Plate and Frame Heat Exchangers Market Size and Share - Outlook Report, Forecast Trends and Growth Analysis (2025-2034)
Description
The global plate and frame heat exchangers market attained a value of more than USD 4.36 Billion in 2024. The market is further expected to grow in the forecast period of 2025-2034 at a CAGR of 6.53% to reach over USD 8.21 Billion by 2034.
Rising Demand for Plate and Frame Heat Exchangers in the Paper and Pulp Industry Bolstering the Market Growth
The increasing use of plate and frame heat exchangers to enhance the cost-effectiveness and efficient heat transfer in the paper and pulp industry is bolstering the market growth. Plate and frame heat exchangers enable the recovery of heat in pulp production to boost the energy-efficiency, which is propelling the growth of the industry. Moreover, the minimal installation costs and investment required by plate and frame heat exchangers are surging their deployment, which is bolstering the industry growth. The development of plate and frame heat exchangers that operate with fibrous fluids is expected to drive the market growth.
The growing demand for plate and frame heat exchangers in the heating, ventilation, and air condition systems is fuelling the market growth. It is extensively used in industrial HVAC systems to promote waste heat recovery and prevent gas leaks, which is augmenting the industry growth. Moreover, the lightweight and excellent heat transfer capacity of plate and frame heat exchangers are surging their utilisation in various applications, thus significantly contributing to the growth of the industry.
Plate and Frame Heat Exchangers: Market Segmentation
Plate and frame heat exchangers are equipment that are made of corrugated frames on plates. The plates can be compressed or added in accordance with the requirement for heat exchange, which makes them versatile. They are typically deployed for liquid-liquid exchange at medium pressures. Plate and frame heat exchangers provide a high value for heat transfer coefficient, due to which they are extensively used in various applications.
The major types of plate and frame heat exchangers are:
The market growth of plate and frame heat exchangers in power generation is augmenting the market growth. The deployment of plate and frame heat exchangers to form combined heat and power (CHP) system is augmenting the growth of the market. In addition, plate and frame heat exchangers are increasingly deployed to save heat energy while enhancing the overall efficiency of power generation plants. As plate and frame heat exchangers are extensively deployed in nuclear power generation plants, the growing demand for sustainable energy is estimated to significantly contribute to the growth of the market.
The development of innovative plate and frame heat exchangers to boost heat exchange performance, reduce cost, enhance efficiency, and counteracts fouling problem, is anticipated to propel the market growth. The use of metals such as copper to increase durability of plate and frame heat exchangers while enabling them to withstand challenging temperature and pressure weather conditions are estimated to invigorate the industry growth. In addition, advanced plate and frame heat exchangers that can be utilised in versatile applications, such as HVAC, engine heating, and dairy production, among others, are increasingly preferred, which is predicted to provide further impetus to the growth of the industry in the forecast period.
Key Industry Players in the Global Plate and Frame Heat Exchangers Market
The report presents a detailed analysis of the following key players in the global plate and frame heat exchangers market, looking into their capacity, market shares, and latest developments like capacity expansions, plant turnarounds, and mergers and acquisitions:
Rising Demand for Plate and Frame Heat Exchangers in the Paper and Pulp Industry Bolstering the Market Growth
The increasing use of plate and frame heat exchangers to enhance the cost-effectiveness and efficient heat transfer in the paper and pulp industry is bolstering the market growth. Plate and frame heat exchangers enable the recovery of heat in pulp production to boost the energy-efficiency, which is propelling the growth of the industry. Moreover, the minimal installation costs and investment required by plate and frame heat exchangers are surging their deployment, which is bolstering the industry growth. The development of plate and frame heat exchangers that operate with fibrous fluids is expected to drive the market growth.
