A new method of HACCP for the catering and food service industry
Eunice Taylor *
Professor of Food Safety Management, International Centre for
HACCP Innovation, The University of Salford, Greater Manchester MS 4WT, UK
Received 26 September 2006; received in revised form 13 February
2007; accepted 16 February 2007
Abstract
This paper presents the
rationale and use of a new method of applying Codex HACCP principles designed
specifically for caterers. It
charts the process by
which the method was developed, set against the backdrop of international
efforts to give support to initiatives that
more appropriately meet
the needs of small and less developed businesses (SLDBs). The method was
extensively piloted, evaluated and
validated by the UK
Food Standards Agency (FSA) and deemed compliant with 2006 EU HACCP
requirements. The original ‘Salford
Model’ was extended and
published as Menu-safe, a system that can be used by catering businesses of all types and
sizes. Its shortened
version, Safer Food Better Business (SFBB),
has been developed by the FSA into a ready-to-use package for very small
catering
businesses.
_ 2007 Elsevier Ltd. All rights reserved.
Keywords: HACCP; Catering; Menu-safe, Safer food better business
1.
Introduction
In 1993 the
European Union issued a food hygiene
directive (EU, 1993)
establishing a general requirement
for all
food business to adopt a risk based food safety management
system with
the principles of the internationally
accepted
system hazard analysis critical control point
(HACCP)
recommended. However, each country in the
EU
interpreted the Directive into their national regulations
in
different ways – some requiring all the principles of
HACCP
others only some of them. This led to widely differing
levels of
interpretation. As a consequence members
of the EU,
as part of a wide consolidation of food safety
legislation,
negotiated legal requirements that could be
applied to
all businesses across the food industry. This
Regulation,
with no option for national amendment, came
into force
across Europe in January 2006 (EU, 2004). It
requires
all food businesses to implement a ‘system based
on HACCP
principles’.
1.1.
HACCP
In 1993 the
Codex Alimentarius Commission elaborated
a 12-part
method for the application of HACCP (See Fig 1).
This has
achieved international recognition and as such, has
become the
definitive method of applying HACCP principles.
In many
countries of the world it is now a standard
for both
export and the supply of food to major retailers.
However,
whilst ‘the primary movers in the HACCP system
tended to
be the larger food manufacturers. . . the
applicability
of the
HACCP system to small and medium sized
enterprises
(SMEs) has always been questioned’ (Mayes &
Mortimore,
2000). Indeed, extensive research and practical
experience
led the Codex Food Hygiene Committee to initiate
the
production of guidance documents that would promote
flexibility
in the interpretation of the method (WHO/
FAO 2000,
2006) for such businesses. The term small and
less
developed businesses (SLDBs) was coined to encompass
the scope
of this target group.
The Codex
12-part method was coined ‘Classical
HACCP’ by
the Food Standards Agency (FSA) at the start
of this
project and has served as a useful benchmark for the
development of alternative systems of applying HACCP
principles. It is used throughout this text to ensure
clarity
and consistency with FSA documents and texts.
1.2. The catering industry and HACCP
The UK catering industry is the largest sector of the
food industry and accounts for approximately 60% of all
food businesses. It comprises restaurants, cafes,
take-aways,
street vendors, hospitals, schools, prisons, residential
homes, hotels and other premises where food is produced
for immediate consumption. Many of these businesses are
small (Airey, 2001), yet commonly operate a far more
complex
‘production’ system, with large numbers of inputs,
processes and outputs, than the typical food
manufacturer.
It is hardly surprising, therefore, with no contractual
incentives,
that there has been little progress with HACCP
within catering businesses, as evidenced in a recent
review
by Taylor (2006).
1.3. UK Government initiative to improve HACCP uptake
in the catering industry
With ambitious targets to reduce food borne disease and
increase HACCP uptake, the Food Standards Agency
announced plans (FSA, 2001) to target
the well-documented
problems of food safety management within the
catering industry. These were summarised by the Chair of
an existing Working Party that had, in 2001, failed to
find
a successful model of HACCP for the industry. This was
despite the adaptation and wide scale testing of
materials
used successfully by large caterers such as McDonalds,
Whitbread’s, Greenhall’s and others.
