Factory Layout and Hygienic Zoning Risk Assessment: How to Defend Your Zones to an Auditor
By Mthokozisi Nkosi, Food Safety Specialist & Lead Auditor, ASC Food Safety · 15 min read

Layout, product flow and segregation is clause 4.3 of BRCGS Global Standard Food Safety Issue 9, published on 1 August 2022, and one of the twelve fundamental requirements, so a major against its statement of intent costs certification and forces a further full audit. Zoning is an argument, and the Layout and Hygienic Zoning Risk Assessment Template (RA08) at R690 is where you write it down.
At a glance
- Primary product
- Layout and Hygienic Zoning Risk Assessment Template (RA08), R690
- Scheme driver
- BRCGS Issue 9 clause 4.3, layout, product flow and segregation, one of the twelve fundamental requirements
- Fundamental list
- 1.1, 2, 3.4, 3.5.1, 3.7, 3.9, 4.3, 4.11, 5.3, 6.1, 6.2, 7.1. a major non-conformity against its statement of intent is a fail, and certification is off the table. What happens to the audit itself is then agreed between the auditor, the certification body and site management: it can end there, or it can carry on as a non-certification gap audit. Either way a further full audit is needed before the site can be certified
- BRCGS zone terms
- High risk, high care and ambient high care are the production risk zones, sitting above low risk and enclosed product areas
- FSSC 22000 route
- FSSC 22000 Version 7, published May 2026, takes its layout requirements from the sector prerequisite standard, ISO 22002-1:2025 for food manufacturing
- South African law
- R638 of 2018, regulation 5, sets structural and separation requirements but uses no zoning vocabulary
- What is in the pack
- Register, procedure, completion guide and read me, in editable Word and Excel, mapped to BRCGS, IFS and SQF clauses
- Training
- Implementation of Good Manufacturing Practices, R1,950, and ISO 22002 Prerequisite Programme Requirements, R2,100
A fundamental clause with no supporting document behind it
Most sites have a site plan. Very few have the assessment that explains why the boundaries sit where they sit. That gap is what turns a conversation about a wall into a finding against a fundamental. The pack gives you the zoning register, the decision logic, the procedure and a completion guide, in editable Word and Excel.
Buy RA08, Layout and Hygienic Zoning Risk Assessment, R690 Ask ASC to review your zoning
In this guide
- What do BRCGS and FSSC 22000 actually require on layout and zoning?
- What is the difference between low risk, high care and high risk zones?
- How do you decide which zone a production area belongs to?
- How do you draw and colour code a process flow and zoning plan?
- Physical or procedural segregation: which one will an auditor accept?
- How do you justify personnel flow, changing and cross over points?
- How should materials, packaging, rework and waste move between zones?
- Why does drainage direction decide whether your zoning argument holds?
- Do you need positive air pressure in high care and high risk?
- Worked example: zoning a chilled ready to eat site
- What records does an auditor ask for on zoning?
- Where zoning arguments fail, and how to fix them without rebuilding
- Frequently asked questions
What do BRCGS and FSSC 22000 actually require on layout and zoning?
BRCGS Global Standard Food Safety Issue 9 places layout, product flow and segregation at clause 4.3, and clause 4.3 is one of the twelve fundamental requirements, so a major non-conformity against its statement of intent is a fail, and certification is off the table. What happens to the audit itself is then agreed between the auditor, the certification body and site management: it can end there, or it can carry on as a non-certification gap audit. Either way a further full audit is needed before the site can be certified. FSSC 22000 Version 7 takes a different route: the layout requirement arrives through the sector prerequisite standard, ISO 22002-1:2025 for food manufacturing, rather than through ISO 22000:2018 itself.
That difference matters when you write the assessment. Paraphrasing clause 4.3 rather than quoting it, BRCGS asks the site to define its production risk zones on a plan, to control the movement of personnel, raw materials, packaging, rework, product and waste so that the risk of contamination is prevented, and to provide enough space and separation for the operation to run hygienically. The subclause numbering is in your own copy of the Standard. What an auditor tests is whether the plan and the factory agree.
