F-Gas English Low GWP

Všetky otázky
HFC | Flammable | CO₂ | NH₃
Ľahké otázky | Stredne ťažké otázky | Ťažké otázky

1

Ťažká

What additional protective equipment will you use when soldering systems containing HC refrigerants?


Fire blanket
Flammable gas detector
Tinted safety goggles
High-visibility jacket

2

Ťažká

Why can’t a sealed high-pressure switch be replaced with a standard mechanical one in a system containing a flammable refrigerant?


Dust and moisture may enter
It is a potential source of ignition
The pressure switch setting will not be correct
There is a risk of refrigerant leakage

3

Ťažká

What is the minimum distance from the work area where HC refrigerants are used at which there must be no sources of ignition?


0.5 m
1 m
3 m
2 m

4

Ťažká

What is the maximum safe charge for a recovery cylinder with R32 refrigerant, if it can be charged with 20 kg of R410A?


18 kg
33 kg
20 kg
9 kg

5

Ťažká

According to EN 378, what is the maximum charge of an A3 refrigerant for a display unit (hermetic, with an internal condenser) located in the ground-floor retail area of a supermarket?


10 kg
1.0 kg
1.5 kg
2.5 kg

6

Ťažká

How can a vacuum pump be used safely to evacuate a system containing a flammable refrigerant?


There is no need to evacuate such systems
Position the vacuum pump 3 metres above floor level
Fit a long hose to the pump outlet to remove HC away from the system
Use an ATEX-certified vacuum pump in a well-ventilated area

7

Ťažká

What protective equipment must you have in your car when transporting flammable substances?


Tinted safety goggles
Fire blanket
A fire extinguisher
Thick gloves

8

Ťažká

How would you remove the refrigerant from a 10kg R32 water chiller, located outdoors, before unsoldering the connections?


Recover the R32 until a vacuum is achieved
Vent the R32 to the outside; charge the system with nitrogen until an overpressure is achieved, vent and drain the system twice, charge the system with nitrogen a third time and vent
Vent the R32 to the outside and drain the system
Recover the R32 until a vacuum is achieved, then charge the system with nitrogen to a relative pressure of 0.1 bar g

9

Ťažká

Which of the following leak detection methods cannot be used to locate an HC refrigerant leak?


Electronic leak detector for flammable refrigerants
Soapy water solution
Electronic HFC leak detector
Leak detection foam

10

Ťažká

What is the most important difference between a flammable refrigerant recovery unit and a standard one?


Different low-pressure switch setting
A flammable refrigerant recovery unit has no ignition sources
A different colour for the station
Different connection sizes

11

Ťažká

Which of the following is a source of ignition?


Contactor
Defrost heating element
Ex-certified evaporator fan motor
‘n’ type thermostat

12

Ťažká

What substance is produced when R32 is burnt?


Phosgene
Hydrochloric acid
Hydrogen fluoride
Carbon monoxide

13

Ťažká

What type of refrigerant is R1234ze?


Hydrofluoroolefin
Chloro-fluoro-hydrocarbon
Hydrocarbon
Hydrochlorofluoro-hydrocarbon

14

Ťažká

What hazards does a Group A3 refrigerant pose?


Low toxicity, highly flammable
High toxicity, high flammability
Low toxicity, moderate flammability
High toxicity, moderate flammability

15

Ťažká

According to EN 378, what is the maximum charge of R290 in a cold store measuring 5 m x 3 m x 2.5 m in height (the LFL for R290 is 0.038 kg/m³)?


1.0 kg
4.93 kg
1.5 kg
0.285 kg

16

Ťažká

What is the cooling capacity of R32 compared to R410A?


105%
60%
75%
130%

17

Ťažká

Why are Ex-certified evaporator fan motors used in some systems with flammable refrigerants?


Because they are more energy-efficient
To avoid a source of ignition in the event of a flammable refrigerant leak
Because they are more reliable
Because they must be kept running continuously to disperse the leaking refrigerant

18

Ťažká

Why is the difference in density between HC and HFC refrigerants important?


Because it affects the charge weight
Because it affects energy efficiency
Because it increases operating pressures
Because it affects the charging rate

19

Ťažká

What is the GWP value for R290?


7
A. 0.02
675
3

20

Ťažká

Which of the following is not a source of ignition?


An Ex-certified fan motor
Light switch
Electrical switch
Open mechanical pressure switch

21

Ťažká

What is R290?


Propylene
Propene
Ethane
Butane

22

Ťažká

According to EN 378, what is the maximum HC refrigerant charge for a display unit (hermetic system with an internal condenser) located in the ground-floor shopping area of a supermarket?