‘. . .the basic tenants of HACCP are dissonant with
many small businesses, who rely on common sense,
experience and a modicum of good luck to meet their
requirements in relation to food safety. The structured
approach. . .[is]. . .alien. . . and can seem like a succession
of mountains of which they have no inclination – or
confidence
– to climb. . .’ (Miller,
2002)
In 2002, a team at Salford University funded by the
Food Standards Agency were tasked with rethinking the
problem and developing an innovative new approach to
the application of HACCP principles in the catering
industry.
2. Methodology
This research study utilised an ‘action research’
methodology
(Lewin, 1947) whereby experiential learning
took
place through the creative integration of ‘theory and
practice’.
It involved an iterative process of development,
piloting,
evaluation and review that was conducted over a 3-
year period. In total over 300 practitioners,
researchers
and stakeholders were actively involved in the process.
Some of the key milestones are discussed briefly below.
2.1. Stage 1. Review of existing data
This involved a documentary analysis of 50 existing
‘packs’ that had been designed to overcome the problems
of using HACCP within the catering industry, and a
review
of existing literature and research. Barriers,
limitations and
best practice were identified.
2.2. Stage 2. Creation of new method: the ‘Salford
Model’
version 1
A practitioner led, multi-disciplinary team, conducted a
series of workshops over a six-month period. The team
included caterers, food safety and HACCP experts,
management
specialists, psychologists, teachers, and
representatives
from the FSA, Health Protection Agency and the
Chartered Institute of Environmental Health. The initial
workshop lasted one week and produced a framework on
which to build the components of the model. Each subsequent
workshop was preceded by further stakeholder
review in relation to best practice and technical
issues.
The output of this stage was the first version of the
Salford
Model. The scope of the work was restricted to
independent
restaurants in the first instance. This large sector of
the industry had previously been established as having
the lowest levels of hygiene standards and staff
training
(Taylor, 1994) and it was considered that a
solution found
for this sector would have wide applicability.
Further stages of the project were carefully planned to
facilitate rigorous evaluation. This involved selecting
appropriate ‘success criteria’,
establishing base line data
and undertaking process evaluation at regular intervals
over a five year period. The validity of this approach
was
secured through gaining 100% access to a representative
sample of businesses and adopting both qualitative and
quantitative methods. The methods used were (1)
documentary
analysis of food safety information within the
business, (2) overt video filming of practices, (3)
in-depth
narrative interviews, (4) cultural audits, (5)
micro-biological
sampling and (6) analysis of inspection records.
2.3. Stage 3. Piloting and evaluation
A random sample of 50 independent restaurants was
identified as pilot sites. The sample was selected from
three
wards within urban local authorities and this reflected
a
1 Assemble HACCP team
2 Describe product
3 Identify intended use
4 Construct flow diagram
5
Preliminary
Procedures
On-site confirmation of fl ow diagram
6 Principle One List all potential hazards
Conduct a hazard analysis
Consider control measures
7 Principle Two Determine Critical Control Points (CCPs)
8 Principle Three Establish Critical Limits for each CCP
9 Principle Four Establish a Monitoring System for each
CCP
10 Principle Five Establish Corrective Actions
11 Principle Six Establish Verification Procedures
12 Principle Seven Establish Documentation and Record
Keeping
Fig. 1. The Codex protocol for the application of HACCP principle
diversity of cuisine including Indian, French, Swiss,
German,
Turkish, Chinese, Italian and British. The model
was tested in these businesses by experienced caterers
(‘mentors’) who spent between 20–30 h working with the
owner-manager/chefs. In parallel, numerous researchers
were involved in the on-going evaluation.
2.4. Stage 4. Modification and validation: ‘Salford
Model’
version 2
The utility, appropriateness and technical accuracy of
the Model were determined through detailed analysis of
the outputs of the field-testing. A process of technical
validation
was undertaken by the FSA. The Model was then
reviewed extensively. In particular it was presented to
numerous Professional Bodies, representatives from the
devolved Governments of Scotland, Wales and Northern
Ireland, FAO and WHO, national and international
conferences
and importantly, to the EU members responsible
for drafting the imminent HACCP legislation. The FSA
also commissioned further wide scale testing in Local
Authorities across England. The outcome of this process,
although having very few amendments from the original,
was Version 2 of the ‘Salford Model’.
