Ultra High Temperature Heat Pump up to 120c Degree

Customization: Available
Fuel: Electric Heating
Installation: Packaged Boiler

Product Description

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Basic Specifications

Model NO.
LYDGS-150XW
Structure
Water Tube
Media
Steam and Water
Water Circulation
Natural Circulation
Drum Placement
Vertical Boiler
Manufacturing Level
A
Burning Style
Electric
Usage
Industrial
Control
Carel
Compressor
Screw
Heat Source
Waste Heat
HS Code
8402190000

Product Description

Use the Steam Grow heat pump to get heat from the wasted hot water, and boil the water into 125ºC steam directly.
Performance Efficiency:

✔ The system's COP is 3.0, which means 1KW electricity can make up 3KW heat for steam.

✔ Lower the running cost of the classic boiler by 50%.

✔ Reduce CO2 emission by 70%.

Ultra High Temperature Heat Pump up to 120c Degree
Model Unit LYDGS75XW LYDGS150XW LYDGS200XW LYDGS260XW
60ºC Heat Source Heating Capacity kW 73 146 219 292
Steam Volume m3/H 0.1/12 0.2/24 0.3/36 0.4/48
Power Input kW 22.8 45.6 68.4 91.2
COP W/W 3.2 3.2 3.2 3.2
Power Supply V/Ph/Hz 380V~415V 50~60Hz
Waste Heat Water Flow m3/H 8 16 24 32
Rated Output Temperature ºC 95~125
Waste Heat Temp Range ºC 40~80
Waste Heat Water Pipe DN32 DN40 DN65 DN80
Dimensions Length mm 1745 1745 2600 2600
Width mm 1000 1500 1500 1500
Height mm 1540 1900 1900 1900
Unit Noise Level dB(A) 65 80 85 90
Net Weight kg 1600 1900 2400 3200

Note: 1. Water Source 60ºC, Output temperature steam/water 120ºC, input water 25ºC.

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Frequently Asked Questions

1. How does the Steam Grow heat pump achieve energy savings?
The system utilizes waste heat from hot water (40-80ºC) and converts it into high-temperature steam. With a COP of 3.0, it generates 3kW of heat for every 1kW of electricity used, reducing running costs by up to 50% compared to classic boilers.
2. What is the maximum output temperature of the steam?
The system can directly boil water into steam with a rated output temperature ranging from 95ºC to 125ºC.
3. What are the environmental benefits of using this system?
By optimizing waste heat recovery and using high-efficiency electric power, the system can reduce CO2 emissions by approximately 70% compared to traditional fossil-fuel-based boilers.
4. What type of control system and compressor does it use?
The unit is equipped with a high-precision Carel control system and a durable Screw compressor to ensure stable and efficient industrial operation.
5. What are the installation requirements for the heat source?
The system requires a waste heat water source with a temperature between 40ºC and 80ºC. Depending on the model, the water pipe specifications range from DN32 to DN80.
6. Is the power supply compatible with international standards?
Yes, the system supports a standard industrial power supply of 380V~415V at 50~60Hz, making it suitable for various global industrial environments.

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