| MOQ: | 1 |
| Price: | Negotiable |
| Standard Packaging: | standard export package, or as per customer request |
| Delivery Period: | 1-30 working days |
| Payment Method: | L/C, D/A, D/P, T/T, Western Union |
Leomon heat pumps offer a proven, reliable method for converting waste heat into high-quality process heat and steam. The advantages are numerous: decarbonizing process heat supply, generating heat via electricity, replacing fossil fuels, reducing plant energy costs, and securing the energy supply for production processes and grid services.
Our high-temperature heat pumps bring the economic and environmental benefits of residential heat pumps to large-scale industrial applications. We offer heat pump systems in various configurations to ensure a reliable process steam supply. Leomon heat pumps utilize waste heat from industrial processes (such as cooling water, process fluids, etc.) to drive high-pressure steam production.
The 90°C high-temperature heat pump is suitable for applications such as thermal oil storage projects, dairy plants, beverage facilities, breweries, commercial kitchen sterilization, and the textile printing and dyeing industry. It represents the most energy-efficient and cost-effective method for hot water heating.
Advantages:
1. A new heating method: The high-temperature heat pump extracts heat from the air for heating purposes. It is proven to be low-carbon, eco-friendly, and pollution-free, offering energy savings approximately 60% greater than traditional electric heating methods.
2. Intelligent control and temperature zoning capabilities make operation more convenient and energy-efficient.
3. Highly efficient heating; the system can simultaneously provide free chilled water or air conditioning for production cooling or to improve workshop working environments.
4. Highly automated system, eliminating the need for dedicated personnel to monitor operations.
5. Flexible installation, suitable for both new construction and energy-efficiency retrofits across various types of factories.
6. Customizable system solutions: Tailored solutions (70–95°C hot water) are available for electroplating plants, anodizing facilities, and circuit board manufacturers, based on specific tank sizes and hot water demands.
Working Principle:
The air-source high-temperature heat pump uses electrical energy to drive a compressor and employs a refrigerant to absorb heat from the air, thereby generating hot water. The system operates through the physical phase change (gas-liquid-gas) of the working fluid, continuously absorbing and releasing heat via this cyclic process. By extracting significant heat from the air, the system continuously transfers that heat to the water supply through a heat exchanger. This continuous circulation raises the temperature of the plating solution. The process of converting electrical energy into heat is highly efficient.
Product Configuration
1. Based on the Carnot cycle principle and electrically driven, this equipment uses a refrigerant to absorb heat from the air and generate hot water. It utilizes a compressor from a renowned brand and incorporates the latest fifth-generation US-made twin-helix shell-and-tube heat exchanger to effectively capture ambient heat. The separation of water and electricity ensures an eco-friendly, energy-saving process.
2. Suitable for processes requiring heating, such as hot water rinsing, oxidation, coloring, medium-to-high-temperature sealing, and acid/alkali etching baths.
3. Working Medium Selection: To ensure the high-temperature heat pump operates within stable, permissible pressure limits, a specialized refrigerant is used as the working medium. This refrigerant offers high heat exchange efficiency, causes no environmental pollution, and does not deplete the ozone layer. (The pressure of the KF-01 refrigerant at a condensing temperature of 90°C does not exceed 2.0 MPa, ensuring the safe operation of the high-temperature heat pump system and equipment.)
4. Optimized Refrigeration System Control: This ensures long-term stable operation and a prolonged service life for the unit. Additionally, the system adjusts the heat pump's operating status based on ambient and evaporation temperatures, delivering reliable energy-saving performance.
Specifications
| type | FKH-10I/CGW | FKH-18II/CGW | FKH-35II/CGW |
| Side air outlet | Top out wind | Top out wind | |
| Power specifications | 220V~50Hz | 380V 3N~50Hz | 380V 3N~50Hz |
| Heating capacity under A1 operating condition(20) |
10kW | 18kW | 35kW |
| Heating consumption power under A1 working condition |
4.8kW | 8.2kW | 16.8kW |
| Heating capacity under A2 working condition(7) |
9.5kW | 17kW | 34kW |
| Heating consumption power under A2 working condition |
5kW | 8.9kW | 17.9kW |
| Heating capacity under A3 working condition(-12) |
9.5kW | 17kW | 32kW |
| Heating consumption power under A3 working condition |
6.2kW | 10.6kW | 20.6kW |
| Heating capacity under A4working condition(-20) |
8kW | 16kW | 30kW |
| Heating consumption power under A4 working condition |
5.6kW | 11.1kW | 20.1kW |
| Maximum operating current | 40A | 35A | 70A |
| discharge | 1.7m³/h | 3.1m³/h | 6m³/h |
| noise | ≤56dB(A) | ≤58dB(A) | ≤60dB(A) |
| Water side pressure loss | ≤72kPa | ≤75kPa | ≤75kPa |
| Unit size (length ×widthx height mm) | 1030×410×1390 | 860×780×1780 | 1550×780×1780 |
| CONNECT SIZE | DN32(hexagon nipples)) |
DN32(hexagon nipples)) |
DN40(hexagon nipples) |
| Unit weight(kg) | 160 | 215 | 415 |
Get Further Assistance
Leomon offers high-quality ODM and OEM services, providing solutions customized to your specific needs. Contact us today for more information.
| MOQ: | 1 |
| Price: | Negotiable |
| Standard Packaging: | standard export package, or as per customer request |
| Delivery Period: | 1-30 working days |
| Payment Method: | L/C, D/A, D/P, T/T, Western Union |
Leomon heat pumps offer a proven, reliable method for converting waste heat into high-quality process heat and steam. The advantages are numerous: decarbonizing process heat supply, generating heat via electricity, replacing fossil fuels, reducing plant energy costs, and securing the energy supply for production processes and grid services.