150 g
2.5 kg
1.5 kg
1.0 kg

23

Ťažká

Why can’t a standard relay be fitted when retrofitting a compressor’s electrical system for flammable refrigerants?


The method of starting the compressor motor differs from that used with HFCs
It could be a source of ignition
Current consumption differs for compressors using flammable refrigerants compared to those using HFCs
A relay is never required for compressors using flammable refrigerants

24

Ťažká

What is the minimum distance from the work area where HC refrigerants are used at which there must be no sources of ignition?


3 m
5 m
1 m
10 m

25

Ťažká

What is the safe charge for a recovery cylinder with R290 refrigerant, if it can be charged with 10 kg of R404A?


8 kg
3.6 kg
17 kg
20 kg

26

Ťažká

How can a vacuum pump be used safely to evacuate a system containing R290?


Use an ATEX-certified vacuum pump in a well-ventilated area
There is no need to evacuate systems containing R290
Fit a long hose to the pump outlet to remove HC away from the system
Position the vacuum pump 3 metres above floor level

27

Ťažká

In accordance with ADR regulations, what protective equipment must you have in your vehicle when transporting flammable refrigerants?


A fire extinguisher
Tinted safety goggles
Thick gloves
Fire blanket

28

Ťažká

How do you ensure it is safe to light the torch needed to desolder joints in a system that has been evacuated of flammable refrigerant?


Work outdoors
Ensure the area is well ventilated and use a flammable gas detector to check the area
Purge the system with oxygen-free nitrogen
You must not desolder joints on a system containing a flammable refrigerant; they must be cut using a pipe cutter

29

Ťažká

How would you remove the refrigerant from a system containing 100 g of R1270 so that it is ready for the joints to be desoldered?


Recover the R1270 until a vacuum is achieved, then charge the system with nitrogen to a relative pressure of 0.1 bar g
Recover the R1270 until a vacuum is achieved
Vent the R1270 to the outside; charge the system with nitrogen until an overpressure is reached, vent and evacuate the system twice, charge the system with nitrogen a third time and vent
Vent the R1270 to the outside and drain the system

30

Ťažká

Which of the following leak detection methods cannot be used to locate a leak of R290 refrigerant?


Electronic HFC leak detector
Electronic leak detector for flammable refrigerants
Leak detection foam
Fluorescent dye and a UV lamp

31

Ťažká

Why can’t recovery stations designed for HFCs be used with R600a?


The low-pressure switch setting will not be suitable for R600a due to its lower operating pressure
It contains ignition sources
The recovery unit cannot withstand the working pressure of R600a
The oil in the recovery unit is not soluble in R600a

32

Ťažká

According to EN 378, what is the maximum charge of R1234ze in a cold store measuring 5 m x 3 m x 2.5 m in height (the LFL for R1234ze is 0.303 kg/m³)?


2.27 kg
6.18 kg
227 kg
618 kg

33

Ťažká

What type of refrigerant is R32?


Hydrofluoroolefin
Hydrocarbon
Carbon dioxide
Hydrofluorocarbon

34

Ťažká

What hazards do A2L refrigerants pose?


Low toxicity, high flammability
High toxicity, moderate flammability
High toxicity, high flammability
Low toxicity, moderate flammability

35

Ťažká

What danger is associated with the combustion of HFO or HFC refrigerants?


Phosgene is produced
Hydrogen fluoride is produced
Citric acid is produced
Nitrous oxide is produced

36

Ťažká

What is the approximate displacement volume required for a compressor running on R600a compared to one running on R134a to achieve the same cooling capacity?


Seven times
Half
The same
Twice

37

Ťažká

What is the GWP value for R32?


0
675
7
3

38

Ťažká

Why is the accuracy of the charge weight more important for systems critically charged with R290 compared to those using HFCs


Because these systems never have liquid receivers
Due to lower operating pressures
Because R290 is only used in systems with a charge of less than 150g
The charge mass is significantly lower than in an HFC system, as the density is much lower

39

Ťažká

Why does the condenser fan run continuously in some systems using R1270?


To dilute the refrigerant in the event of a leak
To reduce energy consumption
To prevent the build-up of contaminants in the condenser
To ensure that the discharge pressure never becomes excessive

40

Ťažká

What is the role of the liquid separator in systems using flammable or toxic refrigerants?


They are used solely to measure the moisture content of the refrigerant
It separates the liquid from the oil
Heats the refrigerant before it enters the evaporator
It prevents liquid from entering the compressor

41

Ťažká

What is the function of an oil separator in systems using flammable or toxic refrigerants?


