refrigeration chiller – LNEYA Industrial Chillers Manufacturer Supplier https://www.lneya.com Air Chiller and Water Chiller Fri, 23 May 2025 07:57:35 +0000 en-US hourly 1 https://wordpress.org/?v=6.8.2 https://www.lneya.com/wp-content/uploads/2024/05/logo-lneya-150x150.jpg refrigeration chiller – LNEYA Industrial Chillers Manufacturer Supplier https://www.lneya.com 32 32 What Are Refrigerant And Coolant In Refrigeration System? https://www.lneya.com/blog/what-are-refrigerant-and-coolant-in-refrigeration-system.html https://www.lneya.com/blog/what-are-refrigerant-and-coolant-in-refrigeration-system.html#respond Fri, 23 May 2025 07:52:36 +0000 https://www.lneya.com/?p=13878 What Are Refrigerant And Coolant In Refrigeration System?

Many people have trouble distinguishing between refrigerants and coolants. This blog post explains the definitions of both, highlights the key differences between them, and explores their respective roles in a chiller’s refrigeration system.

What Is Refrigerant?

We know that in nature, heat always flows from warmer areas to cooler ones. What makes a refrigerant unique—and earns it the name—is its ability to reverse this natural flow. A refrigerant is capable of taking in heat from colder air and discharging it into warmer air. In effect, it extracts “cooling” from warm air by redirecting the flow of heat. This ability to create a cooling effect even in a hot environment is what defines a refrigerant.

What Is Coolant?

A coolant plays only a supporting role in refrigeration systems. Its primary function is to carry and transport heat from a higher-temperature area to a lower-temperature one. It simply serves as a medium for the natural flow of heat.

For instance, in the refrigeration cycle system of a chiller, heat from the object being cooled is first transferred to the coolant. The coolant then carries that heat to the refrigerant, which is at a lower temperature. Throughout this process, the direction of heat transfer always follows nature’s rule—moving from high temperature to low temperature.

Refrigerant VS Coolant: Understanding The Difference

Refrigerants, also known as cooling media, play a key role in chiller refrigeration systems by absorbing, transferring, and releasing heat. During operation, the refrigerant undergoes phase changes as it switches between liquid and gas states.

In general, refrigerants are expected to have excellent thermodynamic properties. Specifically, the critical temperature should be higher than the condensation temperature, and the saturated pressure at the condensation point should not be excessively high. Optimal refrigerants also feature a low normal boiling point, low specific heat capacity, low adiabatic index, high heat transfer per unit volume, high thermal conductivity, low viscosity, low density, and robust chemical stability.

However, a coolant functions like a delivery agent, carrying the cooling energy generated by the refrigeration system to the areas requiring temperature control. During this process, the coolant remains in the same phase and does not undergo any phase change.

LNEYA's refrigerants are independently developed, environmentally friendly and efficient
LNEYA’s refrigerants are independently developed, environmentally friendly and efficient

What Are The Common Types Of Refrigerant Used In Industrial Chillers?

  • R23
  • R404A
  • R508B
  • R507C
  • R134A
  • R407C
  • R410A

What Are The Common Types Of Coolant For Industrial Chillers?

  • Water
  • Thermal oil (heat transfer oil)

Thermally conductive silicone oil is non-toxic, colorless, and odorless. When used under pressure in a closed system, its concentration needs to be monitored.

  • Ethylene glycol-water solution

An ethylene glycol-water solution is a highly effective option for low-temperature control applications.

  • Brine solution (saltwater solution)

Brine solutions—typically sodium chloride or calcium chloride in water—are highly corrosive. When used in a chiller system, special materials are required for the heat exchanger and pump to withstand the corrosion.

  • Fluorinated oil (fluorinated fluid)

Fluorinated oil is non-flammable and is primarily used in the semiconductor industry. However, systems that use fluorinated oil typically involve higher investment costs.

  • Ethanol

Ethanol has a high risk factor—it is flammable and potentially explosive. It is suitable for low-temperature applications and can be used in refrigeration systems down to -110°C (-166°F). When in use, the circulation pump must be properly sealed. If the volume used exceeds 500 liters, concentration monitoring is required.