ISO 22002-1:2025, published in July 2025 as part of the restructuring that also produced the new common baseline ISO 22002-100:2025, places the layout of premises and workspace, including hygienic zoning and personnel flow, inside the prerequisite programmes. Under FSSC 22000 Version 7 that standard is the source of the requirement rather than optional reading, and our FSSC 22000 Version 7 guide for South Africa sets out how the three parts of the scheme fit together.
South African law adds a floor rather than a zoning scheme. R638 of 2018, Government Notice R.638 in Government Gazette 41730 of 22 June 2018, under the Foodstuffs, Cosmetics and Disinfectants Act 54 of 1972, never uses the phrase high care. Its regulation 5, paraphrased, requires smooth, cleanable, non absorbent wall, floor and ceiling surfaces, effective ventilation, artificial illumination of at least 200 lux, approved waste water disposal, and food handling areas with no direct connection to spaces where fumes, dust or other impurities could reach food. That last point is a zoning requirement in everything but name.
What is the difference between low risk, high care and high risk zones?
The zones describe how badly it ends if contamination reaches product. BRCGS Issue 9 names high risk, high care and ambient high care as its production risk zones, above low risk and enclosed product areas. High risk is for chilled ready to eat product that supports pathogen growth, gets no further treatment, and has had a full pathogen reduction step applied to every component. High care sits below it, and ambient high care covers shelf stable ready to eat product.
The three variables that drive the classification are always the same: whether the product is ready to eat, whether it is open to the room after the last step that kills pathogens, and whether the product supports the growth of those pathogens across its shelf life. A chilled cooked meat sliced and packed in the open supports growth and gets no further treatment, so it sits at the top. A biscuit baked, cooled and wrapped in an enclosed line does not, so it does not.
| Zone | Typical product and process | Segregation normally expected | Personnel control | Air and drainage |
|---|---|---|---|---|
| Enclosed product area | Product fully enclosed in equipment or pack, no exposure to the room | Housekeeping separation, no barrier required by risk | Site GMP rules, standard workwear | General ventilation, drains fall away from processing |
| Low risk | Raw materials, product requiring a further kill step by the site or the consumer | Separated from ready to eat areas, direction of travel controlled | Site GMP rules, dedicated workwear where allergen or raw status requires it | General ventilation, drains must not run towards higher zones |
| Ambient high care | Shelf stable ready to eat product open to the room after its kill step | Defined boundary, controlled entry, usually physical | Dedicated or over garment change, hand hygiene at the boundary | Filtered supply air justified by assessment, dry regime preferred, drainage designed out where possible |
| High care | Chilled ready to eat product handled after the kill step, or product where one component has had no lethality step of its own | Physical barrier, dedicated entry through a change area | Full change of outer garments and footwear, hand wash and sanitise at entry | Filtered air, positive pressure relative to lower zones, drains flowing outwards |
| High risk | Chilled ready to eat product supporting pathogen growth, no further treatment, every component fully pathogen reduced | Physical barrier, ideally a separate room with its own services and no shared openings | Full change including footwear at a barrier, dedicated staff or a controlled sequence | Filtered supply air, positive pressure, dedicated drainage falling away, no shared drain runs |
Two cautions on that table. It is a starting point for your own assessment, not a specification, and the boundary between high care and high risk is the single decision auditors most often push back on. Get it wrong in the generous direction and you carry cost you do not need. Get it wrong in the other direction and you have a fundamental non conformance and a product argument at the same time.
If you cannot name the zone your product sits in, start there
The zone decision drives your walls, your changing rooms, your air handling, your cleaning schedule and your environmental monitoring plan. Everything downstream inherits the error. RA08 walks the decision through product status, exposure after the kill step and growth support, and records the answer with its reasoning beside it.
