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The LEOMON Industrial CO2 Heat Pump is a high-performance, environmentally sustainable heating solution specifically engineered for factory and industrial process hot water applications. Utilizing natural carbon dioxide as the refrigerant, this advanced heat pump delivers high-temperature hot water while achieving zero ozone depletion potential and ultra-low global warming potential. The unit operates reliably across a wide ambient temperature range, making it suitable for diverse industrial environments including parts cleaning, food drying, industrial washing, chemical heating, and process water heating. With high energy efficiency, it delivers substantial energy savings compared to traditional gas or electric boilers. The intelligent control system with remote monitoring capabilities allows factory operators to optimize performance and reduce operating costs. Whether for a small manufacturing plant or a large industrial facility, this CO2 heat pump provides the reliable, high-temperature hot water needed for demanding production processes, all while supporting corporate sustainability goals.
The unit delivers high-temperature hot water suitable for diverse industrial processes including parts cleaning, food processing, chemical heating, and industrial washing. Unlike conventional heat pumps that struggle to produce high temperatures, the CO2 heat pump's advanced supercritical cycle technology enables higher output temperatures without compromising efficiency. This high-temperature capability allows factories to replace gas or electric boilers with a more sustainable solution.
The unit operates reliably even in cold ambient conditions, producing high-temperature hot water when conventional heat pumps would struggle. This makes it particularly suitable for factories in cold regions or for applications requiring year-round hot water regardless of seasonal temperature changes. The unit maintains high energy efficiency even at low ambient temperatures, ensuring consistent performance throughout the year.
The unit uses natural carbon dioxide as the refrigerant, with zero ozone depletion potential and ultra-low global warming potential. CO2 is non-toxic, non-flammable, and does not contribute to ozone layer depletion. Unlike synthetic refrigerants that may face future regulatory restrictions, CO2 is a future-proof refrigerant that meets current and anticipated environmental regulations. This allows factories to reduce their carbon footprint while maintaining reliable high-temperature hot water production.
The unit delivers significantly more heat energy than the electricity it consumes. For factories with high hot water demand, this translates to substantial energy savings compared to gas boilers or electric resistance heaters. The unit's efficiency remains high across a wide range of operating conditions, including cold ambient temperatures. Over time, the energy savings can significantly offset the initial investment, providing a strong return on investment for industrial facilities.
The unit is equipped with an intelligent control system that allows factory operators to easily set and maintain precise hot water temperatures. The system continuously monitors performance and automatically adjusts to optimize efficiency based on real-time demand. Optional remote monitoring allows facility managers to track performance, receive alerts, and adjust settings from anywhere. This smart functionality reduces labor costs, minimizes downtime, and ensures consistent hot water supply for critical production processes.
| Unit type | KRF-60II/C | KRF-80II/C | KRF-120II/C | KRF-160II/C | |
| Power supply | Three-phase five-wire380V/50Hz | ||||
| Heating mode | Circulating type | ||||
| Standard working condition | Heating capacity(kw) | 59 | 78.5 | 117.1 | 155.2 |
| Input Pover(kw) | 24.6 | 30.8 | 45.5 | 60.9 | |
| Vater flow(m³/h) | 2.03 | 2.7 | 4 | 5.4 | |
| Low tenperature condition | Heating capacity(kw) | 47.1 | 57.1 | 88.2 | 116.9 |
| Input Pover(kw) | 23.2 | 26.4 | 40.1 | 53.1 | |
| Tater flow(m³/h) | 1.72 | 2 | 3 | 4 | |
| Ultra low tenperature working condition | Heating capacity(kw) | 35.6 | 43.1 | 63.8 | 93.1 |
| Input Pover(kw) | 20.5 | 24.8 | 36.7 | 53.5 | |
| Vater flow(m³/h) | 1.22 | 1.48 | 2.19 | 3.2 | |
| Conponent Information | vater pipe joint | DN32 | DN40 | DN40 | DN50 |
| Vater heat exchanger | Jacketed heat exchanger | ||||
| Air Heat Exchanger | Aluminun Fin for copper tube | ||||
| compressor type | Semi-enclosed reciprocating(variable frequency)/R744 | ||||
| Operation Panel | Color touch screen | ||||
| Maxinum outlet temperature(℃) | 75 | ||||
| Refrigerants | R744(CO2)/R134a | ||||
| Design pressure(MPa) | High side 10,lov side 8(R44) | ||||
Manufacturing plants require high-temperature water for parts cleaning, degreasing, and surface treatment processes. The CO2 heat pump delivers consistent hot water for spray washers, immersion tanks, and conveyorized cleaning systems. Its reliable high-temperature output ensures effective cleaning without the need for chemical boosters. The unit's robust construction handles continuous industrial use.
Food processing facilities need hot water for washing, blanching, cooking, and drying operations. The unit provides the high temperatures required for these processes while maintaining strict hygiene standards. The closed-loop system ensures no contamination of process water. For food drying applications, the CO2 heat pump provides optimal temperatures for drying rooms.
Industrial laundries and textile processing plants require large volumes of high-temperature water for washing, bleaching, and dyeing processes. The CO2 heat pump provides the consistent, reliable hot water supply needed for these energy-intensive operations. Its high efficiency significantly reduces operating costs compared to steam or direct-fired heating systems. The unit's ability to maintain high output even in cold ambient conditions makes it suitable for facilities in diverse climates.
This model is perfectly suited for mid-sized hotels, resorts, and conference centers, providing comprehensive hot water solutions for guest rooms, large kitchens and dining facilities, on-site laundry operations, and integrated spas or wellness centers. It efficiently handles the fluctuating demands of high occupancy and peak service times.
Chemical and pharmaceutical plants require precise temperature control for reaction vessels, batch heating, and cleaning processes. The CO2 heat pump delivers accurate, consistent hot water temperatures essential for product quality and process repeatability. The unit's intelligent control system allows operators to program specific temperature profiles for different processes.

After receiving the goods, the buyer will provide a instructional video.
A: Ordinary heat pumps can only produce hot water up to around 60 ℃, and the heating effect is poor when it is cold in winter. The CO ₂ heat pump is like a 'super heat pump', capable of producing hot water above 90 ℃, and can also work stably at -20 ℃ in winter, making it more environmentally friendly. (The refrigerant used is natural carbon dioxide)
A: Conventional heat pumps may experience performance degradation at -10 °C, whereas CO₂ heat pumps maintain normal operation down to -25 °C (as validated in Nordic regions and Canada). However, efficiency may marginally decline under prolonged extreme weather.
A: Unlike standard heat pumps (struggle below -10°C), CO₂ models operate reliably to -25°C.
A: 1 units.
A: Yes. We offer OEM/ODM services, including: Logo printing and Custom packaging.
A: Yes. We provide: Online and on-site training for sales and technicians, Detailed installation manuals and wiring diagrams, Troubleshooting guides, Remote video support during first installations, etc.