  • Liquid dichloromethane

When using liquid dichloromethane as a secondary coolant, the surrounding environment must be open and well-ventilated.

The Role Of Refrigerant And Coolant In Efficient Cooling

In a chiller system, the refrigerant moves through a closed-loop cycle. Inside the evaporator, it absorbs heat from the object being cooled and changes into a vapor. It then moves to the condenser, where it discharges the absorbed heat into the surrounding environment and transforms back into a liquid. The chiller’s refrigeration system relies on the phase changes of the refrigerant to achieve cooling.

The coolant, or cooling medium, is first cooled by the refrigerant in the evaporator. It is then directed to the cooling equipment, where it absorbs heat from the object being cooled, and subsequently returns to the evaporator to be cooled once more. This cycle continues to transfer cooling to the target environment.

In a refrigeration system, the refrigerant is essential—there can be a system without a coolant, but never without a refrigerant.

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glycol chillers

Heating power 3.5kW~15kW

temperature accuracy ±0.3℃

fluid chillers

Heating power 2.5kW~10kW

temperature accuracy ±0.3℃

laboratory chillers

Circulation Pump MAX 5m³/h~28m³/h 2bar

temperature accuracy ±0.5℃

sub zero chillers

Circulation Pump MAX 2.5m³/h~15m³/h 2bar

coolant chillers

Circulation Pump MAX 1.5m³/h~7.7m³/h 2bar

temperature accuracy ±0.5℃

air cooled chillers

Circulation Pump MAX 2.4m³/h~12.1m³/h 2bar

temperature accuracy ±0.5℃

water cooled chillers

Circulation Pump MAX 2.3m³/h~12m³/h 2bar

temperature accuracy ±0.5℃

cryogenic chillers

Circulation Pump MAX 20L/min~40L/min 2bar

temperature accuracy ±0.5℃

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LTZ Variable Frequency Series Refrigeration Circulators Chillers https://www.lneya.com/product/cool-chiller/ltz-variable.html https://www.lneya.com/product/cool-chiller/ltz-variable.html#respond Thu, 16 Jan 2025 05:44:37 +0000 https://www.lneya.com/industrial-chiller/low-temperature-chillers-variable-frequency-series.html
LTZ Variable Frequency Series Refrigeration Circulators Chillers

refrigeration chiller

APPLICATIONS

LTZ series low-temperature freezers use frequency conversion technology to achieve high-efficiency energy saving of products, temperature control range: -100℃~30℃, temperature control accuracy: ±0.3℃

The variable frequency compressor unit changes the operating speed of the DC compressor at any time according to the user's cooling and heating load requirements through the built-in frequency conversion device, thereby avoiding the compressor and electric heating full load confrontation, maintaining a stable working state of the unit and achieving energy-saving effects.

Product Features

 

Model LTZ-6
LTZ-6W
LTZ-10
LTZ-10W
LTZ-15
LTZ-15W
LTZ-20W LTZ-30W LTZ-40W
Temp range 5℃~30℃
Temp control PLC controller, control the water tank outlet temperature screen
Temp control accuracy ±0.5℃
Temp feedback PLC controller, control the water tank outlet temperatureh screen   Temperature feedback PT100 (inlet temperature, outlet temperature)
Cooling capacity 20℃ 23kW 40kW 58kW 79kW 110kW 155kW
Circulation Pump MAX 5m³/h 5m³/h 11m³/h 14m³/h 19m³/h 28m³/h
2bar 2bar 2bar 2bar 2bar 2bar
Compressor Famous brand compressor
Evaporator Plate Heat Exchanger
Operation panel 7-inch color touch screen displays set temp and measured temp, records temp curve, and exports data in Excel format
Safety protection Self-diagnosis function; refrigerator overload protection; high and low pressure sensors, overload relays, thermal protection devices and other safety protection functions.
Refrigerant R134A/R407C R410A/R134A
Interface size DN25 DN32 DN40 DN50 DN50 DN65
Power 400V 50HZ  / 460V 60HZ

 

 

 