Buy RA08, Layout and Hygienic Zoning, R690 Ask us to classify your zones with you
How do you decide which zone a production area belongs to?
BRCGS Issue 9 names the zones but leaves the assignment to you, so work forward through the process, not backward from the building. Find the last lethality step, then ask of every area downstream: is the product ready to eat, is it open to the room, does it support pathogen growth? Three yes answers mean high care or high risk, and the split turns on whether every component has had a full pathogen reduction step.
- Fix the last kill step for every product familyCooking, retorting, pasteurisation, frying, baking, acidification or a validated antimicrobial treatment. If a product family has none, everything after intake is exposure.
- Mark every point of exposure after itCooling, slicing, dicing, weighing, hand packing, rework addition, filling, sealing, sampling and any quality check that opens the pack.
- Test growth support against the declared shelf lifeWater activity, pH, preservatives, packaging atmosphere and chill temperature together, not one at a time. This is where the Microbiological Contamination Risk Assessment (RA14), R690, feeds directly into the zoning decision.
- Assign the zone to the area, not to the machineA zone is a defined piece of floor with a boundary you can point at. If you cannot draw a line around it, you have not assigned a zone.
- Write the reason next to the assignmentOne or two sentences per area, naming the product, the exposure and the growth conclusion. This is the paragraph the auditor reads first.
- Record the constraints you could not removeShared corridors, a single goods door, a drain that runs the wrong way. Naming a constraint and controlling it is a defence. Hiding it is a finding.
The most common failure I see on South African sites is a zoning map that has been reverse engineered from the building: whatever room has a door on it becomes high care, and whatever does not becomes low risk. The auditor asks why the boundary is there, the answer is that the wall was there, and the assessment collapses. Decide the zone from the product and the process first, then deal with the building as a gap to be closed.
How do you draw and colour code a process flow and zoning plan?
Clause 4.3 of BRCGS Issue 9 needs two drawings that agree: a process flow diagram from intake to despatch, and a scaled site plan with the zone boundaries and the flows drawn on it. No standard mandates colour, but it is the fastest way to make the plan readable in the ninety seconds an auditor will give it. Use one colour per zone and one line style per flow.
The process flow diagram is a food safety document, so it must be verified on site and signed. Walk it during production with the drawing in your hand and correct it against what is actually happening, including the steps nobody wrote down: the rework loop, the sampling point, the hold area, the place where a pallet waits because the lift is busy. Our guide to what a HACCP plan is and what it must contain covers the study these diagrams sit inside.
- One colour per zone, applied consistently, with a legend printed on the plan itself
- Product flow, personnel flow, packaging flow, waste flow and rework flow each on their own line style, with arrows showing direction
- Every door, hatch, opening and roller shutter on the boundary shown and numbered
- Hand wash stations, boot washes, changing rooms and barrier positions plotted, not described in text
- Drains plotted with the direction of fall marked, and interceptors and traps shown
- Air handling units, supply and extract points, and the direction of pressure differential shown
- Every environmental monitoring site numbered on the same drawing, using the same numbers as the sampling plan
- A revision number, a date, an author and an approval on the drawing, because an undated plan is an uncontrolled document
If your site plan, your process flow diagram and your environmental monitoring map disagree with one another, at least two of them are wrong and the auditor will find out which.
Turn the drawing into a document with an argument behind it
A coloured plan is a picture. A zoning risk assessment is a document that explains every boundary on that picture and survives being questioned. RA08 gives you the register that lists each area, its zone, the reasoning, the controls at each boundary and the verification evidence, at R690. Buy it and build it yourself, or bring one of our consultants on site to walk the flows with your team.
Buy RA08, Layout and Hygienic Zoning, R690 Request a quote for a site zoning review
Physical or procedural segregation: which one will an auditor accept?
