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Heat Recovery In Paper Industry

Heat Recovery In Paper Industry
Heat Recovery In Paper Industry
Heat Recovery In Paper Industry

Heat Recovery In Paper Industry Specification

  • Technology
  • Plate/Tube Heat Exchanger Technology
  • Shape
  • Rectangular
  • Air Flow Capacity
  • 10000 CFM
  • Frequency
  • 50 Hz
  • Noise Level
  • 72 dB
  • Motor Speed
  • 1450 RPM
  • Energy Efficiency Rating
  • A++
  • Mounting Type
  • Floor Mounted
  • Accessories
  • Heat Exchanger Unit, Control Panel, Ductwork
  • Surface Finish
  • Powder Coated
  • Coverage Area
  • Up to 6000 m
  • Power Source
  • Electric
  • Humidity Range
  • 35% - 95% RH
  • Application
  • Paper Mill Heat Recovery System
  • Automation Grade
  • Automatic
  • Filtration Property
  • Multi-stage Dust & Particle Filtration
  • Material
  • Galvanized Steel
  • Type
  • Industrial
  • Power
  • 250 kW
  • Voltage
  • 380 V
  • Capacity
  • 10000 m/h
  • Installation Type
  • Modular, On-site
  • Usage
  • Paper Manufacturing Process
  • Function
  • Waste Heat Recovery
  • Heat Recovery Efficiency
  • Up to 72%
  • Additional Product Specifications
  • Environmental Compliance
  • RoHS, CE
  • Weight
  • 1800 kg
  • Operating Temperature
  • 0°C to 120°C
  • Color
  • Grey/White
  • Design Pressure
  • 1.5 MPa
  • Service Life
  • 10 Years
  • Safety Features
  • Overload Protection, Emergency Shutdown
  • Insulation
  • Rock Wool Layer 50 mm
  • Air Inlet/Outlet Size
  • DN250
  • Control System
  • PLC with HMI
  • Flow Control
  • VFD Driven Fans
 

Heat Recovery In Paper Industry Trade Information

  • Minimum Order Quantity
  • 1 Number
  • Supply Ability
  • 10 Per Year
  • Delivery Time
  • 15-20 Days
  • Main Domestic Market
  • Chandigarh, Punjab, Delhi, Haryana, Himachal Pradesh, Jammu and Kashmir
 

About Heat Recovery In Paper Industry

In the paper industry a Heat Recovery Unit HRU is employed to capture and utilize waste heat generated during various stages of the manufacturing process The paper production process involves significant thermal energy use and substantial amounts of heat are often lost through exhaust gases hot water and other byproducts


An HRU is designed to intercept this waste heat and transfer it to a usable medium This typically involves using heat exchangers where thermal energy from hot waste streams is transferred to a fluid such as water or air that can be used elsewhere in the process For instance recovered heat can be employed to preheat water used in the process reduce the need for additional heating or improve the efficiency of other systems


Implementing an HRU in the paper industry not only enhances energy efficiency by reducing the demand for external energy sources but also lowers operational costs by making better use of the heat that would otherwise be wasted Additionally it contributes to environmental sustainability by decreasing the industrys overall energy consumption and reducing greenhouse gas emissions By integrating heat recovery into their operations paper manufacturers can achieve significant economic and environmental benefits




FAQs on Heat Recovery in the Paper Industry

1 What is heat recovery in the paper industry


Heat recovery in the paper industry involves capturing waste heat generated during various stages of paper production such as drying and pulping and reusing it for other processes like preheating water generating steam or heating buildings


2 How does heat recovery work in the paper industry


Heat exchangers capture heat from exhaust gases steam or other hot byproducts of the papermaking process This recovered heat can be used for preheating process water generating steam or drying the paper improving overall energy efficiency


3 What are the benefits of heat recovery in the paper industry


Energy Efficiency Reuses waste heat reducing the need for additional fuel or energy

Cost Savings Lowers energy costs by utilizing recovered heat reducing fuel consumption

Reduced Emissions Minimizes greenhouse gas emissions by improving energy use

Process Optimization Improves the efficiency of drying and steam generation key stages in papermaking

4 What stages of paper production benefit most from heat recovery


Drying Process A significant amount of energy is used to dry the paper and heat recovery can reclaim much of the waste heat from drying cylinders

Steam Generation Waste heat can be used to preheat water or generate steam for other parts of the process

Pulping Heat recovery systems can capture heat from exhaust gases during the pulping stage

