How do Heat Pumps work?
Heat pump technology is a technology that transfers heat energy from low-grade heat sources to high-grade heat sources, and is a key technology for future energy conservation and carbon reduction.

Built for factories that need to cut fuel costs, reduce emissions, and replacetraditional boiler-based heating with a cleaner, smarter, and more efficientsystem, Shenling's high-temperature heat pump portfolio covers air-sourceand water-source solutions for hot water, hot air, and steam applicationsacross multiple industrial sectors.

As an HVAC engineering contractor or system integrator, your success depends on reliable equipment, seamless system integration, and strong manufacturer support. Shenling provides industrial-grade high-temperature heat pumps designed with "engineering-friendly" architecture, enabling you to deliver turn-key decarbonization projects to Food & Beverage clients with confidence, speed, and strong profitability.

Modular skid‑mounted heat pumps, fast on‑site installation.
Full‑cycle engineering support for F&B project bids.
Premium certified units, low downtime for F&B operations.
Custom OEM/ODM heat solutions for unique F&B plant needs.
High Temperature Output
Reliable Hot Water And Steam For industrial Production Processes.
Energy Recovery
Capture Heat From Exhaust Air, cooling water, And Process Wastewater.
Decarbonization
Reduce Fossil Fuel Consumption And Operational Emissions.

Heat pump technology is a technology that transfers heat energy from low-grade heat sources to high-grade heat sources, and is a key technology for future energy conservation and carbon reduction.

Extreme Energy Efficiency
High Temperature Output
Renewable Integration
Support ESG and carbon goals

Waste Heat Recovery
Drastic Carbon Reductions
Lower Operating Costs
Fast Financial Payback
Designed For Energy-intensive lndustries Requiring Reliable High-temperature Heating And Steam Generation
Pasteurization and Sterilization
Supplying precise hot water or indirect steam for dairy, canning, and bottled beverages (60°C to 140°C).
Drying and Dehydration
Recycling thermal energy for spray drying milk powder, coffee, fruits, and vegetables with high efficiency.
Washing and Cleaning
Generating 60°C to 85°C hot water for process cleaning, including CIP and daily plant cleaning.
Compared with conventional boiler systems
Energy cost reduction
CO₂ 40-70%
Typical payback

Engineered Around Your Challenge
Customized system design based on process requirements
Industrial application experience across multiple sectors
Integrated solution delivery from design to commissioning
Intelligent control and remote monitoring
Reliable after-sales technical support
Focus on energy efficiency and sustainability

It is ideal for recovering waste heat from food processing, brewing, traditional Chinese medicine manufacturing, and other chemical processing plants.
Its compact footprint allows flexible installation inside equipment rooms, on rooftops, or in outdoor locations.
The system uses plate heat exchangers with standard flange connections.
It integrates 120°C energy storage technology, enabling high-temperature water generation during off-peak electricity hours to save costs during peak periods.
Depending on capacity requirements, models feature scroll compressors with inverter startup or screw compressors with star-delta startup.
The unit achieves a COP between 4.01 and 4.10 W/W under nominal operating conditions.
Standard models range from 107.4 kW up to 970.6 kW in nominal heating capacity.
It operates using R245fa eco-friendly refrigerant.
The system operates effectively with waste heat source inlet temperatures ranging from 45°C to 85°C.
It produces high-temperature hot water ranging from 85°C to 120°C.
Talk With Shenling Engineers About Your Process Temperature,heating Load, And Waste Heat Recovery Potential.
Site Assessment
Energy-savinganalysis
Customized Proposal