ISO 22002-1:2025 does not choose for you: both are legitimate, and the higher the risk the harder a procedural argument becomes. Physical segregation separates in space: a wall, a door, a barrier, a separate room or a separate building. Procedural segregation separates in time or by dedication: sequencing raw before ready to eat, dedicated equipment, dedicated staff, cleaning between changeovers. For chilled ready to eat product, expect to defend a procedural case hard.
| Aspect | Physical segregation | Procedural segregation |
|---|---|---|
| What it is | Wall, door, barrier, bench step over, separate room or building | Time separation, sequencing, dedicated equipment or staff, cleaning between changeovers |
| Depends on | Design and maintenance of the barrier | Human behaviour, supervision and the cleaning being effective every single time |
| Fails when | A door is propped open, a hatch is added, a service penetration is cut and never sealed | Production runs late, a changeover is shortened, a relief operator has not been briefed, a clean is signed but not done |
| Evidence an auditor asks for | Plan, barrier condition, door discipline records, air and drainage design, boundary inspection records | Production sequence records, changeover cleaning records with verification, training records, allergen or micro swab results at changeover |
| Where it is usually accepted | Any zone, and effectively expected for high risk | Low risk and enclosed product work, allergen changeovers, and higher zones only with strong verification |
| Cost profile | Capital once, low running cost | Low capital, permanent running cost in time, labour, chemicals and lost capacity |
The honest comparison is that procedural segregation is cheaper to install and far more expensive to sustain, because it has to work on the worst Friday of the year and not only on audit day. When a site tells me it separates raw and ready to eat by time, my first question is what happened on the last day production overran, and my second is whether the changeover clean was verified or simply signed.
Where procedure is the only option, make the verification carry the weight. Swab at the changeover, hold the results, trend them, and connect them to the Cleaning and Disinfection Risk Assessment (RA03), R690, and the Allergen Management Risk Assessment (RA17), R690, so the segregation claim and the cleaning validation say the same thing.
Sold on time separation and no verification to prove it
If your raw and ready to eat separation rests on sequencing and a cleaning signature, the assessment behind it has to be watertight. Take RA08 for the zoning argument, RA03 for the cleaning validation that carries it, and RA17 where allergens ride on the same changeover. R690 each, or browse the full set of twenty four assessments in the shop.
Browse all 24 risk assessment packs, R690 each Ask us to review your segregation case
How do you justify personnel flow, changing and cross over points?
ISO 22002-1:2025 puts personnel flow inside the prerequisite programmes, and people are the highest volume traffic across your zone boundaries, as well as the only traffic that argues back. The rule is one direction of travel from lower zones to higher zones through a controlled barrier, and no casual return. Every crossing needs a named barrier, a defined change, a hand hygiene step in the right sequence, and supervision. A boundary nobody polices is a line on a drawing.
Two practical points that come up in almost every audit. First, maintenance is the traffic nobody assessed: a fitter walks from the workshop to a high risk filler with a toolbox, and the toolbox has been on a raw area floor. Either dedicate tools to the zone or define a decontamination step and record it. Second, decide what happens when somebody in the high zone needs the toilet, because the answer is either a full re change or an unwritten habit of walking through with the coat on.
Toilets and changing areas also carry a direct legal hook. R638 of 2018 regulation 5, paraphrased, requires that where a food handling area connects to a latrine or a changing area, that connection is through a properly ventilated lobby or self closing doors with mechanical extraction ventilation. That is a design requirement, not a housekeeping preference, and it applies whether or not you are certified to anything.
Every zone boundary is enforced by whoever crosses it next
Zoning fails at the barrier, in the hands of operators, cleaners and fitters. Implementation of Good Manufacturing Practices, R1,950, covers flow, segregation, hygiene and workwear discipline for supervisors and line teams. ISO 22002 Prerequisite Programme Requirements, R2,100, is for the person writing the system. Self paced online, lifetime access, QR verifiable certificate, and ASC does not charge VAT on training, so the price shown is the price paid.