Model LTZ2-6
LTZ2-6W
LTZ2-10
LTZ2-10W
LTZ2-15
LTZ2-15W
LTZ2-20W LTZ2-30W LTZ2-40W
Temp range -25℃~30℃
Temp control PLC controller, control the water tank outlet temperature screen
Temp control accuracy ±0.5℃
Temp feedback PLC controller, control the water tank outlet temperatureh screen   Temperature feedback PT100 (inlet temperature, outlet temperature)
Cooling capacity -5℃ 10.2kW 18kW 26.5kW 28.4kW 58.5kW 64.5kW
-15℃ 7kW 11kW 16.2kW 18.2kW 39.6kW 43.32kW
Circulation Pump MAX 2.5m³/h 4.2m³/h 6m³/h 6.7m³/h 15m³/h 15m³/h
2bar 2bar 2bar 2bar 2bar 2bar
Compressor Famous brand compressor
Evaporator Plate Heat Exchanger
Operation panel 7-inch color touch screen displays set temp and measured temp, records temp curve, and exports data in Excel format
Safety protection Self-diagnosis function; refrigerator overload protection; high and low pressure sensors, overload relays, thermal protection devices and other safety protection functions.
Refrigerant R404A/R507C
Interface size DN20 DN25 DN32 DN32 DN50 DN50
Power 400V 50HZ  / 460V 60HZ

 

 

Model LTZ4-6
LTZ4-6W
LTZ4-10
LTZ4-10W
LTZ4-15
LTZ4-15W
LTZ4-20W LTZ4-30W LTZ4-40W
Temp range -45℃~20℃
Temp control PLC controller, control the water tank outlet temperature screen
Temp control accuracy ±0.5℃
Temp feedback PLC controller, control the water tank outlet temperatureh screen   Temperature feedback PT100 (inlet temperature, outlet temperature)
Cooling capacity -20℃ 5.7kW 9.9kW 14.8kW 18.5kW 28.1kW 32.4kW
-35℃ 2.85kW 5.03kW 7.7kW 10.8kW 14.5kW 17.4kW
Circulation Pump MAX 1.5m³/h 2.4m³/h 3.5m³/h 4.5m³/h 6.8m³/h 7.7m³/h
2bar 2bar 2bar 2bar 2bar 2bar
Compressor Famous brand compressor
Evaporator Plate Heat Exchanger
Operation panel 7-inch color touch screen displays set temp and measured temp, records temp curve, and exports data in Excel format
Safety protection Self-diagnosis function; refrigerator overload protection; high and low pressure sensors, overload relays, thermal protection devices and other safety protection functions.
Refrigerant R404A
Interface size DN15 DN20 DN25 DN25 DN32 DN40
Power 400V 50HZ  / 460V 60HZ

 

 

Model LTZ6-6
LTZ6-6W
LTZ6-10
LTZ6-10W
LTZ6-15
LTZ6-15W
LTZ6-20W LTZ6-30W LTZ6-40W
Temp range -60℃~-30℃
Temp control PLC controller, control the water tank outlet temperature screen
Temp control accuracy ±0.5℃
Temp feedback PLC controller, control the water tank outlet temperatureh screen   Temperature feedback PT100 (inlet temperature, outlet temperature)
Cooling capacity -40℃ 6.2kW 9.1kW 12.8kW 17.5kW 28kW 31.7kW
-55℃ 4.9kW 7.2kW 10kW 13.8kW 22.1kW 25.1kW
Circulation Pump MAX 2.4m³/h 3.8m³/h 5.3m³/h 7m³/h 10m³/h 12.1m³/h
2bar 2bar 2bar 2bar 2bar 2bar
Compressor Famous brand compressor
Evaporator Plate Heat Exchanger
Operation panel 7-inch color touch screen displays set temp and measured temp, records temp curve, and exports data in Excel format
Safety protection Self-diagnosis function; refrigerator overload protection; high and low pressure sensors, overload relays, thermal protection devices and other safety protection functions.
Refrigerant R404A/R23
Interface size DN20 DN25 DN32 DN32 DN40 DN40
Power 400V 50HZ  / 460V 60HZ

 

 

 

 