3. Results
3.1. Outputs
The results of Stage 1 showed that previous HACCP for
Catering ‘packs’:
(1) Were based on ‘rules’ rather than ‘safe practices’.
Rules such as ‘chill within 90 min’ were often cited,
but with no practical guidance on how to achieve this
in a small kitchen.
(2) Used language inaccessible to the end-user.
Complex HACCP and microbiological jargon were
used throughout all of the texts.
(3) Failed to address many critical practices.
Cross contamination was only addressed in one of 36
texts.
(4) Focused on what was easy to measure rather than on
risk.
Routine monitoring focused on fridge temperatures
but did not deal adequately with other high risk
measurements
such as cooking, chilling times and contact
times for cleaning products.
(5) Expected caterers to make technical decisions and
validate them.
Material relied on caterers with no technical knowledge
or expertise to undertake a full hazard analysis.
(6) Involved incomplete control of specific hazards.
Critical cleaning activities such as cleaning chopping
boards or knives were not considered in the HACCP
plans or pre-requisite cleaning schedules.
(7) Were based solely on food safety with no reference
to
how it could be managed.
The role of the manager in terms of supervision,
responsibility and review were not considered.
An innovative new ‘model’ of managing food safety for
the catering industry was the output from stages 2–5.
The
‘Salford Model’ consists of a set of documented safe
working
methods with a record-keeping diary. A brief description
of each is presented in Section 3.2–3.5 below with
relevant examples. Section 3.6 summarises
some of the
main findings of the on-going evaluation.
3.2. Salford model documentation: safe methods
The documents form a set of working procedures for all
practices in the kitchen that are related to food
safety. These
are designed in a standard format, based on the
well-established
concept of Standard Operating Procedures (SOPs),
and termed ‘safe methods’. These are categorised into
five
sections: Cooking, Chilling’, Cleaning, avoiding cross
Contamination
and management Control. They are designed to:
• Document safety aspects of
all practice with reasons
why.
• Describe how the manager ensures control of these.
• Plan for if things go wrong.
Version II consists of a ‘bank’ of 40 validated and
approved safe methods that were found to cover most
practices within the sector. The number of safe methods
required within a particular business depends on the
size
and nature of the operation, with the option of creating
new methods as and when necessary. Businesses are,
however,
responsible for the validation of additional methods
as they are for the regular verification of cooking and
chilling
methods to ensure critical limits are being achieved.
The set of safe methods, when completed, fulfil the
requirement of HACCP for documentation. They also
incorporate the general good hygiene practices that are
controlled
separately from HACCP when applying the ‘classical’
method. The requirement to record significant food
safety information is dealt with in the Record Keeping
Diary
that accompanies the safe methods (see Section 3.4). The
next section illustrates the component parts of the
methods
using one typical example that is illustrated in Figs. 2
and 3.
3.3. Example of safe method: COOKING SMALL BIRDS.
Menu item: roast chicken
3.3.1. Safety messages: cooking kills harmful bacteria
(hazard identification)
Each method has a simple food safety message about the
main hazard and how to control it. The team
psychologists
and FSA communication experts used extensive background
experience and research in the development of
appropriate safety messages. In this example it is that
‘cooking kills harmful bacteria and makes food safe’.
Whilst this is not scientifically accurate in all
situations it
has been found to effectively communicate the importance
of cooking and improve practice (FSA, 2005). The
issues of
heat resistant toxins and spores are dealt with in the
chilling
section, and throughout the safe methods there are
prompts that highlight the need for all parts of the
system
to be followed in order to achieve food safety.
3.3.2. Safety points (control measures)
Each safe method contains a list of safety points, which
are simple, practical steps taken in most catering
operations
to make sure food is safely made. Documenting safe
catering practices in this format removes almost all of
the
effort of documentation for small businesses, and also
serves as a ‘prompt’ and ensures that all steps are
followed
every time. Each safety point is supported immediately
with a reason for its necessity, based on the caterers’
and
food scientists’ combined experience. This reinforces
the
importance of each point, and helps to provide an
understanding
of how to adapt the methods if one step is changed.