Enrol in Implementation of GMP, R1,950 Browse all ASC courses Talk to ASC about a process flow walk
Zoning and pest proofing are drawn on the same floor plan
ASC Pest Control is part of the ASC Food Safety Consultants group, owned and designed by food safety specialists, a SAPCA member with pest control operators registered under Act 36 of 1947, and built around what a BRCGS, FSSC 22000 or R638 audit or inspection actually asks for. Service reports, barcoded device monitoring and trend analysis live in the My ASC Pest Control Hub, so the pest file is audit ready before anyone asks for it. ASC Pest Control serves Gauteng and the Eastern Cape.
Food and beverage pest control by ASC Request a pest control site assessmentHow should materials, packaging, rework and waste move between zones?
Clause 4.3 of BRCGS Issue 9 is a product flow clause, so materials must move forward through the zones and never backwards, and every item that crosses a boundary needs a defined transfer method. The four flows that cause the most trouble are outer packaging, rework, waste and cleaning equipment. Each of them travels against the grain of the process, and each of them arrives at the boundary carrying whatever it has touched on the way.
Outer packaging is the classic. Corrugate that has travelled on a truck, sat in a yard and been handled on a raw goods dock should not enter a high risk room on its original pallet. The usual controls are a debagging or decanting step at the boundary, transfer onto dedicated internal pallets or trolleys, and a defined hatch or airlock for the handover. Whatever you choose, it belongs on the plan with a number on it.
Rework is the flow most likely to break your zoning quietly. Product that has already been through a higher zone, taken out, held, and returned into the process can carry contamination in the opposite direction to your whole design. Define which rework may return, into which zone, at which step, within what time and under what storage conditions, and connect the decision to the Rework Risk Assessment (RA13), R690.
Waste and cleaning equipment complete the set. Waste should leave the higher zone on a dedicated route without ever passing back through it, using dedicated bins that do not travel between zones, and the Waste and Food Loss Management Risk Assessment (RA06), R690, is where that route is justified. Cleaning equipment is colour coded and stored inside the zone it serves, because a mop that visits three zones is a transfer mechanism with a handle on it.
Material flow findings rarely arrive alone
A finding on packaging entry usually drags in storage, rework and waste. Cover the whole chain: Storage, Warehousing and Transport (RA12), Rework (RA13) and Waste and Food Loss Management (RA06), R690 each, alongside RA08. Or take the whole system in one purchase.
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Why does drainage direction decide whether your zoning argument holds?
Drains connect zones that your walls separate, and regulation 5 of R638 of 2018 sets only a structural floor, so the zoning consequence is yours to argue. Water carries contamination downhill and aerosols carry it upward, so a drain running from a raw area under a high risk room defeats every barrier you built. Drainage direction, capacity, trapping and cleanability belong on your zoning plan, and a zoning assessment that does not mention drainage is incomplete.
Design the fall so that water always moves from the highest care zone towards the lowest, never the reverse, and avoid shared runs between zones entirely where the building allows. Where a shared run cannot be avoided, the assessment has to name it, describe the trapping and non return arrangement, and explain how you verify that arrangement still works. R638 of 2018 requires waste water disposal by a method approved by the local authority, which is the legal minimum and not the design brief.
- Floors fall to drains without ponding, and the fall is checked, not assumed
- Drain runs are drawn on the plan with direction of flow, so a shared run between zones is visible rather than discovered
- Traps are present, water sealed and maintained, because a dry trap is an open pipe between two zones
- Drain cleaning uses dedicated tools stored separately, and the cleaning is verified rather than signed
- Drains are named environmental monitoring sites, which is where the Environmental Monitoring Risk Assessment (RA19), R690, and your zoning map have to line up
- Backflow and blockage incidents are recorded and investigated as zoning events, not as maintenance jobs
If one high risk area produces repeat positives and its neighbouring low risk area does not, look at the drain layout before you look at the cleaning team. On several sites I have walked, the shared run under a dividing wall explained a pattern that two years of intensified cleaning had not touched. Pair RA08 with RA19 and the same drawing serves both documents.