The growing demand for plate and frame heat exchangers in the heating, ventilation, and air condition systems is fuelling the market growth. It is extensively used in industrial HVAC systems to promote waste heat recovery and prevent gas leaks, which is augmenting the industry growth. Moreover, the lightweight and excellent heat transfer capacity of plate and frame heat exchangers are surging their utilisation in various applications, thus significantly contributing to the growth of the industry.
Plate and Frame Heat Exchangers: Market Segmentation
Plate and frame heat exchangers are equipment that are made of corrugated frames on plates. The plates can be compressed or added in accordance with the requirement for heat exchange, which makes them versatile. They are typically deployed for liquid-liquid exchange at medium pressures. Plate and frame heat exchangers provide a high value for heat transfer coefficient, due to which they are extensively used in various applications.
The major types of plate and frame heat exchangers are:
- Welded
- Gasketed
- Brazed
- Others
- Chemical and Petrochemical
- HVAC and Refrigeration
- Food and Beverage
- Oil and Gas
- Power Generation
- Pulp and Paper
- Others
- North America
- Europe
- Asia Pacific
- Latin America
- Middle East and Africa
The market growth of plate and frame heat exchangers in power generation is augmenting the market growth. The deployment of plate and frame heat exchangers to form combined heat and power (CHP) system is augmenting the growth of the market. In addition, plate and frame heat exchangers are increasingly deployed to save heat energy while enhancing the overall efficiency of power generation plants. As plate and frame heat exchangers are extensively deployed in nuclear power generation plants, the growing demand for sustainable energy is estimated to significantly contribute to the growth of the market.
The development of innovative plate and frame heat exchangers to boost heat exchange performance, reduce cost, enhance efficiency, and counteracts fouling problem, is anticipated to propel the market growth. The use of metals such as copper to increase durability of plate and frame heat exchangers while enabling them to withstand challenging temperature and pressure weather conditions are estimated to invigorate the industry growth. In addition, advanced plate and frame heat exchangers that can be utilised in versatile applications, such as HVAC, engine heating, and dairy production, among others, are increasingly preferred, which is predicted to provide further impetus to the growth of the industry in the forecast period.
Key Industry Players in the Global Plate and Frame Heat Exchangers Market
The report presents a detailed analysis of the following key players in the global plate and frame heat exchangers market, looking into their capacity, market shares, and latest developments like capacity expansions, plant turnarounds, and mergers and acquisitions:
- Hisaka Works, Ltd.
- Kelvion Holding GmbH
- Danfoss Group
- Fischer Maschinen- und Apparatebau GmbH
- SGL Carbon SE
- Koch Industries, Inc.
