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ammable atmospheres. Ensure that the leak detection equipment being
used is suitable for use with all applicable refrigerants, i.e. non-sparking,
adequately sealed or intrinsically safe.
Presence of re extinguisher
If any hot work is to be conducted on the refrigeration equipment or
any associated parts, appropriate re extinguishing equipment shall be
available to hand. Have a dry powder or CO2 re extinguisher adjacent to
the charging area.
No ignition sources
No person carrying out work in relation to a refrigeration system which
involves exposing any pipe work shall use any sources of ignition in such a
manner that it may lead to the risk of re or explosion.
All possible ignition sources, including cigarette smoking, should be kept
suciently far away from the site of installation, repairing, removing
and disposal, during which refrigerant can possibly be released to the
surrounding space. Prior to work taking place, the area around the
equipment is to be surveyed to make sure that there are no ammable
hazards or ignition risks. "No Smoking" signs shall be displayed.
Ventilated area
Ensure that the area is in the open or that it is adequately ventilated
before breaking into the system or conducting any hot work. A degree
of ventilation shall continue during the period that the work is carried
out. The ventilation should safely disperse any released refrigerant and
preferably expel it externally into the atmosphere.
Checks to the refrigeration equipment
Where electrical components are being changed, they shall be t for the
purpose and to the correct specication. At all times the manufacturer’s
maintenance and service guidelines shall be followed.
If in doubt, consult the manufacturer's technical department for assistance.
The following checks shall be applied to installations using ammable
refrigerants:
The actual refrigerant charge is in accordance with the room size within
which the refrigerant containing parts are installed;
The ventilation machinery and outlets are operating adequately and are
not obstructed;
If an indirect refrigerating circuit is being used, the secondary circuit
shall be checked for the presence of refrigerant;
Marking to the equipment continues to be visible and legible. Markings
and signs that are illegible shall be corrected;
Refrigeration pipe or components are installed in a position where
they are unlikely to be exposed to any substance which may corrode
refrigerant containing components, unless the components are
constructed of materials which are inherently resistant to being
corroded or are suitably protected against being so corroded.
Checks to electrical devices
Repair and maintenance to electrical components shall include initial
safety checks and component inspection procedures. If a fault exists that
could compromise safety, then no electrical supply shall be connected to
the circuit until it is satisfactorily dealt with. If the fault cannot be corrected
immediately but it is necessary to continue operation, an adequate
temporary solution shall be used. This shall be reported to the owner of the
equipment so all parties are advised.
Initial safety checks shall include:
That capacitors are discharged: this shall be done in a safe manner to
avoid possibility of sparking;
That no live electrical components and wiring are exposed while
charging, recovering or purging the system;
That there is continuity of earth bonding.
Repairs to sealed components
During repairs to sealed components, all electrical supplies shall be
disconnected from the equipment being worked upon prior to any
removal of sealed covers, etc. If it is absolutely necessary to have an
electrical supply to equipment during servicing, then a permanently
operating form of leak detection shall be located at the most critical point
to warn of a potentially hazardous situation.
Particular attention shall be paid to the following to ensure that by
working on electrical components, the casing is not altered in such a
way that the level of protection is aected. This shall include damage to
cables, excessive number of connections, terminals not made to original
specication, damage to seals, incorrect tting of glands, etc.
Ensure that the apparatus is mounted securely.
Ensure that seals or sealing materials have not degraded to the point
that they no longer serve the purpose of preventing the ingress of
ammable atmospheres. Replacement parts shall be in accordance with
the manufacturer’s specications.
NOTE:
The use of silicon sealant can inhibit the eectiveness of some types of
leak detection equipment. Intrinsically safe components do not have to be
isolated prior to working on them.
Repair to intrinsically safe components
Do not apply any permanent inductive or capacitance loads to the circuit
without ensuring that this will not exceed the permissible voltage and
current permitted for the equipment in use.
Intrinsically safe components are the only types that can be worked on
while live in the presence of a ammable atmosphere. The test apparatus
shall be at the correct rating.
Replace components only with parts specied by the manufacturer. Other
parts may result in the ignition of refrigerant in the atmosphere from a
leak.
Cabling
Check that cabling will not be subject to wear, corrosion, excessive
pressure, vibration, sharp edges or any other adverse environmental
eects. The check shall also take into account the eects of aging or
continual vibration from sources such as compressors or fans.
Detection of ammable refrigerants
Under no circumstances shall potential sources of ignition be used in the
searching for or detection of refrigerant leaks. A halide torch (or any other
detector using a naked ame) shall not be used.
Leak detection methods
The following leak detection methods are deemed acceptable for all
refrigerant systems.
Electronic leak detectors may be used to detect refrigerant leaks but, in
the case of ammable refrigerants, the sensitivity may not be adequate,
or may need re-calibration. (Detection equipment shall be calibrated in a
refrigerant-free area.) Ensure that the detector is not a potential source of
ignition and is suitable for the refrigerant used. Leak detection equipment
shall be set at a percentage of the LFL of the refrigerant and shall be
calibrated to the refrigerant employed, and the appropriate percentage of
gas (25 % maximum) is conrmed.
Leak detection uids are suitable for use with most refrigerants but the
use of detergents containing chlorine shall be avoided as the chlorine may
react with the refrigerant and corrode the copper pipe-work.
If a leak is suspected, all naked ames shall be removed/extinguished.
If a leakage of refrigerant is found which requires brazing, all of the
refrigerant shall be recovered from the system, or isolated (by means of
shut o valves) in a part of the system remote from the leak. For appliances
containing ammable refrigerants, oxygen free nitrogen (OFN) shall then
be purged through the system both before and during the brazing process
Removal and evacuation
When breaking into the refrigerant circuit to make repairs – or for any other
purpose – conventional procedures shall be used. However, for ammable
refrigerants it is important that best practice is followed since ammability
is a consideration. The following procedure shall be adhered to:
remove refrigerant;
14

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