-year hiatus.  Watch this video as Hillari Bynum from DFA of California shares more details about the conference with Matthew Malcolm on California Ag Network and what food safety professionals have long awaited.

    Please thank this video’s sponsor  SQM Specialty Plant Nutrition for their industry support.

  • Clarification of New Farm Water Testing Requirements Under FSMA

    For those agricultural commodities that are subject to the new Produce Safety Rule under the Food Safety Modernization Act, water testing will be a key component in this adjustment.  In some cases, these water testing requirements may include more than just what you are irrigating the crop with.  Watch this brief interview with Tom Jones from the Safe Food Alliance as he clarifies these requirements.

     

    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.

  • Does FSMA No Longer Apply to Almond Growers?

    With the recent announcement that almonds would be exempt from the Produce Safety Rule under FSMA, growers may think they got off the hook regarding extra trainings and documentation for food safety practices in the field, but watch this video with Tim Birmingham from the Almond Board of California who clarifies the recent change. Read more about it in Pacific Nut Producer Magazine.

  • The Benefits of Environmental Monitoring

    Each year roughly 48 million people get sick, 128,000 are hospitalized, and 3,000 die from
    foodborne illnesses according to the CDC. As our food supply becomes progressively more
    globalized, the need to strengthen food safety systems in and between countries has become
    much more apparent.

    Legislation like the Food Safety Modernization Act (FSMA) now enables the Food & Drug
    Administration (FDA) to better protect consumers by strengthening food safety systems for
    foodborne illnesses, which are mostly preventable and are a significant public health burden.
    With the creation of FSMA, the FDA has become more proactive towards food safety
    prevention. One solution to the ever-growing issue of foodborne illness is the inclusion of a
    robust Environmental Monitoring Program (EMP).

    Understanding Environmental Monitoring

    According to FDA rule Verification of Implementation and Effectiveness CFR 21 section 117.165
    and the Food Safety Modernization Act (FSMA) Final Rule for Preventive Controls for Human
    Food:

    A facility who has identified a potential environmental pathogen or indicator organism
    as a hazard to ready-to-eat (RTE) foods are required to include an EMP in their food
    safety plan. A trained Preventive Controls Qualified Individual (PCQI) needs to review
    EMP test results to ensure that the Food Safety Plan is being followed.

    It is necessary for a FSMA EMP compliant Food Safety Plan to include:

    •  Established, written and scientifically valid procedures
    •  Identified testing microorganisms, adequate locations, and number of collection sites
    •  Identified timing and frequencies for collecting and testing samples
    • Identified Corrective Action Procedures in compliance with CFR 21 section 117.150
    •  Testing performed by an accredited laboratory.

    The Benefits

    The purpose of an EMP is to identify problem areas where potentially harmful microorganisms
    may be harboring, becoming a source of contamination; as well as verifying the effectiveness
    of sanitation programs. Several benefits of an EMP include:

    • Validation and verification of cleaning and sanitation programs. i.e., procedures and
      frequency
    • Provides data of the overall effectiveness of your sanitary program, personnel
      practices, and operations procedures
    • Provides data about indicator organisms, spoilage organisms, and pathogens to
      prevent outbreaks
    • Determines if facility maintenance is required, i.e., filter changes
    • Acts as a baseline microbiological assessment of a facility’s environment
    • Helps users find and eliminate potential contamination sites before it has spread

    Areas of Concern

    There are many routes environmental pathogens and other harmful organisms can be
    introduced directly into your facility. Some of these routes are by raw materials, ingredients,
    supplies, equipment, and vehicles, as well as personnel, visitors and pests. Two harmful
    pathogens to keep track of are Salmonella and Listeria.

    Salmonella

    Salmonella is a widespread and resilient bacteria that is found in the environment. It can
    survive in “dry” manufacturing environments, as well as “wet” manufacturing environments.
    Essentially, it is a versatile bacteria that has the potential to causes harm when you
    aren’t proactive.

    According to the CDC, Salmonella causes around 1 million foodborne illnesses, 19,000
    hospitalizations and 380 deaths in the United States annually.