They are used solely to measure the moisture content of the refrigerant
It prevents liquid from entering the compressor
Separates oil from the refrigerant and facilitates the return of oil to the compressor
Heats the refrigerant before it enters the evaporator

42

Ťažká

Why do CO₂ refrigeration systems require special attention when separating liquid and oil?


CO₂ does not require lubrication, so separators are unnecessary
CO₂ is flammable, so separators cannot be used
CO₂ cannot be used in systems with sight glasses
CO₂ operates at high pressure, which increases the risk of compressor failure and leaks

43

Ťažká

What is the critical pressure of CO₂ (R744)?


Approximately 74 bar
Approximately 31 bar
Approximately 10 bar
Approximately 120 bar

44

Ťažká

What characterises the transcritical process in CO₂ systems?


It occurs only at low temperatures
The system operates above the critical point and the refrigerant does not condense in the conventional manner
Conventional condensation occurs
It is irrelevant to the operation of the system

45

Ťažká

What characterises the subcritical CO₂ process?


Operation above the critical point
The absence of evaporation
The conventional condensation process below the critical point
The absence of condensation

46

Ťažká

What is the log(p)-h diagram for CO₂ used for?


To measure temperature
For analysing thermodynamic processes in a refrigeration system
To regulate pressure
To detect leaks

47

Ťažká

What can be read from the log(p)-h graph?


Pressure, enthalpy, temperature and state of the refrigerant
Only the amount of refrigerant
Only the temperature
Only the humidity

48

Ťažká

What are CO₂ saturation tables used for?


To determine the relationship between temperature and pressure at saturation
To determine the oil quantity
To measure humidity
To regulate the compressor

49

Ťažká

What does the CO₂ saturation state mean?


A state in which the refrigerant is only a gas
A state of high pressure
Dry ice state
Equilibrium between the liquid and vapour phases

50

Ťažká

When can dry ice (solid CO₂) form?


At high temperature
During normal operation of the system
At high pressure
In the event of a sudden drop in pressure and temperature below the triple point

51

Ťažká

What risks are associated with the formation of dry ice in a CO₂ system?


No risk
Improved efficiency
Blocked pipes and system damage
Pressure reduction

52

Ťažká

How does the CO₂ pressure change as the temperature rises?


Rises sharply
It remains the same
It decreases
It first decreases, then increases

53

Ťažká

Why is understanding the log(p)-h graph particularly important for CO₂?


It is only used for design purposes
It only applies to NH₃
As CO₂ systems operate in different modes (sub- and transcritical) and require detailed analysis
It doesn’t matter

54

Ťažká

What happens to CO₂ above the critical point?


It turns into a liquid
It ceases to conduct heat
It transitions to a supercritical state (no distinction between liquid and gas)
It turns into a solid

55

Ťažká

Why do CO₂ systems require precise pressure control?


Because there are no valves
They do not require control
Due to low pressures
Due to significant pressure changes with temperature fluctuations

56

Ťažká

What is the main difference between a dry evaporator and a flooded evaporator?


A dry evaporator is filled with refrigerant liquid, whilst a flooded evaporator is filled with gas
A dry evaporator allows the entire refrigerant to evaporate in the pipe upstream of the compressor; in a flooded evaporator, part of the refrigerant remains in a liquid state within the evaporator
A dry evaporator has a lower operating pressure than a flooded one
A dry evaporator does not require an expansion valve, whereas a flooded one does

57

Ťažká

What is the typical pressure in deep-freezing systems (below −40 °C) for an evaporator in a system using R717?


Positive pressure, in the range of 5–10 bar
Atmospheric pressure, approximately 1 bar
A pressure varying between 10 and 20 bar
Negative pressure (vacuum), below 0 bar

58

Ťažká

Why are PFAS substances formed as a result of the decomposition of certain F-gases problematic?


They are persistent, accumulate in the environment and may be toxic
They cause rapid cooling of the atmosphere
They are readily biodegradable, so they only pollute the environment for a short time
They are climate-neutral

59

Ťažká

What is the basic requirement when charging a system with R717 (NH₃)?


Charging can be carried out without personal protective equipment
NH₃ can be charged together with air
Charging should take place in a well-ventilated area using appropriate personal protective equipment
Charging must only take place at temperatures below 0°C

60

Ťažká

How should oil be handled in systems using R717?


Oil has no effect on the system’s operation
Oil can be mixed with any refrigerant
The oil should be checked regularly and any excess removed from the lower parts of the units to prevent reduced heat transfer and leaks
The oil does not require any monitoring

61

Ťažká

What is the correct procedure for recovering R717 from a system?