Model LTZ8-6
LTZ8-6W
LTZ8-10
LTZ8-10W
LTZ8-15
LTZ8-15W
LTZ8-20W LTZ8-30W LTZ8-40W
Temp range -80℃~-50℃
Temp control PLC controller, control the water tank outlet temperature screen
Temp control accuracy ±0.5℃
Temp feedback PLC controller, control the water tank outlet temperatureh screen   Temperature feedback PT100 (inlet temperature, outlet temperature)
Cooling capacity -60℃ 5.8kW 8.6kW 12kW 16.5kW 26.6kW 30kW
-70℃ 3.7kW 5.5kW 7.7kW 10.6kW 17kW 19.2kW
Circulation Pump MAX 2.3m³/h 3.4m³/h 4.6m³/h 6.5m³/h 11m³/h 12m³/h
2bar 2bar 2bar 2bar 2bar 2bar
Compressor Famous brand compressor
Evaporator Plate Heat Exchanger
Operation panel 7-inch color touch screen displays set temp and measured temp, records temp curve, and exports data in Excel format
Safety protection Self-diagnosis function; refrigerator overload protection; high and low pressure sensors, overload relays, thermal protection devices and other safety protection functions.
Refrigerant R404A/R508B/R23
Interface size DN20 DN25 DN25 DN32 DN40 DN40
Power 400V 50HZ  / 460V 60HZ

 

 

Model LTZ10-4W LTZ10-6W LTZ10-10W LTZ11-6W LTZ11-10W LTZ11-15W
Temp range -100℃~-65℃ -115℃~-80℃
Temp control PLC controller, control the water tank outlet temperature screen
Temp feedback Temperature feedback PT100
Cooling capacity -80℃ 0.8kW 1.4kW 2.1kW
-90℃ 0.6kW 1.1kW 1.7kW 1.1kW 1.7kW 2.8kW
-100℃ 0.8kW 1.2kW 2kW
Circulation Pump MAX 20L/min 2bar 20L/min 2bar 30L/min 2bar 20L/min 2bar 30L/min 2bar 40L/min 2bar
Compressor Tecumseh, Emerson Copeland, Carrier
Evaporator Plate Heat Exchanger
变频器 ABB
Operation panel 7-inch color touch screen displays set temp and measured temp, records temp curve, and exports data in Excel format
Safety protection Self-diagnosis function; refrigerator overload protection; high and low pressure sensors, overload relays, thermal protection devices and other safety protection functions.
Refrigerant Mixed refrigerant 1 Mixed refrigerant 2
Interface size G3/4 G3/4 G3/4 G3/4 G3/4 G3/4
Power 6kW max 8.5kW max 14kW  max  8.5kW max 14kW  max 20kW  max

 

Applications

Semiconductor FAB process temperature control solution

Semiconductor packaging & testing process temperature control solution

The semiconductor packaging and testing process is a key link in the semiconductor production process, including wafer testing, chip packaging and post-packaging testing. This process not only requires a high degree of precision and reliability, but also requires strict control of temperature to ensure product quality and performance.

Microchannel | Tubular Reactor Temperature Control Solution

Aerospace materials | Test equipment temperature control solution

Temperature control solution for hydrogen energy industry

Temperature control solution for New material | Special gas production

New materials, as newly developed or developing structural materials with excellent performance and functional materials with special properties, have extremely high requirements for temperature control in their research and development and production processes. The production of special gases, such as oxygen, nitrogen, argon and other industrial gases, also requires precise temperature control to ensure product quality and production efficiency.

Temperature control solution for Distillation and concentration

The basic principle of distillation and concentration is to utilize the difference in volatility of the components in the mixture, vaporize the volatile components under heating conditions, and then collect them through condensation to achieve the purpose of separation and concentration. In this complex and delicate process, temperature control technology is not only the key to ensure smooth operation, but also an important factor affecting product quality and efficiency.

Get in touch with our reactor chiller experts

Can’t find a suitable chiller? Or don’t know how to choose a chiller? Contact us now to get chiller details and prices

Of course no problem, as long as you contact us, we will provide you with technical support throughout the process, from pre-sales to after-sales service, there will be someone to follow up

Our products can be exported to any country. As long as you have temperature control needs, we will support the entire process from pre-sales technical support, to export customs, to customs declaration in your country.

We have passed domestic ISO certification, CE certification, SGS certification, and all the certificates required by the market. We have our own technical patents.

Yes, we do! Larger orders typically reduce our unit costs for all equipment orders (more = more savings) and we’ll give you a quote that’s right for you.