    Not only can Salmonella result in foodborne illnesses, but it can also result in a costly recall for
    your company. FDA currently considers Salmonella to be the top environmental pathogen of
    concern in low moisture foods. Outbreaks and recalls caused by Salmonella have been linked
    to raw chicken, ground beef, pre-cut melon, and breakfast cereals. There is also a history of
    recalls in tree nuts, nut butter, alfalfa sprouts, cantaloupes, and chicken.
    Our article “Salmonella- The Most Common Bacterial Foodborne Disease” goes into detail
    about Salmonella and effective ways for you to prevent it in your facility.

    Listeria

    Listeria bacteria is prevalent in the environment. It is found in soil, water, and
    decaying vegetation. There are six types of listeria, but only Listeria
    monocytogenes (L. monocytogenes) is considered harmful to humans.

    L. monocytogenes is persistent in and around equipment and the processing
    environments in harborage sites. It can survive and grow at refrigerated
    temperatures, tolerate high salt concentrations such as a brine tank, and
    survive frozen storage for extended periods. Due to these factors, L.
    monocytogenes presents a severe food safety concern.

    According to CDC, L. monocytogenes causes about 1,600 foodborne illnesses and 260
    people deaths in the United States annually. Outbreaks and recalls are regularly linked to
    ready-to-eat RTE sliced meats, frozen vegetables, packages salads, dairy products, and
    cantaloupes.

    How to be Proactive

    To systemically combat these pathogens, a robust Environmental Monitoring Program usually
    utilizes zoning concepts. Zones are a useful tool that can help you in site selection within your
    facility. The EMP zoning concept divides risks into four zones based on the level of risk to
    product contamination with Zone 1 being the highest.

    Zone 1 – Direct or indirect Food Contact Surfaces (FCS), i.e. product conveyors, product
    chutes, storage hoppers, slicers, worktables and employee hands.

    Recommended testing for zone 1 are:

    • Aerobic Plate Count (APC)
    • Enterobacteriaceae (TEB)
    • Adenosine Triphosphate (ATP) rapid testing

    Pathogens need to be tested in special circumstances such as a response to Positive
    Salmonella product result.

    Zone 2 – Non-FCS that are adjacent to or close to zone 1, i.e., equipment supports, frames,
    control panels, weight scales, floor drains and air filters.

    Recommended organisms to be tested:

    • Salmonella spp
    • Listeria spp

    Both of these tests need to be performed weekly.

    Zone 3 – Non-FCS within process area but further
    removed from product contact surfaces in open
    product areas, i.e., forklifts, walls, floors, ceilings,
    wash stations and brooms.

    Recommended organisms to be tested:

    • Salmonella spp
    • Listeria spp

    Both of these tests need to be performed weekly.

    Zone 4 – Non-FCS outside of the processing areas,
    i.e., locker rooms, cafeteria, hallways, trash areas,
    wash stations outside of production areas and
    loading docks.

    Recommended organisms to be tested:

    •  Salmonella spp
    •  Listeria spp

    Both of these tests need to be performed weekly.

    If you find a positive environmental result in any of the zones, immediately quarantine the
    area and put affected product on hold. Next, thoroughly investigated the area both visually
    and with microbial testing.

    Understanding Vector Swabbing

    The best way to investigate a positive
    environmental result is with vector swabbing.
    Vector swabbing determines the extent of the
    contamination and to establish potential root
    causes of the contamination.

    Diagram is courtesy of the PEM Guidance on Environmental
    Monitoring, Almond Board of California

    Vector swabbing involves sampling of multiple environmental sample sites around the initial positive site in a radial patter. This approach gives you the best possible coverage of
    the environment.

    What to remember when swabbing:

    •  Vector swabbing needs to be sampled before cleaning the initial positive site.
    • Make sure the area is thoroughly cleaned and sanitized, taking great care not to
      spread the contamination to surrounding areas.
    •  Take additional environmental after the cleaning process.
    • You need to obtain three consecutive days of negative results until you can return to
      your regular EMP.

    Sampling

    After you have established your zones and your
    proposed action plan in the event of a positive environmental sample, you now need to
    samples the intended sites. Various methods can be used for collecting environmental
    samples such as sterile swabs and sponges. When collecting these types of samples, the
    surface area sampled can vary depending on the target site. An acceptable sampling area for
    indicator organisms is 40-200 in 2 and for pathogens is 40-400 in 2 .

