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95°C High-Temperature Industrial Heat Pump
Recover Waste Heat and Produce Reusable High-Temperature Hot Water
The 95°C High-Temperature Industrial Heat Pump is designed to recover low-temperature waste heat from industrial processes and upgrade it into high-temperature hot water for reuse. By converting otherwise wasted thermal energy into a reliable heat source, the system helps reduce fuel consumption, lower operating costs, and improve overall energy efficiency.
With a hot-water outlet temperature of up to 95°C (203°F), this heat pump is suitable for industrial applications that require stable, high-temperature process water, including pasteurization and electroplating.
Key Features
High-Temperature Hot Water Production
The system delivers hot water at temperatures of up to 95°C, making it suitable for industrial processes that traditionally depend on steam, gas-fired boilers, or electric heating systems.
Industrial Waste Heat Recovery
The heat pump captures low-temperature waste heat from sources such as:
- Industrial process water
- Cooling water return lines
- Equipment cooling systems
- Wastewater and drainage streams
- Condenser heat
- Low-temperature exhaust or heat-transfer circuits
This recovered energy is upgraded and transferred to a high-temperature hot-water loop for process reuse.
Improved Energy Efficiency
By reusing available waste heat, the system can reduce the demand for primary energy and help lower greenhouse gas emissions. It provides an efficient alternative to directly generating heat with conventional boilers or electric resistance heaters
Reduced Dependence on Fossil Fuels
The heat pump can help reduce reliance on natural gas, oil, or other fossil fuels used for process heating. It can also be integrated with existing hot-water systems, boilers, storage tanks, and heat exchangers.
Flexible System Integration
The unit can be configured for integration with:
- Industrial hot-water circulation systems
- Process heating loops
- Heat recovery networks
- Buffer or storage tanks
- Plate or shell-and-tube heat exchangers
- Existing boiler systems for hybrid operation
- Automated temperature and flow-control systems
## Typical Applications
### Pasteurization
The 95°C High-Temperature Heat Pump is suitable for pasteurization processes requiring dependable hot water and precise temperature control. Recovered waste heat can be used to preheat or directly supply the hot-water circuit, helping reduce the energy required for heating products, process water, tanks, or cleaning systems.
Potential applications include:
- Food and beverage processing
- Dairy processing
- Beverage production
- Liquid food treatment
- Tank and pipeline pasteurization systems
- Cleaning-in-place hot-water systems
The system can be combined with heat exchangers and temperature-control equipment to meet specific pasteurization requirements.
Electroplating
Electroplating operations often require heated process baths, rinsing water, and hot-water cleaning systems. This heat pump can recover waste heat from cooling and process-water systems and reuse it to heat plating baths or other process circuits.
Potential applications include:
- Plating-bath heating
- Pretreatment and cleaning tanks
- Hot-water rinsing
- Surface-finishing operations
- Metal-treatment processes
- Process-water preheating
Using recovered energy for electroplating can help improve thermal stability while reducing the operating cost associated with conventional electric heaters or boilers.