Do you need positive air pressure in high care and high risk?
Air must move from the highest care zone outwards, never inwards, which means positive pressure in high risk and high care relative to the areas around them. No certification scheme, BRCGS Issue 9 included, publishes a pascal figure, so any number you have seen comes from industry practice. You must produce your own design differential, the basis for it, a means of reading it, the readings and the action when it drifts.
Four things make an air argument hold together at audit. The supply air is filtered to a grade your assessment justifies for the zone. The intake is positioned away from contamination sources such as loading bays, drain vents and extraction discharges. The differential is measurable at the boundary, ideally with a permanent gauge rather than a hand held meter that lives in a drawer. And the system is verified on a defined schedule, with filter change records and differential logs to prove it.
Condensation is the failure that turns an air system into a hazard. Cold surfaces in a warm, humid room drip onto open product, and the drip carries whatever grew in the duct or on the ceiling. Treat condensate points as zoning findings, look at them together with the Utilities, Water, Air, Steam and Lighting Risk Assessment (RA09), R690, and remember that opening a door for ten minutes to cool a room reverses your pressure regime while it is open.
Air, drainage and fabric are three assessments the same auditor will ask for in one visit
Zoning arguments usually fall over on the services and the building rather than on the concept. Take RA08 with Utilities (RA09) and Site and Building Fabric (RA07), R690 each, and the three documents reference the same plan and the same boundaries.
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Worked example: zoning a chilled ready to eat site
A single site making cooked chilled sliced meat, a chilled salad with a raw vegetable component, and an ambient dry seasoning blend. One building, one goods door, three product families with three different answers. The table works each area through the same three questions and shows the BRCGS Issue 9 zone the answers produce, plus the boundary control that follows. Illustrative, to show the reasoning, not to be copied.
| Area | Ready to eat, exposed after kill step, supports growth | Zone assigned | Boundary control that follows |
|---|---|---|---|
| Raw meat intake, chill store and preparation | No, no, yes | Low risk | Separate entry, dedicated workwear, no direct door to the slicing hall, drainage falling away from it |
| Cook and chill, product enclosed in the oven and blast chiller | Yes after the cook, no exposure, yes | Enclosed product area | Cook is the last kill step. The chiller discharge door is a zone boundary and the barrier sits there, not at the oven |
| Slicing, weighing and hand packing of cooked meat | Yes, yes, yes | High risk | Physical room, entry through a step over barrier and full change, positive pressure with filtered supply, dedicated drainage and cleaning equipment |
| Salad assembly, washed raw vegetables plus cooked component | Yes, yes, yes, but no lethality step at all for the vegetable | High care, with wash water treatment as a named control | Physical room, wash water sanitiser control monitored as a critical parameter, produce entry through a decanting hatch |
| Dry seasoning blending and filling | Yes, yes, no | Ambient high care | Defined boundary and controlled entry, dry cleaning regime, wet cleaning treated as a controlled event with a documented return to service |
| Outer packaging store and decant point | Not applicable | Low risk, with a boundary function | Decant from outer corrugate at a hatch, transfer onto dedicated internal trolleys, corrugate never enters the high risk rooms |
| Despatch chill and loading bay | Product packed and enclosed | Low risk | One way flow out only, no return route into high risk, doors interlocked or supervised, drainage falling away from the building |
Two decisions in that table are the ones an auditor will test. The salad room is high care rather than high risk, because BRCGS reserves high risk for product where every component has received a full pathogen reduction step, and the washed raw vegetable has not. That is exactly why the wash water treatment becomes the control the whole zone leans on, and why it is monitored as a critical parameter rather than recorded as a routine check. The boundary for the cooked meat sits at the blast chiller discharge, not at the oven door, because that is where product first meets the room after the kill step.