The refrigerant must be recovered into suitable, leak-proof tanks designed for NH₃
Recovery is not required
The refrigerant can be drained into the sewer system
The gas can be released into the atmosphere

62

Ťažká

How should R717 (NH₃) be stored?


In unmarked plastic containers
In any open containers
Near heat sources
In sealed, labelled containers, in a cool and well-ventilated place

63

Ťažká

What should be done in the event of R717 contamination?


Release into the atmosphere
Continue to use without restriction
The refrigerant must be purified or sent for disposal in accordance with regulations
Add water to dilute it

64

Ťažká

What is the main hazard associated with an R717 leak during maintenance work?


Increased cooling efficiency
Damage to electrical equipment only
Toxic to humans and may cause chemical burns
No risk whatsoever

65

Ťažká

What action should be taken if an NH₃ leak is detected?


Evacuate personnel immediately and remove the source of the leak, if it is safe to do so
Close your eyes and carry on working
Increase the pressure in the system
Ignore it and carry on working

66

Ťažká

What role do scrubbers play in NH₃ systems?


They store the refrigerant
Neutralises ammonia through absorption in a liquid (e.g. water)
They are used to measure temperature
They increase the pressure in the system

67

Ťažká

How should the system be prepared before filling with R717?


Check for leaks, remove air and moisture, and create a vacuum
There is no need to check it
Simply start it up
The pressure must be increased above the standard level

68

Ťažká

What are the transport requirements for R717?


Must be transported in suitable, labelled containers in accordance with ADR regulations
It can be transported in open containers
Transport is not subject to regulations
It can be transported without labelling

69

Ťažká

What personal protective equipment is required when working with NH₃?


Workwear only
Safety goggles, gloves and respiratory protective equipment
Only a safety helmet
No requirements

70

Ťažká

What is the main characteristic of R744 (CO₂) refrigeration systems?


Low energy efficiency
Low operating pressures
No need for regulation
Very high operating pressures

71

Ťažká

What are the requirements for piping materials in CO₂ systems?


They must be made exclusively from plastics
It does not matter
They must be able to withstand high pressures (e.g. high-grade steel)
They may be made of any material

72

Ťažká

How does a booster system work in CO₂ installations?


It utilises two stages of compression (low and medium pressure) in a single system
It reduces the amount of refrigerant
It reduces the pressure in the evaporator
It is used to store the refrigerant

73

Ťažká

What is the function of high-pressure control valves in CO₂ systems?


They control the pressure on the high-pressure side and optimise system operation
They regulate oil flow
They lower the evaporator temperature
They are used to store the refrigerant

74

Ťažká

Why is pressure optimisation in CO₂ systems crucial?


It reduces the amount of refrigerant
It reduces the ambient temperature
It enables the system to achieve maximum energy efficiency
It doesn’t matter

75

Ťažká

What role do parallel-operating compressors play in CO₂ systems?


It does not matter
They lower the ambient temperature
They enable gas recovery from the medium-pressure stage and improve efficiency
They increase energy consumption

76

Ťažká

How does an ejector work in a CO₂ system?


It lowers the evaporator temperature
Stores the refrigerant
It uses the energy of the higher-pressure refrigerant to raise the pressure of the refrigerant from the lower stage, which improves efficiency
It increases the amount of refrigerant

77

Ťažká

What is the function of liquid ejectors in CO₂ systems?


They raise the refrigerant temperature
They increase the amount of oil
They assist with liquid recovery and improve evaporator feed
They reduce atmospheric pressure

78

Ťažká

What are the characteristics of partially flooded systems in CO₂ systems?


Lack of regulation
The presence of liquid in the evaporator, which improves heat transfer and efficiency
Low operating pressure
The absence of liquid in the evaporator

79

Ťažká

What is the main risk associated with static pressure in CO₂ systems?


Increased efficiency
A decrease in refrigerant quantity
A rise in pressure resulting from the refrigerant heating up whilst at rest
A drop in temperature

80

Ťažká

How can standstill pressure in CO₂ systems be reduced?


By using parallel compressors and external cooling systems
By increasing the temperature
By increasing the refrigerant charge
By shutting down the system completely

81

Ťažká

What does ‘stagnation’ of a refrigeration system mean in the context of CO₂?


A lack of refrigerant flow, which can lead to increased pressure and safety risks
A drop in temperature
Improved efficiency
Normal system operation

82

Ťažká

Why do CO₂ systems require more advanced automation than traditional systems?


Due to the need for precise control of pressure and temperature
Due to low pressures
They do not require automation
Because there are no valves

83

Ťažká

What must be included on the label of a cylinder containing a flammable refrigerant?


