1

Közepes

Why is ammonia (NH₃) considered a toxic refrigerant?


It is colourless and odourless, so it is difficult to detect
It does not react with water, which makes it difficult to neutralise
It is highly irritating to the respiratory tract and toxic if inhaled
It is flammable and can form explosive mixtures with air

2

Nehéz

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


A dry evaporator has a lower operating pressure than a flooded one
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 is filled with refrigerant liquid, whilst a flooded evaporator is filled with gas
A dry evaporator does not require an expansion valve, whereas a flooded one does

3

Nehéz

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
A pressure varying between 10 and 20 bar
Negative pressure (vacuum), below 0 bar
Atmospheric pressure, approximately 1 bar

4

Nehéz

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


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

5

Nehéz

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


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

6

Nehéz

How should oil be handled in systems using R717?


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
Oil has no effect on the system’s operation
Oil can be mixed with any refrigerant

7

Nehéz

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


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

8

Nehéz

How should R717 (NH₃) be stored?


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

9

Nehéz

What should be done in the event of R717 contamination?


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

10

Nehéz

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


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

11

Nehéz

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
Ignore it and carry on working
Close your eyes and carry on working
Increase the pressure in the system

12

Nehéz

What role do scrubbers play in NH₃ systems?


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

13

Nehéz

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

14

Nehéz

What are the transport requirements for R717?


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

15

Nehéz

What personal protective equipment is required when working with NH₃?


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

16

Nehéz

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


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
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
R717 mixes very well with compressor oil and easily returns to the compressor
In an R717 system, a return oil line cannot be used because the oil is too hot

17

Nehéz

Which system may require manual oil recovery?


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

18

Nehéz

Which refrigerant is lighter than air?


R1234ze
R1270
R717
R744

19

Nehéz

R717 is highly corrosive to


aluminium
titanium
stainless steel
copper

20

Nehéz

What is the effect of repeatedly opening the relief valve?


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

21

Nehéz

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

22

Nehéz

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


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

23

Nehéz

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


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

24

Nehéz

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


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

25

Nehéz

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


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

26

Nehéz

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


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

27

Nehéz

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

28

Nehéz

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


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

29

Nehéz

How does an evaporative condenser used in NH₃ systems work?


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

30

Nehéz

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


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

31

Nehéz

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 increase the oil volume
To reduce the condensing temperature
To control the condenser fan

32

Nehéz

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


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

33

Nehéz

What is a thermosiphon in NH₃ systems?


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

34

Nehéz

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


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

35

Nehéz

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


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

36

Nehéz

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


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

37

Nehéz

What is the characteristic feature of a flooded evaporator system?


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

38

Nehéz

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


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