5 What types of heat recovery systems are used in the paper industry


AirtoAir Heat Exchangers Transfer heat from exhaust air to incoming fresh air reducing heating energy needs

AirtoWater Heat Exchangers Recover heat from air to preheat water used in the papermaking process

Condensate Recovery Systems Capture heat from steam condensate for reuse in preheating or steam generation

6 What factors should be considered when designing a heat recovery system for the paper industry


Source of Waste Heat Identify the processes generating the most waste heat such as drying or steam systems

Heat Demand Assess where recovered heat can be efficiently reused such as preheating water or air

System Compatibility Ensure the heat recovery system is compatible with existing equipment and infrastructure

Environmental Conditions Consider the operating temperatures and humidity levels in the plant

7 How much energy can be saved through heat recovery in the paper industry


The amount of energy saved depends on the efficiency of the heat recovery system and the scale of the plant In some cases heat recovery can reduce energy consumption by 1030 leading to significant cost savings


8 How does heat recovery contribute to sustainability in the paper industry


Heat recovery reduces the need for fossil fuels lowering carbon emissions and overall energy use It supports the industrys move toward more sustainable and environmentally friendly operations


9 What maintenance is required for a heat recovery system in the paper industry


Regular Cleaning Prevent buildup in heat exchangers to maintain efficiency

Inspection of Heat Exchangers Ensure there is no corrosion or damage

System Monitoring Continuously track performance to ensure optimal heat recovery

10 Can heat recovery systems be retrofitted to existing paper production facilities


Yes heat recovery systems can often be integrated into existing processes with minimal disruption improving energy efficiency without the need for major overhauls to the production line



Advanced Heat Recovery for Sustainable Paper Manufacturing

Enhance your paper mills energy efficiency with our automatic industrial heat recovery system. This solution captures waste heat from the manufacturing process and repurposes it, significantly reducing overall power consumption. The system includes a high-performance plate/tube heat exchanger, rock wool insulation, and VFD-driven fans, ensuring consistent operation within the 0C120C temperature range. With a 10-year service life and robust safety features, it is a long-term investment for eco-conscious operations.


Cutting-Edge Control and Automation

Enjoy seamless integration into existing paper mill setups with the innovative PLC and HMI-based control system. This ensures precise system management, real-time monitoring, and user-friendly operation. Automatic shutdown and overload protection ensure continual safe functioning, while remote diagnostics enable swift troubleshooting. The systems modular, floor-mounted design allows for flexible on-site installation and easy scaling as your facility grows.

FAQs of Heat Recovery In Paper Industry:


Q: How does the heat recovery system benefit paper manufacturing facilities?

A: The system captures waste heat produced during paper processing and recycles it back into production, improving overall heating efficiency. This reduces energy consumption, lowers operational costs, and helps plants achieve superior environmental compliance (RoHS, CE), all while maintaining a low noise level and high energy efficiency (A++ rating).

Q: What is the process for installing this heat recovery system in a paper mill?

A: Installation is modular and straightforward. The floor-mounted, rectangular unit is delivered on-site with all necessary components, including the heat exchanger unit, control panel, and ductwork. The system connects to air inlets and outlets (DN250) and is managed through an advanced PLC/HMI control system for automated operation.

Q: Where in the paper manufacturing process is this system typically used?

A: It is typically installed where significant waste heat is generatedsuch as near paper dryers or exhaust stacks. The system then recovers this otherwise lost heat and redirects it to preheat fresh air, improving plant-wide energy efficiency and supporting sustainable operations.

Q: What are the usage requirements for optimal system performance?

A: Optimal performance is achieved when operating within a 0C120C temperature range and 35%%95%% relative humidity. Regular maintenance of VFD-driven fans and multi-stage filtration, as well as periodic inspections of the heat exchanger and insulation, will help sustain up to 72%% heat recovery efficiency throughout the 10-year service life.

Q: How does the control system enhance reliability and safety?

A: The system employs a PLC with HMI for precise monitoring and automation. Integrated safety features include overload protection and emergency shutdown, providing operators with both control and peace of mind. Real-time alerts and remote management streamline maintenance and incident response.

Q: What additional product specifications should be considered for integration?

A: Key specifications include a design pressure of 1.5 MPa, air flow capacity of 10,000 CFM, a power requirement of 250 kW at 380 V (50 Hz), and robust powder-coated galvanized steel construction (weight: 1800 kg, capacity: 10,000 m/h, coverage up to 6000 m). The system offers a 50 mm rock wool insulation layer and operates at a motor speed of 1450 RPM, ensuring durability and efficiency in industrial environments.

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