Net weight only
Agent name only
Information about the cylinder owner
The name of the refrigerant, the hazard symbol and basic safety information

84

Ťažká

Why does the absence of a ‘flammable agent’ label on the system pose a significant hazard?


It reduces the system’s efficiency
It may lead to the incorrect selection of oil
It may lead to the use of tools that are a source of ignition
It has no significant impact on safety

85

Ťažká

Which set of information on the label of a flammable agent cylinder is crucial from a safety perspective?


Name of the substance, hazard pictogram, UN number
Manufacturer’s name and country of origin
Cylinder colour and date of manufacture
Gross weight and batch number

86

Ťažká

What is the requirement regarding the labelling of an installation containing a flammable substance?


Labelling is required only in technical rooms
Labelling is not required for hermetically sealed systems
The labelling must indicate the type of substance and the flammability hazard
Colour-coding of pipes is sufficient

87

Ťažká

What are the potential consequences of using unsuitable connections in a system containing a flammable substance?


Risk of leakage and the formation of an explosive mixture
Merely installation difficulties
Merely a reduction in efficiency
No impact on safety

88

Ťažká

What is the purpose of installing gas detectors in a room with a refrigeration system?


Measuring the refrigerant temperature
Monitoring pipe pressure
Regulating compressor capacity
Early detection of refrigerant leaks and prevention of health risks

89

Ťažká

How often should gas detection sensors in the service room be checked?


Only after a leak has occurred
In accordance with the manufacturer’s instructions and applicable health and safety regulations
Before each start-up of the unit
Once every 5 years

90

Ťažká

Where should a gas detector be positioned in accordance with EN 378?


On the ceiling if the gas is lighter or heavier than air; near the floor if it is lighter or heavier
Near the control panel
Anywhere in the room
Only at the entrance to the room

91

Ťažká

How should an employee respond when a gas alarm is triggered?


Leave the room immediately and notify their supervisor
Switch off the system and wait for the alarm to stop
Reduce the pressure in the system
Carry on working until they see a leak

92

Ťažká

What safety checks should be carried out when installing a new refrigeration system?


The colour of pipes and hoses
Is the air filter new?
The presence of health and safety signage, adequate ventilation and gas detectors
Only the compressor power

93

Ťažká

Gas detectors should be installed in rooms where:


Ventilation is natural
Any refrigerant is present, regardless of the quantity
The room is less than 5 m²
The amount of refrigerant exceeds a specified permissible threshold

94

Ťažká

What is the minimum number of emergency exits in a plant room (refrigeration plant room) and how should they be signposted?


One exit, clearly marked in the direction of escape
At least two exits, but signage is optional
Exits do not need to be signposted if the room is small
One exit with an information sign about the refrigerant

95

Ťažká

Which measure, when installing a system using a flammable refrigerant, improves its energy efficiency?


Restriction of ventilation
Increasing the refrigerant charge
Thorough leak testing and vacuuming
No leak test

96

Ťažká

How do leaks affect systems using flammable refrigerants?


They cause refrigerant loss, reduced efficiency and a fire hazard
They lower the temperature
Have no effect
They improve efficiency

97

Ťažká

Why is it important to limit the amount of refrigerant in HC systems?


It lowers the temperature
It has no effect
It reduces the risk of explosion and improves the system’s operational safety
It increases efficiency

98

Ťažká

Why is the cleanliness of heat exchangers in HC systems important?


It doesn’t matter
It increases the pressure
Causes leaks
It improves heat transfer and reduces energy consumption

99

Ťažká

What maintenance measures improve the efficiency of a system using a flammable refrigerant?


Regular checks for leaks and operating parameters
Disabling safety devices
Increasing the refrigerant charge
Lack of servicing

100

Ťažká

How does the correct selection of components affect a system using a flammable refrigerant?


It increases the amount of refrigerant
It ensures safe and optimal operation and minimises energy losses
It lowers the temperature
It doesn’t matter

101

Ťažká

Why is it important to use the correct service tools in HC systems?


It doesn’t matter
It ensures operational safety and reduces refrigerant losses
It increases energy consumption
Causes leaks

102

Ťažká

How does pipe insulation affect the efficiency of systems containing HC?


It reduces energy losses and improves efficiency
It doesn’t matter
Causes leaks
It increases the pressure

103

Ťažká

Which safety class applies to R744?


A2
A1
B2L
A3

104

Ťažká

In an R744 system operating in supercritical mode, the refrigerant entering the evaporator expansion valve is...