For example, if pre-heating the oven is not an option
for practical or quality reasons, extra cooking time is
then
required to make the food safe. The juxtaposition of ‘rules’
and ‘reasons’ is also a useful training tool.
The final column of this section is a space for
individual
businesses to fill in the details that are specific to
their own
operation. Catering is such a diverse industry that it
is
impossible to create generic methods for businesses to
simply
pick up and use. There are differences in equipment,
sizes and types of product, cooking methods and styles,
and all of these can have an impact on safety. The safe
methods are designed to minimise the effort required by a
business, but certainly not to eliminate it. Moreover, the
more time a business invests in adding to and improving
their safe methods, the more food safety understanding
and practices will improve as a result. A sense of ownership
of the system, and empowerment of staff within it, fulfils
the underpinning concept of HACCP.
3.3.3. Checking points (critical control point monitoring)
The final safety point in the process requires greater control
as it is the last step where the hazard can be reduced to
a safe level. Such focus is a key principle of HACCP and in
the safe methods these ‘checking points’ incorporate a measurable
output and continuous ‘real-time, every-time’ monitoring.
For many products every item needs to be checked
and haphazard sampling cannot ensure the safety of the
menu-items. Such practice, promoted by almost all previous
‘packs’, negate attempts to improve food safety by
leading caterers toward the false assumption that, for
example, the probe testing of a few cooked items is enough
to ensure safety of the entire meal. Within catering, where
there is little uniformity of ingredients, equipment or recipes
there is rarely the opportunity to ‘sample’ reliably. In
this example, every bird must be checked to ensure safety.
Practical, sensory methods, such as the juices running clear
of blood, are therefore advocated. This ensures that even in
a busy kitchen, with perhaps hundreds of ‘items’ being
cooked every day, all food can be ‘checked’ at critical
safety points.
Businesses can, however, still chose to check a sample
rather than the whole batch, but they would be required
to justify how their method would ensure that every individual
product was safe. For example, if a number of whole
birds were to be batch cooked and it was possible to identify
the bird that would cook at the slowest rate (i.e. in relation
to
position in oven and/or size) then that one could be
used as the test ‘sample’ that would indicate all birds were
thoroughly cooked.
3.3.4. What to do when things go wrong (corrective action)
This section of the safe method provides practical
options for what to do if the product, after cooking according
to the prescribed method, fails the safety check. The
documented actions are designed to rectify the problem
and make the product safe, and to prevent the problem
from happening again. There is scope here for the business
to add their own ideas that are specific to their operation,
such as an alternative piece of equipment that can be used
if one is failing, or an alternative dish that can be served if
the customers cannot be made to wait. In this way, if the
manager of the kitchen is away one day and there is a crisis,
the staff can go to the safe method documentation, see
what to do and confidently follow the instructions.
3.3.5. Prove-it (verification)
The ‘prove it’ section of the method facilitates the process
by which businesses periodically verify that their methods
are working and that critical limits are being achieved.
This documented experimentation gives confidence, both to
the caterer and enforcement officer, that the system is under
control. This is also required when a new item is added to
the menu, or at special occasions where products are being
prepared at different sizes and using different methods.
3.4. The Salford Model record keeping diary (record
keeping, verification, review)
In general, large businesses use considerable amounts of
forms, reports and paperwork to control their operations.
In the typical small catering business there is likely to be
much less bureaucracy and associated paperwork. Part of
the reason for this is that the manager knows what is happening
in all parts of the business by personally supervising
activities. However, the minimal records one would expect
in any size of business would include:
• Formalised
roles and responsibilities.
• Significant
food safety checks and remedial actions.
• Records
that can be reviewed to identify commonly
occurring problems that need to be solved.
• Evidence
for the inspector/auditor that food safety is
under control.
• Details
of communication between staff within the
business.
The output of this project was the identification of the
essential records that would be needed to perform these
tasks and, just as importantly, a presentation format that
would used rather than ‘shelved’ by the business. The output
was an annual diary that includes:
• Page
a day or shift format.
• Opening
and closing checks.
• Signature
of responsibility.
• Exception
reporting for when things go wrong.
• Reminders
for regular managements checks (pest control,
cleaning).
• Monthly
reviews.
• Staff
details and training records.
• Supplier
and contractor information.
• Attractive
user-friendly format.