The remaining problem on this site is the single goods door. That is a constraint, and the way to defend it is to name it, sequence deliveries so that raw material and packaging never arrive at the same time as despatch loading, clean the dock between the two, and monitor the dock as a Zone 4 environmental monitoring area, keeping that numbering separate from the BRCGS production risk zones on the layout drawing. Sites that write the constraint down and control it can defend it. Sites that draw a plan showing two doors that do not exist cannot.
Work your own site through the same three questions
The register in RA08 is built to be filled in exactly as the table above reads: area, product status, exposure, growth support, zone, reasoning, boundary control, verification evidence. R690 for the register, the procedure, the completion guide and the read me, in editable Word and Excel, mapped to BRCGS, IFS and SQF clauses. If your site is complex or mid conversion, ask us to run the walk with you instead.
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Zoning only holds if the movement records show it holding
ASCloud is the ASC paperless compliance platform: digital checklists, HACCP records and traceability supporting FSSC 22000, BRCGS, HACCP and R638 sites. The printing stops, the evidence sits where an auditor can see it, and where ASC manages your food safety system on the weekly option, your consultant approves the checklists and keeps an eye on the site between visits rather than waiting for the next one. Ask us for a walkthrough on your own checklists.
See ASCloud, the ASC paperless system Ask ASC for an ASCloud walkthroughWhat records does an auditor ask for on zoning?
An auditor testing clause 4.3 asks for the assessment, the plan, and the evidence that the plan is being lived. In practice that is six things: the layout and zoning risk assessment, a current controlled site plan, a verified process flow diagram, the boundary control records, the verification evidence from environmental monitoring and cleaning, and the change control record showing that layout changes were assessed before they happened.
| Record | What it must show | Where sites lose the point |
|---|---|---|
| Layout and hygienic zoning risk assessment | Every area, its zone, the reasoning, the controls at each boundary and the review date | Document does not exist, or exists as a one page statement with no area by area reasoning |
| Controlled site plan | Zone colours, all flows with direction, doors, drains, barriers, air direction, revision number and approval | Undated drawing, or a plan that does not match the factory after the last project |
| Process flow diagram | Intake to despatch, including rework, hold, sampling and waste, verified on site and signed | Verified once at implementation and never again, so the rework loop added last year is missing |
| Boundary control records | Changing discipline, hand hygiene checks, footwear controls, door and hatch discipline, contractor entry | Records exist for operators and not for maintenance, cleaning or contractors |
| Verification evidence | Environmental monitoring by zone, changeover swabs where segregation is procedural, air differential logs, drain condition | Monitoring zones and layout zones use different maps and different numbering |
| Change control | Assessment completed before a new line, a moved machine, a new door or a construction project | Assessment written after the change, dated after the auditor asked for it |
The last row is the one that costs sites the most. A layout change assessed after it was made is not change control, and the date on the document tells the auditor exactly what happened. Build the trigger into your management of change procedure so that moving a machine requires a zoning sign off before the fitters arrive. Our BRCGS Issue 9 audit preparation countdown and complete guide to food hygiene audits set out how this evidence is examined on the day.
Where zoning arguments fail, and how to fix them without rebuilding
Zoning arguments rarely fail on the concept. They fail on six recurring details, and because clause 4.3 of BRCGS Issue 9 is a fundamental every one of them counts: a plan that no longer matches the building, a boundary nobody polices, maintenance and contractor traffic outside the rules, a drain or duct that crosses a wall, rework travelling backwards, and a layout change made before it was assessed. All six close without capital, provided you close them honestly.
Start with a walk. Take the current plan into the factory during production, mark every difference in red, and treat the marked drawing as your gap list. On a typical site that walk takes two hours and produces between eight and twenty differences, most of them added by projects that were never fed back into the drawing. Correcting the plan is free and it removes the finding an auditor is most likely to open with.