Fill out the form on the right or send us an email. We usually respond within an hour. By adding WhatsApp friends, we can respond at any time.

Of course, add us on WhatsApp or send us an email and I will send you a product brochure Or send us an email directly to sales@cnzlj.com

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LNEYA’s industrial chiller/heater is sold globally. Singapore, Malaysia, Japan, South Korea, Qatar, Middle Eastern countries, Australia,various European countries such as Netherlands, Spain and United States and other regions.


LNEYA has a large chiller production workshop equipped with CNC lathes and more advanced chiller manufacturing and processing machines.
lneya uses reliable international brand material accessories, Siemens controllers, Taikang compressors, etc. You can expect our chillers to provide precise temperature control and the best results.

Since our founding in 2006, we have served over 30,000 customers and hold several patents that demonstrate our innovation and reliability. Our chillers are selected for over 100 university laboratory projects worldwide and exported to over 20 countries. We ensure the highest quality through a rigorous 3-step quality control process: visual inspection, performance testing, and electrical safety testing. Our commitment to excellence is further backed by our 24/7 customer support commitment. In addition, we have agents in the United States, Canada, Australia, Russia, and South Korea, making us a global, trusted partner for your chiller needs. Choose lneya for quality and support for your project.
18+

Years of experience

30000+

Satisfied Customers

25000

m² Production Area

80+

Patented Technologies

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HLTZ Series Hydrogen Cooling Chiller https://www.lneya.com/product/cool-chiller/hltz-chiller.html https://www.lneya.com/product/cool-chiller/hltz-chiller.html#respond Wed, 15 Jan 2025 04:03:07 +0000 https://www.lneya.com/industrial-chiller/hltz-series-hydrogen-refrigeration-chiller.html
HLTZ Series Hydrogen Cooling Chiller

refrigeration chiller

APPLICATIONS

Adopt positive pressure explosion-proof system, the positive pressure system has a built-in thermostat to ensure that the system environment is maintained at normal temperature. Hydrogen passes through the internal high-pressure heat exchanger, and the refrigeration system directly exchanges heat with hydrogen through the refrigerant to achieve efficient heat exchange and temperature control; compared with traditional antifreeze or other fluids and hydrogen heat exchange, this equipment uses the medium as the refrigeration system refrigerant (phase change heat), which is more energy efficient.

 

Model HLTZ4-10WPEX HLTZ4-40WPEX HLTZ4-75WPEX
Temperature range -40 ℃~-30℃ -40℃~-30℃ -40℃~-30℃
Temperature control accuracy ±0.3℃ ±0.3℃ ±0.3℃
Temperature feedback Pt100 Pt100 Pt100
Cooling capacity 50HZ -40℃ 4.5kW 16kW 40kW
Compressor Variable frequency compressor
Throttling method Electronic expansion valve
Input, display 7-inch Siemens touch screen\PLC controller
Communication Modbus RTU protocol RS485 interface, Ethernet TCP/IP protocol
Refrigerant R404A/R448A
Inlet and outlet liquid size DN15  PN16 DN20 PN16 DN25 PN16
Water-cooled condenser Requires water supply from chiller or closed cooling tower
Power supply 380V 50HZ optional three-phase/460V 60HZ
Pipe material Copper, SUS304
Casing material Cold rolled plate spraying (REL7035)

 

APPLICATIONS

Temperature control solution for hydrogen energy industry


Since our founding in 2006, we have served over 30,000 customers and hold several patents that demonstrate our innovation and reliability. Our chillers are selected for over 100 university laboratory projects worldwide and exported to over 20 countries. We ensure the highest quality through a rigorous 3-step quality control process: visual inspection, performance testing, and electrical safety testing. Our commitment to excellence is further backed by our 24/7 customer support commitment. In addition, we have agents in the United States, Canada, Australia, Russia, and South Korea, making us a global, trusted partner for your chiller needs. Choose lneya for quality and support for your project.
18+