| Model | LYDSD-50XW/B | LYDSD-60XW/B | LYDSD-80XW/B | LYDSD-160XW/B | |||||||||||||
| Source(℃) | water out | 65℃ | 75℃ | 85℃ | 95℃ | 65℃ | 75℃ | 85℃ | 95℃ | 65℃ | 75℃ | 85℃ | 95℃ | 65℃ | 75℃ | 85℃ | 95℃ |
| 60 | Heating(KW) | 95.40 | 88.50 | 80.40 | 71.40 | 127.00 | 114.00 | 101.20 | 88.60 | 186.70 | 168.30 | 149.80 | 131.30 | 364.07 | 328.19 | 292.11 | 256.04 |
| Input(KW) | 10.60 | 12.50 | 14.60 | 17.00 | 14.30 | 17.20 | 20.10 | 23.80 | 21.50 | 25.00 | 29.30 | 34.40 | 43.00 | 50.00 | 58.60 | 68.80 | |
| COP | 9.00 | 7.08 | 5.51 | 4.20 | 8.88 | 6.63 | 5.03 | 3.72 | 8.68 | 6.73 | 5.11 | 3.82 | 8.47 | 6.56 | 4.98 | 3.72 | |
| 50 | Heating(KW) | 73.00 | 67.60 | 61.40 | 55.10 | 94.20 | 84.70 | 75.50 | 66.60 | 140.00 | 127.10 | 113.60 | 100.20 | 273.00 | 247.85 | 221.52 | 195.39 |
| Input(KW) | 10.50 | 12.35 | 14.50 | 17.00 | 13.90 | 16.50 | 19.60 | 23.10 | 20.70 | 24.40 | 28.70 | 33.90 | 41.40 | 48.80 | 57.40 | 67.80 | |
| COP | 6.95 | 5.47 | 4.23 | 3.24 | 6.78 | 5.13 | 3.85 | 2.88 | 6.76 | 5.21 | 3.96 | 2.96 | 6.59 | 5.08 | 3.86 | 2.88 | |
| 40 | Heating(KW) | 55.00 | 51.00 | 46.50 | 42.70 | 69.10 | 62.70 | 56.60 | 50.00 | 105.20 | 95.60 | 86.20 | 77.10 | 205.14 | 186.42 | 168.09 | 150.35 |
| Input(KW) | 10.30 | 12.30 | 14.30 | 16.90 | 13.60 | 16.10 | 19.10 | 22.50 | 19.90 | 23.80 | 27.10 | 32.10 | 39.80 | 47.60 | 54.20 | 64.20 | |
| COP | 5.34 | 4.15 | 3.25 | 2.53 | 5.08 | 3.89 | 2.96 | 2.22 | 5.29 | 4.02 | 3.18 | 2.40 | 5.15 | 3.92 | 3.10 | 2.34 | |
| 30 | Heating(KW) | 41.00 | 38.50 | 35.30 | 33.00 | 50.00 | 46.70 | 42.90 | 39.20 | 78.10 | 71.80 | 65.90 | 60.30 | 152.30 | 140.01 | 128.51 | 117.59 |
| Input(KW) | 10.00 | 11.90 | 14.10 | 16.60 | 13.20 | 15.70 | 18.60 | 22.00 | 19.70 | 23.30 | 27.60 | 32.60 | 39.40 | 46.60 | 55.20 | 65.20 | |
| COP | 4.10 | 3.24 | 2.50 | 1.99 | 3.79 | 2.97 | 2.31 | 1.78 | 3.96 | 3.08 | 2.39 | 1.85 | 3.87 | 3.00 | 2.33 | 1.80 | |
| 20 | Heating(KW) | 30.00 | 29.00 | 27.50 | 37.50 | 35.20 | 33.00 | 31.00 | 58.00 | 54.30 | 51.10 | 48.30 | 113.10 | 105.89 | 99.65 | ||
| Input(KW) | 9.75 | 11.70 | 13.80 | 12.90 | 15.30 | 18.10 | 21.40 | 19.20 | 22.70 | 26.90 | 31.70 | 38.40 | 45.40 | 53.80 | |||
| COP | 3.08 | 2.48 | 1.99 | 2.91 | 2.30 | 1.82 | 1.45 | 3.02 | 2.39 | 1.90 | 1.52 | 2.95 | 2.33 | 1.85 | |||
| 10 | Heating(KW) | 23.20 | 22.00 | 28.00 | 26.80 | 25.70 | 43.20 | 41.50 | 40.30 | 84.24 | 80.93 | ||||||
| Input(KW) | 9.65 | 11.60 | 12.60 | 14.90 | 17.60 | 18.50 | 21.90 | 25.80 | 37.00 | 43.80 | |||||||
| COP | 2.40 | 1.90 | 2.22 | 1.80 | 1.46 | 2.34 | 1.89 | 1.56 | 2.28 | 1.85 | |||||||