3.5. The evaluation
When evaluating food safety management systems, ‘success’
is often measured in terms of the percentages of businesses
that purport to have implemented them. Whether
the businesses are telling the truth, whether they represent
a valid sample, whether they have fully implemented and
are successfully using the system, and whether food safety
is actually improved, are questions that are often ignored.
From the outset the Development Team were committed
to establishing, not only the utility of the product to
the businesses, but whether it contributed to an improvement
in food safety. Highly experienced researchers from
a range of organisations were involved in developing the
largest, most varied, robust research project ever carried
out in the restaurant sector of the catering industry. The
rigorous evaluation that accompanied this project was
one of the key contributory factors that led to its eventual
acceptance by Government, industry and the wider
HACCP community.
The evaluation of this project is still on-going but some
of the key findings that emerged within the first 6 months
are described below.
3.5.1. Acceptance by caterers
The Salford Model was enthusiastically received by the
businesses at the point when it became apparent to the
owner that the purpose was to establish the safety of methods
used in the business and was not related to an ‘inspection’.
The commitment gained was evidenced by the many
hours spent by chefs/managers both during ‘mentor’ visits
and between them. Many chefs commented on the fact that
‘.
. . its
great . .
. it’s the
first time anyone has come to us to
talk about our menu’ and compared this to the confusion
and anxiety that they had felt when enforcement officers
had talked to them about HACCP.
In summary, all businesses were unanimous in their
belief that the ‘pack’ would have a positive effect on their
business, bestowing realistic control mechanisms to manage
food safely. The decision to recruit and train caterers
to undertake the ‘mentoring’ process was confirmed to be
a key factor in the acceptance of the model within the
businesses.
3.5.2. Increase in documentation and record keeping
An essential requirement of any HACCP system is the
need for documents and records (Principle 7). Examining
paperwork is therefore an objective method of finding evidence of control of food safety procedures within a
business.
When asked prior to the start of the project to provide
evidence of any food safety documentation and
record keeping, the majority of the 50 restaurants (65%)
had none at all. Of the remaining 35%, there was a
mixture
of partially complete and piecemeal Good Hygiene
Practice documents and record sheets, mostly unused.
These ranged from a pest control contract to several
sets
of cleaning and temperature charts for staff to fill in.
Many documents were not filled in, or said to be
completed
‘sometimes’ or ‘usually’. Indeed, only 17% had
any form of record keeping. Only two businesses had
some form of HACCP documentation but there were no
records to support these.
Within 6 months of the intervention all businesses had
started to document their food safety practices (100%).
Two thirds of these (66%) had a fully documented system,
with the others were at various stages of completion. As
had been anticipated, a correlation was found between
menu complexity and implementation time. The Diary
was put into action immediately by all the businesses
upon
completion of the documentation. Half (50%) of the pilot
sites were demonstrating full use of all diary
components
within the first 6 months.
These findings are of particular relevance when set
against the backdrop of previous negativity concerning
HACCP focused primarily on perceived demands for
‘excessive paperwork’.
3.5.3. Changes in food safety knowledge, attitude and
behaviour
Food safety knowledge, attitude and behaviour are
difficult
to assess using traditional research methods because
of the sensitive issues of legal compliance with many
true
thoughts and actions deliberately concealed. Such issues
point towards the necessity for a qualitative, in-depth,
discovery-
based method and for this reason the narrative
interview approach (based on Hollway
& Jefferies, 2000)
was selected and used.
Narrative interviews were undertaken in a pre and post
intervention scenario in order to evaluate the
effectiveness
of the new system in the pilot sites. Initial analysis
revealed
several themes that would consequently act as indicators
of
change during subsequent interviews. These included (1)
management control (2) knowledge (3) awareness of risk
and (4) food safety behaviours. Some of the initial
findings
were:
(1) A change in management style was identified in most
businesses. Managers became more involved, adopting
a ‘stricter’ approach to food safety. Responsibilities
were more clearly defined and staff involvement
increased.
(2) For many respondents the pack and mentoring process
allowed the business to gain valuable information
on aspects of food safety. The idea that ‘its all
common sense’ changed to an acceptance that
were
things the respondents did not know and that there
was a need for staff and themselves to be educated
on issues surrounding food safety. Findings also
suggest that the pack bridged the gap between a
managerial
instruction and its effective, ongoing implementation.