    If the sampling collection is post sanitizer application, make sure the sterile swab and
    sponge has a neutralizing buffer. The neutralizing buffer counteracts cleaners and sanitizers
    that have been used- we want to find any surviving bacteria if they are present. Environmental
    samples are to be promptly submitted to an accredited Laboratory for testing. Ideally,
    environmental samples should be transported <45 o F and processed within 48 hours.

    Next Steps

    The cost of environmental contamination can be high, so you must ask yourself what risk you
    are willing to take? To save yourself a lot of trouble ensure you have an effective and robust
    Environmental Monitoring Program!

    With one, you can guarantee that you find any potential contamination risk and eliminate it
    before any possible cross-contamination of your product occurs. It is important to remember
    that commitment is needed throughout the facility, from senior management and cascading
    down to the rest of the workforce. Sufficient resources, both in capital and personnel to do an
    adequate job are also needed, and while the thought of creating a new EMP may seem like a
    daunting task, the outcome is not only beneficial for your facility but also to the consumer.

    Safe Food Alliance offers an online course for Environmental Monitoring to help you
    understand what Environmental Monitoring is, what the requirements for FSMA are, and other
    information to help with creating and understanding your Environmental Monitoring
    program.

  • PSA-Approved Produce Safety Training

    Fresno, Calif., (February 27, 2018) – California Certified Organic Farmers (CCOF) Foundation is offering a Produce Safety Training in English and Spanish on Wednesday, March 7, from 8 a.m. to 5:30 p.m., at the Clovis Veterans Memorial District, 808 4th St., Clovis. Both organic and non-organic growers are welcome to attend the workshop.

    The training will meet the Food Safety Modernization Act (FSMA) requirement for produce growers. The trainers will spend approximately seven hours of instruction time covering content contained in these seven modules: introduction to produce safety; worker health, hygiene, and training; soil amendments; wildlife, domesticated animals, and land use; agricultural water (part I: production water; part II: postharvest water); postharvest handling and sanitation; how to develop a farm food safety plan.

    Food safety technical assistance opportunities will be highlighted, including services provided by Fresno County U.C. Cooperative Extension, CCOF, and the California Center for Cooperative Development.

    After attending the entire course, participants will be eligible to receive a certificate from the Association of Food and Drug Officials (AFDO) that verifies they have completed the training course. To receive an AFDO certificate, a participant must be present for the entire training and submit the appropriate paperwork to their trainer at the end of the course.

    Cost to attend is $35 per person and includes lunch, course materials and certificate. For more information, contact the CCOF Foundation at ccoffoundation@ccof.org or 831-423-2263.

  • Progress on Winegrape Exemption from FSMA’s Produce Safety Rule

    Sacramento, Calif., (July 21, 2017) – The Senate Committee on Appropriations on July 20 approved a bill that funds the U.S. Department of Agriculture and the Food and Drug Administration (FDA) for fiscal year 2018. The appropriations bill includes an important statement of policy urging FDA to distinguish between grape varietals so that growers of winegrapes may be eligible for exemption or exclusion from the Food Safety Modernization Act’s produce safety rule.

    The committee’s report language complements language in the House of Representatives agricultural appropriations bill, which urged FDA to initiate a process to distinguish between grape varietals so that winegrape growers may be exempted from the produce safety rule.

    The California Association of Winegrape Growers (CAWG) on June 15 submitted a formal request to FDA to exempt winegrapes from the produce safety rule on the basis that they are rarely consumed raw. More than 30 other commodities are exempt from the rule because they are nearly always cooked or processed before consumption, thus eliminating the risk of foodborne illnesses. CAWG provided FDA and various members of the California congressional delegation a 10-page white paper detailing the justification for the winegrape exemption.

    Starting in 2018, FDA’s produce safety rule requires most commercial growers of winegrapes to document, through a burdensome exchange of notice and assurance with buyers, that the harvested grapes have in fact been processed into wine. Growers must keep records of this exchange, for every load shipped, for a two-year period. Failure to adhere to these requirements could result in winegrape growers having to comply with other aspects of the produce safety rule, which is intended to ensure the safety of raw produce.