Saturated vapour at intermediate pressure
A supercritical fluid
A subcooled liquid
A two-phase mixture at intermediate pressure

105

Ťažká

In R744 supercritical systems, the gas cooler outlet valve controls:


The outlet temperature of the gas cooler
The gas cooler fans
The inlet temperature to the gas cooler
The pressure in the gas cooler

106

Ťažká

Which statement best describes the behaviour of R717 and mineral compressor oil?


R717 mixes very well with compressor oil and easily returns to the compressor
R717 does not mix with compressor oil, so the oil remains in the system on the low-pressure side as a layer beneath the R717
In an R717 system, a return oil line cannot be used because the oil is too hot
R717 does not mix with compressor oil, so the oil remains in the system on the high-pressure side as a layer above the R717

107

Ťažká

What is the main reason for using K65 copper tubing in some R744 systems?


They come in a wider range of diameters
They have good low-temperature performance
They bend easily
They can withstand higher pressures

108

Ťažká

Which of the following statements is correct regarding the installation of Schrader valves?


Schrader valves must not be used in R744 systems
Hydrocarbons leak through Schrader valves
All Schrader valve cores are suitable for all refrigerants
When brazing the valve body to the system, the core must be removed, then refitted and tightened to the correct torque

109

Ťažká

Which refrigerant can be detected using phenolphthalein paper?


R744
R1270
R1234ze
R717

110

Ťažká

How does a refrigerant shortage affect the high-pressure side of the system (without discharge pressure regulation)?


The discharge pressure will be lower, and the subcooling will be lower
Discharge pressure will be lower, subcooling will be higher
Discharge pressure will be higher, and the degree of subcooling will be higher
Discharge pressure will be higher, and the degree of subcooling will be lower

111

Ťažká

What is the benefit of using helium as a tracer gas in nitrogen during a pressure test?


It is non-flammable
It has smaller molecules and diffuses more easily
It has a higher pressure than pure nitrogen
It has a distinct odour

112

Ťažká

Why should an R744 system that has been drained be initially charged with the refrigerant in gaseous form?


To prevent damage to the compressor
To prevent the formation of dry ice
To prevent the drain valve from opening
To ensure that R744 is charged slowly

113

Ťažká

If an R744 system contains moisture because it has not been properly drained, what is the likely consequence?


The formation of hydrogen fluoride, which will decompose into hydrofluoric acid and damage the compressor
Reduced cooling capacity
Excessively high discharge pressure
The formation of carbonic acid, which will cause damage to the system

114

Ťažká

Which system may require manual oil recovery?


An R717 system
Secondary system using R744
R744 cascade system
Supercritical ‘booster’ system using R744

115

Ťažká

The pressure of R744 at a saturation temperature of 20 °C is approx.


56 bar g
25 bar g
14 bar g
90 bar g

116

Ťažká

Which refrigerant is lighter than air?


R1270
R717
R1234ze
R744

117

Ťažká

What hazards are associated with a Class A3 safety agent?


Slightly flammable, lower toxicity
Lower toxicity, does not propagate flames
High flammability, lower toxicity
High toxicity, does not propagate flames

118

Ťažká

18 What is the GWP of R32 (according to AR4)?


0
3945
6
675

119

Ťažká

What factors are taken into account when determining the maximum charge for comfort air-conditioning/heating applications?


Practical limit, height of the indoor unit, floor area
Lower flammability limit, room volume
Lower flammability limit, height of the indoor unit, floor area
Practical limit, room volume

120

Ťažká

What compressor displacement is required for R1270, relative to R404A compressors for the medium-temperature range (cold store)?


50%
600%
Similar
150%

121

Ťažká

At an ambient temperature of 25°C, the standby pressure in the low-pressure stage of an R744 cascade system will typically be…


27.5 bar g
The same as the pressure set on the relief valve
Higher than the maximum permissible pressure in the low-pressure stage
The same as the high-pressure setting on the pressure switch

122

Ťažká

What is the correct definition of critical temperature?


The temperature at which, for certain substances, electrical resistance is zero
The temperature at which a substance changes from a gaseous to a solid state
The temperature above which there are no distinct liquid and gaseous phases
The temperature at which the vapour pressure of a liquid is equal to the ambient pressure surrounding the liquid

123

Ťažká

In a supercritical system, under supercritical conditions, the working fluid in the gas cooler


loses heat during a phase change
it loses heat when its pressure drops
it loses heat as its temperature drops
loses heat at constant temperature and pressure

124

Ťažká

R717 is highly corrosive to


stainless steel
copper
aluminium
titanium

125

Ťažká

What is the effect of repeatedly opening the relief valve?