- Others
Table of Contents
171 Pages
- 1 Executive Summary
- 1.1 Market Size 2024-2025
- 1.2 Market Growth 2025(F)-2034(F)
- 1.3 Key Demand Drivers
- 1.4 Key Players and Competitive Structure
- 1.5 Industry Best Practices
- 1.6 Recent Trends and Developments
- 1.7 Industry Outlook
- 2 Market Overview and Stakeholder Insights
- 2.1 Market Trends
- 2.2 Key Verticals
- 2.3 Key Regions
- 2.4 Supplier Power
- 2.5 Buyer Power
- 2.6 Key Market Opportunities and Risks
- 2.7 Key Initiatives by Stakeholders
- 3 Economic Summary
- 3.1 GDP Outlook
- 3.2 GDP Per Capita Growth
- 3.3 Inflation Trends
- 3.4 Democracy Index
- 3.5 Gross Public Debt Ratios
- 3.6 Balance of Payment (BoP) Position
- 3.7 Population Outlook
- 3.8 Urbanisation Trends
- 4 Country Risk Profiles
- 4.1 Country Risk
- 4.2 Business Climate
- 5 Global Plate and Frame Heat Exchangers Market Analysis
- 5.1 Key Industry Highlights
- 5.2 Global Plate and Frame Heat Exchangers Historical Market (2018-2024)
- 5.3 Global Plate and Frame Heat Exchangers Market Forecast (2025-2034)
- 5.4 Global Plate and Frame Heat Exchangers Market by Type
- 5.4.1 Welded
- 5.4.1.1 Historical Trend (2018-2024)
- 5.4.1.2 Forecast Trend (2025-2034)
- 5.4.2 Gasketed
- 5.4.2.1 Historical Trend (2018-2024)
- 5.4.2.2 Forecast Trend (2025-2034)
- 5.4.3 Brazed
- 5.4.3.1 Historical Trend (2018-2024)
- 5.4.3.2 Forecast Trend (2025-2034)
- 5.4.4 Others
- 5.5 Global Plate and Frame Heat Exchangers Market by Application
- 5.5.1 Chemical and Petrochemical
- 5.5.1.1 Historical Trend (2018-2024)
- 5.5.1.2 Forecast Trend (2025-2034)
- 5.5.2 HVAC and Refrigeration
- 5.5.2.1 Historical Trend (2018-2024)
- 5.5.2.2 Forecast Trend (2025-2034)
- 5.5.3 Food and Beverage
- 5.5.3.1 Historical Trend (2018-2024)
- 5.5.3.2 Forecast Trend (2025-2034)
- 5.5.4 Oil and Gas
- 5.5.4.1 Historical Trend (2018-2024)
- 5.5.4.2 Forecast Trend (2025-2034)
- 5.5.5 Power Generation
- 5.5.5.1 Historical Trend (2018-2024)
- 5.5.5.2 Forecast Trend (2025-2034)
- 5.5.6 Pulp and Paper
- 5.5.6.1 Historical Trend (2018-2024)
- 5.5.6.2 Forecast Trend (2025-2034)
- 5.5.7 Others
- 5.6 Global Plate and Frame Heat Exchangers Market by Region
- 5.6.1 North America
- 5.6.1.1 Historical Trend (2018-2024)
- 5.6.1.2 Forecast Trend (2025-2034)
- 5.6.2 Europe
- 5.6.2.1 Historical Trend (2018-2024)
- 5.6.2.2 Forecast Trend (2025-2034)
- 5.6.3 Asia Pacific
- 5.6.3.1 Historical Trend (2018-2024)
- 5.6.3.2 Forecast Trend (2025-2034)
- 5.6.4 Latin America
- 5.6.4.1 Historical Trend (2018-2024)
- 5.6.4.2 Forecast Trend (2025-2034)
- 5.6.5 Middle East and Africa
- 5.6.5.1 Historical Trend (2018-2024)
- 5.6.5.2 Forecast Trend (2025-2034)
- 6 North America Plate and Frame Heat Exchangers Market Analysis
- 6.1 United States of America
- 6.1.1 Historical Trend (2018-2024)
- 6.1.2 Forecast Trend (2025-2034)
- 6.2 Canada
- 6.2.1 Historical Trend (2018-2024)
- 6.2.2 Forecast Trend (2025-2034)
- 7 Europe Plate and Frame Heat Exchangers Market Analysis
- 7.1 United Kingdom
- 7.1.1 Historical Trend (2018-2024)
- 7.1.2 Forecast Trend (2025-2034)
- 7.2 Germany
- 7.2.1 Historical Trend (2018-2024)
