INDUSTRIAL HIGH-TEMPERATURE HEAT PUMP SOLUTIONS
FOR FOOD & BEVERATGE INDUSTRY

Turn waste heat into valuable energy. Reduce costs, cut emissions, and accelerate your industrial decarbonization journey.

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    Industrial Decarbonization

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    Up to 150°C

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    Waste Heat Recovery

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    Customized Solution

Upgrade low-grade heat into high-value process heat — from 85°C hot water to 150°C ultra-high-temperature steam

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.

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Why Partner with Shenling?

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.

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    1. System-Friendly Design & Low Onsite Labor

    Modular skid‑mounted heat pumps, fast on‑site installation.

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    Full-Lifecycle Technical & Bidding Support

    Full‑cycle engineering support for F&B project bids.

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    Industrial-Grade Reliability = Low After-Sales Overhead

    Premium certified units, low downtime for F&B operations.

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    Flexible Customization for Complex F&B Processes

    Custom OEM/ODM heat solutions for unique F&B plant needs.

Core Value Proposition

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    High Temperature Output

    150°C Steam

    Reliable Hot Water And Steam For industrial Production Processes.

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    Energy Recovery

    Reuse Waste Heat

    Capture Heat From Exhaust Air, cooling water, And Process Wastewater.

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    Decarbonization

    Lower CO₂ Emissions

    Reduce Fossil Fuel Consumption And Operational Emissions.

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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.

 

 

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Key Benefits

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    Extreme Energy Efficiency

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    High Temperature Output

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    Renewable Integration

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    Support ESG and carbon goals

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    Waste Heat Recovery

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    Drastic Carbon Reductions

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    Lower Operating Costs

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    Fast Financial Payback

Application Scenarios

Designed For Energy-intensive lndustries Requiring Reliable High-temperature Heating And Steam Generation

  • Application Scenarios - Pasteurization and Sterilization Pasteurization and Sterilization

    Pasteurization and Sterilization

    Supplying precise hot water or indirect steam for dairy, canning, and bottled beverages (60°C to 140°C).

  • Application Scenarios - Drying and Dehydration Drying and Dehydration

    Drying and Dehydration

    Recycling thermal energy for spray drying milk powder, coffee, fruits, and vegetables with high efficiency.

  • Application Scenarios - Washing and Cleaning Washing and Cleaning

    Washing and Cleaning

    Generating 60°C to 85°C hot water  for process cleaning, including CIP and daily plant cleaning.

Energy-Saving Benefits

Compared with conventional boiler systems

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    30-60%

    Energy cost reduction

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    40-70%

    CO₂ 40-70%

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    2-4 yrs

    Typical payback

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Why Shenling

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

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Product FAQ

  • Q1

    What primary industrial processes benefit from this unit?

    It is ideal for recovering waste heat from food processing, brewing, traditional Chinese medicine manufacturing, and other chemical processing plants.

  • Q2

    Where can this heat pump be placed on site?

    Its compact footprint allows flexible installation inside equipment rooms, on rooftops, or in outdoor locations.

  • Q3

    What heat exchanger type and connection styles are implemented?

    The system uses plate heat exchangers with standard flange connections.

  • Q4

    How does the unit lower operational electricity costs?

    It integrates 120°C energy storage technology, enabling high-temperature water generation during off-peak electricity hours to save costs during peak periods.

  • Q5

    What types of compressors are used in these units?

    Depending on capacity requirements, models feature scroll compressors with inverter startup or screw compressors with star-delta startup.

  • Q6

    What is the Coefficient of Performance (COP) for this model line?

    The unit achieves a COP between 4.01 and 4.10 W/W under nominal operating conditions.

  • Q7

    What heating capacities are available across standard models?

    Standard models range from 107.4 kW up to 970.6 kW in nominal heating capacity.

  • Q8

    What eco-friendly refrigerant does the unit use?

    It operates using R245fa eco-friendly refrigerant.

  • Q9

    What is the required heat source inlet water temperature?

    The system operates effectively with waste heat source inlet temperatures ranging from 45°C to 85°C.

  • Q10

    What user-side outlet water temperature does this unit deliver?

    It produces high-temperature hot water ranging from 85°C to 120°C.

Free Technical Consultation

Ready To Reduce Industrial Heating Costs?

Talk With Shenling Engineers About Your Process Temperature,heating Load, And Waste Heat Recovery Potential.

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    Site Assessment

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    Energy-savinganalysis

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    Customized Proposal