Then fix the traffic rules for the people who are not production staff. Write the maintenance entry rule, the contractor rule, the visitor rule and the cleaning team rule, brief them, and record the briefing. Sites often have excellent operator discipline and no rule at all for the fitter with the toolbox, which is the crossing most likely to move contamination between zones.
Where a genuine physical problem exists, a shared drain run, a single corridor, a door that has to stay open for airflow, the defence is compensation plus evidence. Name the constraint in the assessment, describe the additional controls, and monitor the point. That combination is defensible. What is not defensible is silence, and it is worth remembering that section 61 of the Consumer Protection Act 68 of 2008 imposes liability for harm caused by unsafe goods irrespective of negligence, so the commercial consequence of a zoning failure does not depend on your certificate.
Close the gap this week rather than the week before the audit
Every fix in this section costs time rather than capital, and all of them are easier with the register in front of you. Buy RA08 at R690 and work through your site, or take the complete system: the FSSC 22000 Food Manufacturing toolkit, 260+ documents at R6,350, carries a clause mapped index so you can trace a clause to a document and back, and one hour of premium consultation with one of our consultants is included.
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Read next from the ASC risk assessment library
Frequently asked questions
What is the difference between high care and high risk?
Does BRCGS Issue 9 require a colour coded site plan?
Is a physical wall always required to separate raw and ready to eat?
What air pressure differential should a high risk area run at?
Does R638 of 2018 say anything about factory zoning?
Can one changing room serve both a raw area and a high risk area?
How often should the layout and zoning risk assessment be reviewed?
What do I do if my building will not allow proper segregation?
Key takeaways
- Clause 4.3 of BRCGS Issue 9, layout, product flow and segregation, is one of the twelve fundamental requirements, so a major non-conformity against its statement of intent is a fail, and certification is off the table. What happens to the audit itself is then agreed between the auditor, the certification body and site management: it can end there, or it can carry on as a non-certification gap audit. Either way a further full audit is needed before the site can be certified.
- Assign zones from the product and the process, using ready to eat status, exposure after the last kill step and growth support, then treat the building as a constraint to be controlled rather than as the answer.
- Physical segregation is capital once and cheap to sustain. Procedural segregation is cheap to install and has to work perfectly on the worst day of the year, so it needs verification evidence to survive an audit.
- Drainage direction and air pressure decide whether the boundaries you drew hold in practice, and no standard publishes a pascal figure, so the design figure and its verification must be yours.
- An auditor wants six records: the assessment, a controlled plan, a verified flow diagram, boundary control records, verification evidence and change control completed before the layout changed. Name your constraints and compensate for them, because a documented crossing point with controls and monitoring is defensible where a tidy plan that hides one is not.
- The Layout and Hygienic Zoning Risk Assessment Template (RA08) at R690 is the register that holds this argument: area, product status, exposure, growth support, zone, reasoning, boundary control and verification evidence, with the procedure, completion guide and read me in editable Word and Excel, mapped to BRCGS, IFS and SQF clauses.
Draw the zones once, and defend them for years
Buy the pack and write the assessment yourself, or bring us in to walk the flows, mark up the plan and build the argument with your team. Either way the auditor gets an area by area zoning register, a plan that matches the factory, controlled boundaries and verification evidence, instead of a coloured drawing and a hopeful explanation. Our BRCGS Issue 9 implementation guide and our guide to South African food legislation set out the wider duties this document sits inside.
Buy RA08, Layout and Hygienic Zoning Risk Assessment, R690 Talk to ASC about a process flow walk
ASC is SAATCA registered and a FoodBev SETA Accredited Provider, No. 587/00337/1900. Offices in Gqeberha, Johannesburg and Cape Town, with on site project teams in Durban and virtual support nationwide.Published by ASC Food Safety, South African food safety and quality consultants. This article is general guidance and not a substitute for certification-specific advice.