- 7.2.2 Forecast Trend (2025-2034)
- 7.3 France
- 7.3.1 Historical Trend (2018-2024)
- 7.3.2 Forecast Trend (2025-2034)
- 7.4 Italy
- 7.4.1 Historical Trend (2018-2024)
- 7.4.2 Forecast Trend (2025-2034)
- 7.5 Others
- 8 Asia Pacific Plate and Frame Heat Exchangers Market Analysis
- 8.1 China
- 8.1.1 Historical Trend (2018-2024)
- 8.1.2 Forecast Trend (2025-2034)
- 8.2 Japan
- 8.2.1 Historical Trend (2018-2024)
- 8.2.2 Forecast Trend (2025-2034)
- 8.3 India
- 8.3.1 Historical Trend (2018-2024)
- 8.3.2 Forecast Trend (2025-2034)
- 8.4 ASEAN
- 8.4.1 Historical Trend (2018-2024)
- 8.4.2 Forecast Trend (2025-2034)
- 8.5 Australia
- 8.5.1 Historical Trend (2018-2024)
- 8.5.2 Forecast Trend (2025-2034)
- 8.6 Others
- 9 Latin America Plate and Frame Heat Exchangers Market Analysis
- 9.1 Brazil
- 9.1.1 Historical Trend (2018-2024)
- 9.1.2 Forecast Trend (2025-2034)
- 9.2 Argentina
- 9.2.1 Historical Trend (2018-2024)
- 9.2.2 Forecast Trend (2025-2034)
- 9.3 Mexico
- 9.3.1 Historical Trend (2018-2024)
- 9.3.2 Forecast Trend (2025-2034)
- 9.4 Others
- 10 Middle East and Africa Plate and Frame Heat Exchangers Market Analysis
- 10.1 Saudi Arabia
- 10.1.1 Historical Trend (2018-2024)
- 10.1.2 Forecast Trend (2025-2034)
- 10.2 United Arab Emirates
- 10.2.1 Historical Trend (2018-2024)
- 10.2.2 Forecast Trend (2025-2034)
- 10.3 Nigeria
- 10.3.1 Historical Trend (2018-2024)
- 10.3.2 Forecast Trend (2025-2034)
- 10.4 South Africa
- 10.4.1 Historical Trend (2018-2024)
- 10.4.2 Forecast Trend (2025-2034)
- 10.5 Others
- 11 Market Dynamics
- 11.1 SWOT Analysis
- 11.1.1 Strengths
- 11.1.2 Weaknesses
- 11.1.3 Opportunities
- 11.1.4 Threats
- 11.2 Porter’s Five Forces Analysis
- 11.2.1 Supplier’s Power
- 11.2.2 Buyer’s Power
- 11.2.3 Threat of New Entrants
- 11.2.4 Degree of Rivalry
- 11.2.5 Threat of Substitutes
- 11.3 Key Indicators for Demand
- 11.4 Key Indicators for Price
- 12 Value Chain Analysis
- 13 Competitive Landscape
- 13.1 Supplier Selection
- 13.2 Key Global Players
- 13.3 Key Regional Players
- 13.4 Key Player Strategies
- 13.5 Company Profiles
- 13.5.1 Hisaka Works, Ltd.
- 13.5.1.1 Company Overview
- 13.5.1.2 Product Portfolio
- 13.5.1.3 Demographic Reach and Achievements
- 13.5.1.4 Certifications
- 13.5.2 Kelvion Holding GmbH
- 13.5.2.1 Company Overview
- 13.5.2.2 Product Portfolio
- 13.5.2.3 Demographic Reach and Achievements
- 13.5.2.4 Certifications
- 13.5.3 Danfoss Group
- 13.5.3.1 Company Overview
- 13.5.3.2 Product Portfolio
- 13.5.3.3 Demographic Reach and Achievements
- 13.5.3.4 Certifications
- 13.5.4 Fischer Maschinen- und Apparatebau GmbH
- 13.5.4.1 Company Overview
- 13.5.4.2 Product Portfolio
- 13.5.4.3 Demographic Reach and Achievements
- 13.5.4.4 Certifications
- 13.5.5 SGL Carbon SE
- 13.5.5.1 Company Overview
- 13.5.5.2 Product Portfolio
- 13.5.5.3 Demographic Reach and Achievements
- 13.5.5.4 Certifications
- 13.5.6 Koch Industries, Inc.
- 13.5.6.1 Company Overview
- 13.5.6.2 Product Portfolio
- 13.5.6.3 Demographic Reach and Achievements
- 13.5.6.4 Certifications
- 13.5.7 Others
Pricing
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