The valve remains fully open continuously
The valve will not open
The relief pressure rises
The relief pressure drops

126

Ťažká

What is the relationship between the pressure (P) and temperature (T) of nitrogen at the start (1) and end (2) of the leak test?


P2 = (P1 × T1)/T2
P2 = (P1 × T2)/T1
P2 = T1/(P1 × T2)
P2 = T2/(P1 × T1)

127

Ťažká

What is the recommended alarm level for fixed leak detection systems for R717?


5,000 ppm
50,000 ppm
500 ppm
500,000 ppm

128

Ťažká

Why are compressors with a separate electric motor most commonly used in R717 (NH₃) refrigeration systems?


To reduce the condensing pressure
Because compressors with a separate motor are cheaper
Because NH₃ reacts with the motor windings and hermetic compressors are not used
To increase the amount of refrigerant in the system

129

Ťažká

Which type of compressor is most commonly used in large ammonia systems?


Rotary vane compressor
Diaphragm compressor
Hermetic scroll
A reciprocating or screw compressor

130

Ťažká

How is the capacity of a piston compressor regulated in NH₃ systems?


By increasing the condensing pressure
By unloading the cylinders or changing the rotational speed
By reducing the refrigerant charge
Solely by adjusting the oil volume

131

Ťažká

How is the capacity of a screw compressor most commonly controlled?


By closing the suction valve
By adjusting the oil level
By changing the type of oil
By using a slide valve

132

Ťažká

When is two-stage compression used in NH₃ systems?


Exclusively in small systems
Only with water-cooled condensers
At small temperature differences
At very low vapour pressures and high pressure differentials

133

Ťažká

What is the advantage of two-stage compression over single-stage compression?


Lower efficiency
Higher energy consumption
No need for a separator
Higher efficiency and lower discharge temperature

134

Ťažká

How does an evaporative condenser used in NH₃ systems work?


It transfers heat only to the air
Operates without a fan
It utilises the evaporation of water to increase cooling efficiency
It does not require a water supply

135

Ťažká

What is the function of the liquid separator in an NH₃ system?


Increases the discharge temperature
It separates oil from the refrigerant
It prevents liquid from entering the compressor
Regulates the condensing pressure

136

Ťažká

What is the purpose of monitoring the liquid level in the separator?


To maintain the correct refrigerant level and prevent the compressor from flooding
To control the condenser fan
To reduce the condensing temperature
To increase the oil volume

137

Ťažká

What is the role of the float switch in NH₃ systems?


It controls the fan’s operation
It monitors the liquid level in the tank or separator
It is used to detect leaks
It regulates the condensation temperature

138

Ťažká

What is a thermosiphon in NH₃ systems?


A type of evaporator
A defrosting device
An oil circulation system utilising differences in pressure and temperature
A type of safety valve

139

Ťažká

Why are oils that are immiscible with the refrigerant used in NH₃ systems?


To reduce the pressure
Because the oil mixes only with water
To increase the amount of refrigerant
Because NH₃ does not mix with most compressor oils

140

Ťažká

What is the main function of an oil separator in NH₃ systems?


Removing moisture from the system
To increase fan efficiency
To separate the oil from the refrigerant and return the oil to the compressor
To lower the condensation temperature

141

Ťažká

Which NH₃ system features direct evaporation of the refrigerant in the evaporator?


Thermosiphon system
Direct expansion (DX) system
Glycol system
Indirect system

142

Ťažká

What is the characteristic feature of a flooded evaporator system?


The evaporator is filled exclusively with vapour
No separator is used
No level control is required
The evaporator contains a large amount of liquid, which improves heat transfer

143

Ťažká

What is the main difference between a direct and an indirect system?


In an indirect system, NH₃ flows directly into the space being cooled
In an indirect system, NH₃ cools an intermediate medium (e.g. glycol), which in turn cools the load
In an indirect system, no compressor is used
In a direct system, there is no evaporator

144

Ťažká

Which parts of refrigeration systems must be inspected on a mandatory and regular basis in accordance with EU Regulation 1516/2007?


Compressor connections, 2. connections on the liquid refrigerant tank
Only compressor connections, as these are subject to vibration.
Fittings, 2. valves, 3. seals, 4. parts/components exposed to vibration, 5. connections at safety devices.
Connections on the condenser, as there is high pressure and the refrigerant is in liquid form

145

Ťažká

In accordance with EU Regulation 1516/2007, there are several methods of leak testing. What are these methods called?