Managers reported that staff were ‘now
more inclined’ to change their behaviour as they
aware given valid reasons ‘why’.
(3) Respondents highlighted a marked improvement in
their knowledge and awareness of food safety risks
within their businesses. This was a change from the
initial interviews where many ascertained they
already had a comprehensive understanding of all
food safety and food safety management issues.
(4) Businesses were seen to be taking a more active role
in controlling food safety with routine monitoring
and documentation undertaken, changing practices
where necessary and in some cases investing in new
equipment. Indeed, many businesses took independent
initiatives to experiment, particularly with chilling
and hot-holding, to determine if their practices
met safety limits discussed during ‘mentor’ visits.
In-depth narrative interviews were demonstrated to be
the most effective of all evaluation methods used in
this
project. Its successful within this project has led the
FAO
to recently recommend it use for measuring behaviour
change (FAO, 2006).
3.6. A new method: from ‘model’ to approved ‘system’
The Salford Model version 2, through an iterative
process
of stakeholder review and validation was approved
by the FSA and deemed to comply with the 2006 Regulation
(FSA, 2004). The model was extended to facilitate
its use by catering businesses of all types and sizes
and
the complete system is currently marketed as Menu-Safe
(Taylor & Taylor, 2006). A
shortened version, Safer Food
Better Business (SFBB) has been developed by the FSA as
a ready-to-use package for very small catering
businesses
that are typically independent operations that employ
less
than five staff. The relationship between theses systems
and the classical Codex method is depicted in Fig. 4.
4. Conclusions and recommendations
This action research project was the first attempt,
anywhere
in the world, to empirically develop a food safety
management system for caterers. It remains the only
adaptation
of the ‘classical’ method that has been demonstrated
to have utility to catering businesses and also
contribute to
improvements in food safety management. In particular,
the output demonstrates that there are valid
alternatives
to the ‘classical’ Codex method and that businesses can
comply with HACCP principles without ever having to
‘hear’ or ‘use’ the HACCP jargon. The removal of technical
decision making from the business with the outputs derived
and validated externally, integrated into the system,
is also shown to be a way forward for businesses with
minimal technical knowledge.
The ‘Salford Model’ has had far reaching effects on the
Governments perception of the catering industry and
subsequent
policy. In particular the decision to accept the role
of management within HACCP and to legitimise close
supervision, rather than paper, as an appropriate
management
style for small businesses. The incorporation of
‘exception reporting’ and a section on management ‘Control’
within the new system-despite there being no explicit
legal requirement for this – is evidence of this new
thinking.
This project began with a general review of HACCP
training that concluded that there was a need for better
quality, and greater accessibility, of training across
all
industry sectors (Taylor, 2002). With
regard to the catering
industry it was recognised that the new system provided
a
template for training at a more practical and
appropriate
level. As a consequence the FSA has already initiated
action within the Qualifications & Curriculum
Authority,
Sector Skills Agency and Professional Bodies and in 2006
new National Occupational Standards for the catering
industry were launched.
Perhaps of most significance is the acceptance that
caterers
are not usually ‘out to poison customers’ and will
respond positively to advice and guidance if it is seen
to
have come from a credible source and presented in an
appropriate manner.
In late 2005 plans were announced to roll-out SFBB to
businesses across England (FSA, 2005). A £10
million budget
was been allocated to be spread over 3 years with
money going directly to available local authorities. It
is recommended
that the success of this initiative be rigorously
evaluated, using some of the tools developed and used so
successfully in the development phase of this project.
Acknowledgements
The project was funded by the Food Standards Agency,
the European Social Fund and the University of Salford.
The author would like to thank the Food Standards
Agency for the two year secondment that allowed this
work
to be completed, and the many businesses and stakeholder
representatives that gave up their valuable time to take
part.
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CODEX
Classical HACCP Systems Based on
HACCP Principles
Very Small
Businesses
SFBB
The Salford Model
Small and Less Developed Businesses
(SLDBs)
Manufacturing
Catering
All Catering
Businesses
Menu-Safe
Fig.
4. HACCP methods based based on Codex principles
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