Our high-temperature heat pumps bring the economic and environmental benefits of residential heat pumps to large-scale industrial applications. We offer heat pump systems in various configurations to ensure a reliable process steam supply. Leomon heat pumps utilize waste heat from industrial processes (such as cooling water, process fluids, etc.) to drive high-pressure steam production.
The 90°C high-temperature heat pump is suitable for applications such as thermal oil storage projects, dairy plants, beverage facilities, breweries, commercial kitchen sterilization, and the textile printing and dyeing industry. It represents the most energy-efficient and cost-effective method for hot water heating.
Advantages:
1. A new heating method: The high-temperature heat pump extracts heat from the air for heating purposes. It is proven to be low-carbon, eco-friendly, and pollution-free, offering energy savings approximately 60% greater than traditional electric heating methods.
2. Intelligent control and temperature zoning capabilities make operation more convenient and energy-efficient.
3. Highly efficient heating; the system can simultaneously provide free chilled water or air conditioning for production cooling or to improve workshop working environments.
4. Highly automated system, eliminating the need for dedicated personnel to monitor operations.
5. Flexible installation, suitable for both new construction and energy-efficiency retrofits across various types of factories.
6. Customizable system solutions: Tailored solutions (70–95°C hot water) are available for electroplating plants, anodizing facilities, and circuit board manufacturers, based on specific tank sizes and hot water demands.
Working Principle:
The air-source high-temperature heat pump uses electrical energy to drive a compressor and employs a refrigerant to absorb heat from the air, thereby generating hot water. The system operates through the physical phase change (gas-liquid-gas) of the working fluid, continuously absorbing and releasing heat via this cyclic process. By extracting significant heat from the air, the system continuously transfers that heat to the water supply through a heat exchanger. This continuous circulation raises the temperature of the plating solution. The process of converting electrical energy into heat is highly efficient.
Product Configuration
1. Based on the Carnot cycle principle and electrically driven, this equipment uses a refrigerant to absorb heat from the air and generate hot water. It utilizes a compressor from a renowned brand and incorporates the latest fifth-generation US-made twin-helix shell-and-tube heat exchanger to effectively capture ambient heat. The separation of water and electricity ensures an eco-friendly, energy-saving process.
2. Suitable for processes requiring heating, such as hot water rinsing, oxidation, coloring, medium-to-high-temperature sealing, and acid/alkali etching baths.
3. Working Medium Selection: To ensure the high-temperature heat pump operates within stable, permissible pressure limits, a specialized refrigerant is used as the working medium. This refrigerant offers high heat exchange efficiency, causes no environmental pollution, and does not deplete the ozone layer. (The pressure of the KF-01 refrigerant at a condensing temperature of 90°C does not exceed 2.0 MPa, ensuring the safe operation of the high-temperature heat pump system and equipment.)
4. Optimized Refrigeration System Control: This ensures long-term stable operation and a prolonged service life for the unit. Additionally, the system adjusts the heat pump's operating status based on ambient and evaporation temperatures, delivering reliable energy-saving performance.
Specifications
| type | FKH-10I/CGW | FKH-18II/CGW | FKH-35II/CGW |
| Side air outlet | Top out wind | Top out wind | |
| Power specifications | 220V~50Hz | 380V 3N~50Hz | 380V 3N~50Hz |
| Heating capacity under A1 operating condition(20) |
10kW | 18kW | 35kW |
| Heating consumption power under A1 working condition |
4.8kW | 8.2kW | 16.8kW |
| Heating capacity under A2 working condition(7) |
9.5kW | 17kW | 34kW |
| Heating consumption power under A2 working condition |
5kW | 8.9kW | 17.9kW |
| Heating capacity under A3 working condition(-12) |
9.5kW | 17kW | 32kW |
| Heating consumption power under A3 working condition |
6.2kW | 10.6kW | 20.6kW |
| Heating capacity under A4working condition(-20) |
8kW | 16kW | 30kW |
| Heating consumption power under A4 working condition |
5.6kW | 11.1kW | 20.1kW |
| Maximum operating current | 40A | 35A | 70A |
| discharge | 1.7m³/h | 3.1m³/h | 6m³/h |
| noise | ≤56dB(A) | ≤58dB(A) | ≤60dB(A) |
| Water side pressure loss | ≤72kPa | ≤75kPa | ≤75kPa |
| Unit size (length ×widthx height mm) | 1030×410×1390 | 860×780×1780 | 1550×780×1780 |
| CONNECT SIZE | DN32(hexagon nipples)) |
DN32(hexagon nipples)) |
DN40(hexagon nipples) |
| Unit weight(kg) | 160 | 215 | 415 |
Get Further Assistance
Leomon offers high-quality ODM and OEM services, providing solutions customized to your specific needs. Contact us today for more information.