    “The fact is that California winegrape varietals are rarely consumed raw and FDA should categorically exempt them from the produce safety rule,” CAWG President John Aguirre said.

    Wine Institute, Napa Valley Vintners and Washington Winegrowers Association have joined CAWG in support of this effort. “We will continue to work closely with other industry organizations to press FDA to change its policy,” Aguirre said.

  • Enjoy Your Tree Nuts: UC Scientists Help with Regulatory Compliance

    Davis, Calif., (March 28, 2017) – California tree nut growers will soon have to comply with new agriculture water testing requirements under the Produce Safety Rule in the 2011 Food Safety Modernization Act (FSMA). University of California researchers and advisors are holding seminars to share information about the agricultural water requirements and proper water sampling methods in order to be in compliance with the regulations.

    Almond kernel emerging from dried hull. (Photo: Melissa L. Partyka)

    While irrigation or spray water is generally not the source of contamination, it is a vehicle for pathogens that are harmful to humans, especially on produce that is consumed raw; therefore, agricultural water was included as a part of the new regulation.

     

    The UC Cooperative Extension office in Yolo County was the site of the first information sessions for nut tree growers/producers. It was an ideal location, as the fertile soils of the Sacramento and San Joaquin valleys are home to the largest tree nut production industries in the U.S. Some nuts are also grown in the coastal valley regions and Sierra foothills.

    Good news for nut consumers

    Almond harvesting in California’s Central Valley. (Photo: Melissa L. Partyka)

    The new regulations and the focus on food safety practices, particularly within the nut tree industry, is of great interest because of the popularity of nutritious and delicious tree nuts. I for one am a big consumer. My day starts with almond butter on toast. That’s followed by snacks of raw walnuts and dates. And there’s always the handful of roasted pistachios to be grabbed for a salty treat.

     

    It is lucky for someone who is nuts about nuts to live in California. The state is the nation’s No. 1 walnut, almond and pistachio producer. California produces 80 percent of the world’s almonds. We produce one million tons of almonds each year, followed by walnuts at nearly half a million tons, and pistachios at over a quarter million tons.

    The California Department of Food and Agriculture reports the state’s leading agricultural export products by value in 2015 were almonds ($5.14 billion), dairy products ($1.63 billion), walnuts ($1.49 billion), wine ($1.48 billion), and pistachios ($848 million).

    Melissa L. Partyka, an ecologist at the UC Davis Western Institute for Food Safety and Security, (WIFSS) and Ronald F. Bond, a water quality researcher and field coordinator with WIFSS, are engaging local growers on issues of food safety and helping to educate them on not only the regulations but on ways to improve their water quality.

    Partyka and Bond are staff in the UC Agriculture and Natural Resources’ Vet Med Extension and Atwill Water and Foodborne Zoonotic Disease Laboratory, headed by UC Cooperative Extension specialist Rob Atwill, director of WIFSS.

    They are affiliated with the Western Center for Food Safety, a Food and Drug Administration Center of Excellence, and are helping break down the regulations for the growers, regulations which can be a little overwhelming to the untrained.

    Agricultural water, according to FSMA, is that water used to irrigate, treat, harvest, wash commodity or equipment on farm.

    Growers are required to test water if it:

    • Comes in contact with the harvestable portion of the commodity
    • Is used to clean harvest equipment
    • Is used to mix pesticides/fungicides applied to commodity
    • Is used by harvest crews to wash hands

    As of January 2016 growers will have 2 to 4 years (depending on farm size) to comply with most aspects of the Produce Safety Rule. Basically, the larger the production, the higher potential for risk to the consumer. How often a grower samples water depends on the water source. Well water requires an initial four samples, followed by one sample per year. Surface water, requires an initial 20 samples, followed by five samples per year. Water samples should be collected as close to harvest as is practical. During a long harvest season, samples can be spread out; in short harvest seasons, samples should be collected closer together; and in multiple harvest seasons, samples should be taken near each harvest if water is coming from the same source.

    A full day workshop to be hosted by UC Cooperative Extension is planned for late June. Look for announcement of date, time, and location on the following websites: www.wcfs.ucdavis.edu, http://ucanr.edu, www.wifss.ucdavis.edu.