Years of experience

30000+

Satisfied Customers

25000

m² Production Area

80+

Patented Technologies

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LTZ Variable Frequency M series https://www.lneya.com/industrial-chiller/ltz-variable-frequency-m-series.html https://www.lneya.com/industrial-chiller/ltz-variable-frequency-m-series.html#respond Tue, 24 Sep 2024 07:35:02 +0000 https://www.lneya.com/?p=9677
LJ -45°C~ -10°C

INDOOR WATER CHILLER

LTZ M variable frequency series
  • Cooling capacity @20℃3kW~87kW
  • RefrigerantR407C
  • Place of OriginChina

WeChat 86 15152266993

Model LTZ-1 M LTZ-3M LTZ-6M LTZ-15M LTZ-25WM
LTZ-3WM LTZ-6WM LTZ-15WM
Temperature range 5 ℃~30℃  (Use ethylene glycol water solution below 10℃)
Temperature control accuracy ±0.5℃
Temperature feedback Pt100
Cooling capacity at 20℃ 3kW  10.5kW 21kW 52kW 87kW
Compressor Mitsubishi, Hitachi Variable frequency compressor
Throttling method Thermal expansion valve Electronic expansion valve
DI heat exchanger Plate heat exchanger
Input, display 4.3-inch touch screen 7-inch color touch screen\ PLC controller
Communication Modbus RTU protocol RS485 interface
Safety protection It has self-diagnosis function; refrigerator overload protection; high and low voltage protection, overload relay, thermal protection device, exhaust and suction temperature protection, sensor fault protection and other safety protection functions.。
Refrigerant R407C
Interface size G1/2 G3/4 G3/4    
Water-cooled type @20℃ 600L/H 1800L/H 3600L/H 9000L/H 15000L/H
G3/4 G1 DN32 PN10 DN40 PN10
Water-cooled condenser The condenser of the water-cooled equipment uses a plate heat exchanger and requires a closed cooling tower for water supply
Air-cooled condenser Microchannel heat exchanger
Power supply 380V 50HZ can choose three-phase 220V 460V
Contact pipe material SUS304
Casing material Cold rolled plate sprayed (REL7035)

Alarm, operating status (start, stop, etc.)

LNEYA’s industrial chiller/heater is sold globally. Singapore, Malaysia, Japan, South Korea, Qatar, Middle Eastern countries, various European countries, and the United States and other regions.


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Vacuum chamber cooling chiller https://www.lneya.com/news/industry-news/vacuum-chamber-cooling-chiller.html https://www.lneya.com/news/industry-news/vacuum-chamber-cooling-chiller.html#respond Mon, 09 Sep 2024 07:41:54 +0000 https://www.lneya.com/?p=9223

  1. Wide temperature control range:
    •Vacuum chamber cooling chillers usually need to cover the range from room temperature to extremely low temperatures (such as below -200°C) to meet the needs of different experiments or processes.
    •Industrial freezers are generally used in the medium and low temperature range (such as -40°C to 0°C), mainly for industrial cooling applications.

  1. High-precision temperature control:
    •Vacuum chamber cooling chillers need to provide high-precision temperature control, usually with a control accuracy of ±0.1°C or less, to ensure the stability of experimental or process conditions.
    •The temperature control accuracy of industrial freezers is relatively low, usually within ±1°C or more.

  1. Rapid cooling capability:
    •Vacuum chamber coolers need to have the ability to cool quickly to meet the needs of rapid temperature changes during experiments.
    •The cooling speed of industrial freezers is relatively slow, and they are mainly suitable for applications that require long-term stable cooling.

  1. Circulating cooling system:
    •Vacuum chamber coolers usually use a circulating cooling system, using liquid nitrogen, liquid helium or other refrigerants to ensure uniform temperature distribution.
    •Industrial freezers generally use water or refrigerants (such as Freon) as cooling media, which are suitable for large-scale cooling needs.

  1. Aerospace:
    •Satellite component testing: simulate temperature conditions in space environment.
    •Spacecraft thermal vacuum testing: ensure the performance of spacecraft in space.

  1. Scientific research experiments:
    •Material science: study the performance of materials at different temperatures.
    •Cryogenic physics: conduct ultra-low temperature physics experiments.

  1. Semiconductor manufacturing:
    •Semiconductor device testing: evaluate the performance of devices at different temperatures.
    •Cooling process: Some manufacturing processes need to be carried out at low temperatures.

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