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120℃ Medium-Temperature Phase-Change Thermal Battery

Based on its proprietary high energy storage density and stable phase-change materials, HeatMate has developed an efficient phase-change thermal battery.

Key words:

Quality Heat Battery Storage

Durable Heat Battery Storage

Classification:

Product Details

120℃ Medium-Temperature Phase-Change Thermal Battery

Based on its proprietary high energy storage density and stable phase-change materials, HeatMate has developed an efficient phase-change thermal battery. This battery collects and stores low-cost, intermittent energy sources such as off-peak electricity, solar energy, and industrial waste heat, and releases them in a controlled manner. It is widely used in clean heating, hot-water supply, grid peak regulation, and photovoltaic and solar thermal energy utilization.

 

Parameters
Model

HM-120H700

Dimension (mm)

940(L)x940(W)x1985(H)

Weight (kg)

2000

Phase Change Temperature (℃)

120

Rated Heat Storage Capacity (MJ/kWh)

700/195

Charging Temperature (℃)

125~160

Discharging Temperature (℃)

40~120

Charging/Discharging Power (kW)

20~55

Tube Side Design Pressure (MPa)

1.0

Rated Operating Condition Pressure Drop (kPa)

100(40L/min)

Connection Pipe Diameter

DN32(G1)

 

Core advantages

High Heat Storage Temperature

Stable heat output of 90°C or more to meet the demand for medium-temperature hot water.

 

High Heat Storage Density

Heat storage capacity is 5 to 8 times that of water of the same volume.

 

Low Operating Costs

Utilizes low-cost energy, operational costs reduced by 30% to 70%, achieving low-carbon or zero-carbon heating.

 

Long Service Life

Equipment lifespan exceeds 20 years.

 

Green, Safe, and Environmentally Friendly

Operates at atmospheric pressure, no harmful emissions, non-flammable, recyclable.

 

High Charge and Discharge Efficiency

Charging in 6 to 8 hours, efficiency >95%, less than 5% heat loss after 24 hours of standing.

 

Heat storage/Heating systems

 

01 Medium-Temperature Thermal Battery

Phase-change thermal battery are modularly installed to form thermal storage systems that store different energy sources in the form of heat.

 

02 Heat Source Equipment

Commonly used heat source equipment including thermal oil boilers, solar collectors, medium temperature waste heat boiler, etc.; converting different forms of energy into heat.

 

03 Circulation Pumps

Circulation pumps circulate the working medium (water or thermal oil) to transfer heat from the heat source equipment to the thermal battery or the user end.

 

04 Heat Exchangers

Heat exchangers are often plate heat exchangers or volumetric heat exchangers, which transfer heat from the first network to the second network.

 

05 Intelligent Control System

Intelligent control system realizes the switching of the system's charging and discharging modes and provides heat through the pipeline electric valve.

 

Operation mode

Heat Charging

Heat is stored in the phase-change thermal battery by utilizing cheap energy such as valley electricity, solar energy, and waste heat.

Heat Release

Release the heat stored in the thermal battery; reduce the use of high-priced energy,reduce operating costs, and realize low-carbon or zero-carbon heat supply.

 

Applicable scenarios

 

Heat Battery Storage is an innovative energy solution designed to efficiently capture, store, and release thermal energy when it’s needed most. Engineered for sustainability and performance, Heat Battery Storage offers a reliable way to reduce dependence on conventional heating methods and lower overall energy costs. Whether used in residential, commercial, or industrial applications, this advanced system stores excess heat generated from renewable sources or off-peak electricity and releases it during high-demand periods, ensuring consistent temperature control and energy efficiency.

At the core of Heat Battery Storage is its high-density thermal storage material, which maximizes energy retention while minimizing heat loss. This makes it ideal for use in heating systems, hot water supply, or any setup that requires stable, on-demand thermal energy. With its compact design and low-maintenance operation, Heat Battery Storage seamlessly integrates into existing infrastructure, offering flexibility and convenience for both retrofits and new builds.

One of the main advantages of Heat Battery Storage is its ability to help balance energy supply and demand. By storing heat during periods of low usage and releasing it during peak times, it contributes to grid stability and supports the wider adoption of renewable energy. It also helps reduce carbon emissions by decreasing the reliance on fossil-fuel-based heating systems.

 

The demand for cleaner, smarter, and more efficient energy systems is rapidly increasing, and advanced thermal storage technology is becoming a critical part of this global shift. Quality phase change thermal energy storage offers a powerful solution for managing heat with precision, reliability, and long-term stability. HeatMate represents a new generation of thermal storage innovation, engineered to capture, store, and release energy with exceptional efficiency. It provides a flexible approach to heat management, serving applications ranging from industrial manufacturing to renewable-energy systems, commercial heating, and temperature-sensitive environments.

HeatMate is built around high-performance phase change materials that absorb and release large amounts of heat while maintaining a stable temperature threshold. This unique capability allows users to balance energy demand, reduce peak loads, and optimize the efficiency of heating and cooling systems. Because the technology stores energy in a latent-heat form, it delivers far greater energy density compared to conventional hot-water tanks or ceramic bricks. The result is a compact and cost-effective solution that integrates seamlessly into new or existing systems without requiring extensive infrastructure modifications.

One of the greatest advantages of HeatMate is its ability to smooth out energy fluctuations. In renewable installations, it captures surplus heat from solar or waste-heat sources and stores it for use when natural energy supply drops. In industrial environments, it stabilizes temperatures during production cycles, ensuring consistency while lowering fuel consumption. In commercial buildings, HeatMate supports heating networks by releasing warmth precisely when needed, reducing reliance on electricity during peak-tariff periods and helping clients control their energy bills more effectively.

Real-world cases demonstrate the impact of HeatMate. In a manufacturing plant, the system was used to capture waste heat from equipment and reuse it during warm-up phases, cutting energy consumption significantly while improving process stability. In a renewable-energy heating project, HeatMate stored excess solar thermal energy during midday and released it in the evening, enabling the entire system to operate with minimal reliance on backup heating. These examples highlight how the technology not only enhances system performance but also creates long-term value by reducing operational costs and improving sustainability metrics.

Ultimately, HeatMate solves critical energy-management pain points: unpredictable energy supply, temperature instability, rising utility costs, and the need for compact yet high-capacity storage. By providing a reliable thermal buffer and improving overall system efficiency, it supports industries, commercial users, and energy-project developers in building a more resilient and future-ready energy infrastructure. With its combination of durability, high energy density, and intelligent heat-storage performance, HeatMate represents a powerful step forward in the transition toward cleaner and more efficient thermal-energy systems.

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