RFID and the Future of Food Traceability
September 8, 2026One of the most frequently used — and often misunderstood — terms in food safety management systems is Validation.
In many food businesses, we see statements such as “the process has been validated,” “the CCP has been validated,” or “the thermal process has been validated.” However, when an auditor asks:
“What evidence do you have that this control measure is actually effective?”
the answer is sometimes simply a monitoring record.
But a monitoring record is not validation.
For example, if a pasteurization process has a defined temperature and time, and the operator records these parameters every day, the records demonstrate that the process was operated within the established parameters.
But they do not necessarily answer the more fundamental question:
“Why do we know that these specific time and temperature parameters are sufficient to control the identified food safety hazard?”
That is where validation becomes essential.
Validation is about providing scientific, technical, experimental, or other reliable evidence demonstrating that a control measure, or combination of control measures, is capable of achieving the intended food safety outcome when properly implemented.
Therefore, validation is not simply a document.
It is an evidence-based process that demonstrates that a food safety control measure is capable of doing what we expect it to do.
1. What Is Validation and Why Is It Important?

In simple terms, validation answers the question:
“If we apply this control measure correctly, will it actually achieve the required food safety result?”
Consider a food manufacturer that produces a ready-to-eat product and has identified a thermal treatment as an important control measure within its HACCP system.
The company may establish:
Temperature — X°C
Time — Y minutes
But simply writing these parameters into a HACCP plan does not make them valid.
There must be a scientific or technical basis demonstrating that these conditions are capable of controlling the identified hazard.
Depending on the process, evidence may include:
- scientific literature;
- authoritative technical guidance;
- regulatory or industry guidance;
- product- and process-specific studies;
- experimental data;
- challenge studies;
- laboratory testing;
- process modelling;
- qualified technical assessment;
- studies performed under actual production conditions.
The evidence should be relevant to the specific product, process, hazard and control parameters being evaluated.
For example, validation evidence for one product and process cannot automatically be transferred to a completely different product with different characteristics and processing conditions.
This is why validation is closely connected with the logic of HACCP.
Within HACCP, we ask:
What hazard exists?
Then:
How will we control it?
Then:
What control parameters are required?
And finally:
What evidence demonstrates that these controls are actually effective?
2. Validation vs. Verification — What Is the Difference?

These two terms are frequently confused in food safety systems.
Validation and verification are not the same thing.
Validation primarily asks:
“Is this control measure capable of being effective under the defined conditions?”
Verification asks:
“Are we implementing the system as planned, and is it continuing to operate effectively?”
Let us take thermal processing as an example.
Validation
The company collects evidence demonstrating that a specific temperature/time combination is capable of controlling the identified microbiological hazard.
Verification
The company checks that, during actual production:
- the measuring equipment is functioning correctly;
- monitoring records are completed;
- the CCP procedure is being followed;
- employees are properly implementing the process;
- established limits are being achieved;
- appropriate product or environmental testing is performed where necessary.
In simple terms:
Validation demonstrates that the control measure can work.
Verification demonstrates that the system is being implemented as intended and continues to work effectively.
This distinction becomes particularly important during audits.
If an auditor asks:
“Show me the validation of your CCP.”
and the company provides only a daily CCP monitoring log, the evidence may not answer the question.
The monitoring log can provide evidence for verification, but it does not automatically constitute validation.
3. Where Is Validation Needed in Food Production?

Validation can apply to many different processes.
The most obvious examples are thermal processing, but validation is not limited to cooking or pasteurization.
Thermal Processing
Thermal process validation may be required to demonstrate that a defined process achieves the intended control of a specific hazard.
Examples include:
- pasteurization;
- sterilization;
- cooking;
- baking;
- blanching;
- other heat-treatment processes.
When validating a thermal process, factors such as product characteristics, initial microbial load, product thickness and shape, fat and moisture content, processing conditions, and the actual temperature achieved at the coldest point may be relevant.
This is why simply recording the temperature displayed on the equipment does not always prove that the required conditions were achieved throughout the product.
Cleaning and Sanitation
Cleaning and sanitation processes may also require validation.
For example, a facility may establish:
Cleaning chemical + concentration + temperature + contact time
But how do we know that this combination is actually effective for the specific surface, equipment and type of contamination?
Evidence may include:
- microbiological testing;
- appropriate environmental monitoring;
- ATP monitoring as part of a defined verification programme;
- visual inspection;
- chemical concentration controls;
- other relevant evidence.
Again, we need to distinguish between:
Correctly performing a cleaning procedure ≠ proving that the procedure is effective.
Allergen Control
Validation can also be relevant to allergen-control processes.
For example, if a facility produces products containing allergens and allergen-free products on the same production line, having a cleaning procedure does not automatically demonstrate that allergen residues have been effectively removed.
The organization needs evidence that the selected cleaning method is capable of reducing or removing the relevant allergen to the required target level under defined conditions.
Shelf-Life and Storage Conditions
Validation is also relevant when establishing product shelf life and storage conditions.
The assessment may need to consider:
- product characteristics;
- pH;
- water activity;
- packaging;
- storage temperature;
- microbiological stability;
- intended use;
- reasonably foreseeable storage and handling conditions.
Simply assigning a shelf life based on historical practice may not provide sufficient scientific justification.
The organization should have an appropriate basis for demonstrating why the defined shelf life is safe and suitable.
Conclusion

Validation is not simply another form that a food business needs to keep for an audit.
It is the process through which an organization demonstrates, using appropriate evidence, that a control measure is capable of effectively controlling an identified food safety hazard.
An effective HACCP system should not be based only on:
“This is how we have always done it.”
A professional food safety approach asks:
“What evidence do we have that this actually works?”
That is where validation begins.
Properly conducted validation strengthens the HACCP system, supports the scientific and technical justification of CCPs and control measures, improves audit readiness, and provides a stronger foundation for food safety decisions.
And we should always remember:
Validation demonstrates that a control measure is capable of working.
Verification demonstrates that we are implementing it correctly and that the system continues to operate effectively.
In food safety, knowing what we do is not enough.
We must also be able to demonstrate why we do it — and what evidence proves that it works.


