Heat Exchange Compressor Heat Recovery System Eco Friendly Solution 1 T/H-100 T/H

Place of Origin Tai'an, Shandong
Brand Name Tonglida
Model Number 1T/H-100T/H
Minimum Order Quantity 1 unit
Delivery Time As per requirements

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Product Details
Features Energy-saving, Environmentally Friendly, Simple Structure Origin Tai'an, Shandong
Brand Tonglida Application Field Hot Water Supply
Material Carbon Steel Product Waste Heat Recovery Device
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1 t/h compressor heat recovery system

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1 t/h heat recovery system for air compressor

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100 t/h compressor heat recovery system

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Product Description

 

 

Product Description:

 

The Waste Heat Recovery Device for Air Compressors is an innovative and effective equipment developed for the purpose of utilizing the surplus heat produced by centrifugal, oil-free or screw air compressors while they are running. The recovery process mainly involves oil recovery, supported by gas recovery as an auxiliary. The system operates with a cyclic energy recovery system that functions automatically 24 hours a day, 7 days a week.

One of the key features of this system is that it adopts a standby mode when the water level in the insulated water tank reaches its maximum level, allowing the system to achieve completely unmanned operation. To make full use of the waste heat, a standalone Waste Heat Recovery System for air compressors comprises a water replenishment system, a circulation system, a heating system, and a control system.

The recovery of wasted heat is primarily achieved through oil recovery, while the gas recovery serves as an auxiliary. The system operates with a cyclic energy recovery system that works automatically around the clock. The automatic standby mode is triggered when the water level in the insulated tank reaches its maximum, which enables the system to run unmanned all the time.

A comprehensive Waste Heat Recovery System for air compressors consists of a water replenishment system, circulation system, heating system, and control system. The system functions through oil recovery, with gas recovery playing a subsidiary role in it. The cyclic energy recovery system incorporated in the system works continuously and automatically, 24/7. The system enters standby mode, operating completely unmanned, once the maximum water level is reached in the insulated water tank.

The Waste Heat Recovery Device for Air Compressors is designed to effectively recover wasted heat from centrifugal, oil-free, or screw air compressors while they are operating. The recovery mainly works through oil recovery, supplemented by gas recovery. The system operates with a cyclic energy recovery system that functions automatically non-stop. When the water level in the insulated water tank reaches the maximum level, the system goes into standby mode, operating without human intervention. A standalone Waste Heat Recovery System for air compressors includes a water replenishment system, circulation system, heating system, and control system.

 

Features:

 

Energy-saving, Environmentally Friendly, Simple Structure

 

Technical Parameters:

 

Improved Installation Process

The installation process for the waste heat recovery device has been simplified to reduce the complexity and time required for construction. This means that the device can be easily installed, saving time and effort for the installer and ultimately reducing the costs for the client.

 
Operating Cost Savings

Once the waste heat recovery device has been installed, it operates without any additional costs. This makes it a cost-effective long-term solution for energy savings. The client can enjoy the benefits of the device without worrying about ongoing operating costs, which makes it an attractive choice for those who want to reduce energy consumption and costs.

 
Safe, Reliable, and Environmentally Friendly

The waste heat recovery device has been designed with safety features and operates reliably. It not only helps conserve energy by utilizing waste heat, but also contributes to environmental protection by reducing energy consumption. This makes it a smart choice for environmentally conscious clients who want to reduce their carbon footprint.

 
Intelligent Design Features

The waste heat recovery device incorporates intelligent features, such as automated operation and control systems, which allow for efficient and optimized performance. These design features assist in ensuring optimal energy savings and reducing utility bills for the client. The intelligent design of the device ensures maximum performance through its automated systems, ensuring that the device operates at peak performance for optimal energy savings.

 
Reduced Energy Consumption

The main benefit of the waste heat recovery device is the energy savings it provides. By capturing and utilizing waste heat, the device helps conserve electricity. This leads to reduced energy consumption and lower utility bills for the client. The device pays for itself through energy savings and helps the client in reducing their energy consumption in the long run.

 

Applications:

Air compressors are versatile machines that can be used for a wide range of applications. They operate by converting electrical energy into mechanical thermal energy based on the principle of energy conservation. However, during their long-term continuous operation, a significant amount of thermal energy is wasted. To address this problem, a waste heat recovery device is designed to recover and utilize this wasted energy.

The waste heat recovery device has multiple purposes and can provide hot water for enterprise and industrial use. It can also be used to heat the water in air conditioning systems, clean pools, industrial drying processes, and for winter heating. By recovering and utilizing the waste heat, this device can significantly reduce the costs associated with hot water usage for businesses, which can become a profit-generating factor for enterprises.

  • Can provide hot water for enterprise and industrial use
  • Can be used to heat water for air conditioning systems
  • Can be used in cleaning pools
  • Can be used in industrial drying processes
  • Can be used for winter heating