We distinguish between direct and indirect methods of leak detection.
We distinguish between methods for quality control of supplied materials and leak testing methods that do not involve quality control of supplied materials.
We distinguish between quality control methods for supplied materials and electronic testing methods.
We distinguish between physical and chemical methods.

146

Ťažká

In accordance with EU Regulation 1516/2007, to whom can we entrust the responsibilities for leak testing of refrigeration systems?


The check may be carried out by a specialist in leak testing.
The test may only be carried out by a competent person with the relevant skills, who holds a certificate attesting to the necessary knowledge in this field. They must also hold a certificate for companies regarding the operation and maintenance of refrigeration equipment charged with F-gases.
The check may only be carried out by a person who has previously carried out such a check.
The inspection may be carried out by a person employed and appointed by the owner of the installation.

147

Ťažká

In accordance with EU Regulation 1516/2007, what conditions must be met in order to carry out a leak test on refrigeration systems using ultraviolet (UV) light?


A prerequisite for carrying out a leak test using UV is having the appropriate technical resources, the relevant materials supplied, and suitable safety goggles.
A prerequisite for carrying out a leak test using UV is that such a test is technically feasible.
A prerequisite for carrying out the inspection is holding the relevant authorisation for pressure testing issued by the UDT.
The manufacturer of the refrigeration equipment must confirm that the aforementioned UV method can be used. A UV leak test may be carried out by a qualified person who holds the relevant qualifications (certificate).

148

Ťažká

In accordance with EU Regulation 1516/2007, which leak testing methods are classified as direct leak testing methods?


Leak testing by measuring pressure changes and the method of submerging the device/system in water.
Detection of leaks using a handheld leak detector and/or a fixed leak detection system; 2. Detection of leaks using a special dye with UV-fluorescent properties; 3. Detection of leaks using a foaming solution.
Leak test following the creation of a vacuum and leak detection using a foaming solution.
Leak test using nitrogen with a tracer gas, an electronic detector and pressure measurement.

149

Ťažká

In accordance with EU Regulation 1516/2007, which methods are classified as indirect leak testing methods?


This method is based on the analysis of the following parameters: pressure, temperature, operating pressure, liquid level, oil leakage, etc.
Leak detection using a UV tracer.
It utilises pressure and temperature measurements, as well as an ultrasonic method.
This method is based on electronic leak detection.

150

Ťažká

What does a vacuum leak test involve?


With the vacuum pump running continuously, we are able to maintain the required vacuum level in the system.
After switching off the vacuum pump, we check whether the pressure in the system rises
If the pressure in the refrigeration system were to rise, we switch on the vacuum pump as required.
With the vacuum pump switched on, check whether the pressure in the system rises as a result of a leak.

151

Ťažká

How often should leak tests be carried out on equipment containing 1.5 kg of R404A refrigerant (5.9 tonnes of CO₂ equivalent)?


On initial commissioning.
At least once every 12 months.
Once every six months.
Only when servicing the unit.

152

Ťažká

How often should leak tests be carried out on equipment containing 7 kg of R404A refrigerant (27.45 tonnes of CO₂ equivalent)?


Only when servicing the unit.
On initial commissioning.
Once every six months.
At least once every 12 months.

153

Ťažká

In accordance with Regulation (EU) 2024/573 of the European Parliament and of the Council, a fixed leak detection system is required when:


The installation of a fixed leak detection system is optional, but it helps to reduce the number of leak checks required on the equipment each year.
The refrigerant charge of the refrigeration equipment is at least 100 kg of ODS.
The charge of an F-gas refrigerant in a refrigeration unit is at least 500 tonnes of CO₂ equivalent.
The refrigeration equipment is operated in an enclosed space.

154

Ťažká

Under Regulation (EC) No 1516/2007 and the F-gas Act, which leak detection methods may not be carried out by a person holding a Category E certificate?


Leak detection using a foaming solution.
Leak testing using a fluorescent dye.
Measuring leaks using a handheld leak detector.
Visual leak inspection.

155

Ťažká

According to the current regulation, what sensitivity must a handheld leak detector have?


5 g/year.
3 g/year.
8 g/year.
10 g/year.

156

Ťažká

Within what timeframe must a leak test be carried out on a stationary refrigeration system after a leak has been repaired, in accordance with EU Regulation 2024/573 on F-gases?


Immediately after the repair.
Between 24 hours and 1 month after the repair.
At the next periodic inspection.
At any time.

157

Ťažká

At what intervals should leak tests be carried out on refrigeration equipment containing more than 500 tonnes of CO₂ equivalent of fluorinated greenhouse gases that does not have a leak detection system installed?


Once every 3 months.
Once every 6 months.
Once a month.
Once every 12 months.