The Function and Working of the Sulfuric Acid Waste – Heat Recycle Economizer

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      https://www.jsksintelligent.com/The-Function-and-Working-of-the-Sulfuric-Acid-Waste-Heat-Recycle-Economizer.html

      The Sulfuric Acid Waste-Heat Recycle Economizer is a sophisticated piece of equipment designed to capture and utilize the residual heat present in flue gases generated during industrial processes. These flue gases, often considered a waste product, contain a significant amount of thermal energy that can be harnessed to preheat boiler feedwater or provide a separate supply of hot water. By doing so, the economizer reduces the need for additional energy input, thereby improving overall energy efficiency and contributing to cost savings.

      Sulfuric Acid Waste - Heat Recycle Economizer

      The Functional Scope  

      Jiangsu Kesheng Intelligent Manufacturing Co., Ltd. is a manufacturer of Sulfuric Acid Waste-Heat Recycle Economizer.

      The primary function of the Sulfuric Acid Waste-Heat Recycle Economizer is to act as an intermediary between the heat source (flue gases) and the heat sink (feedwater or hot water supply). It achieves this by transferring thermal energy from the hot flue gases to the cooler feedwater, effectively raising its temperature. This preheated water can then be returned to the boiler, reducing the energy required to bring it to the desired operating temperature. Alternatively, the heated water can be used directly in processes that require hot water, eliminating the need for additional heating systems.

      Sulfuric Acid Waste-Heat Recycle Economizer Working Principle  

      The operational mechanism of the Sulfuric Acid Waste-Heat Recycle Economizer is based on the principles of heat transfer, specifically utilizing heat pipe technology. Heat pipes are highly efficient devices that transfer heat through a combination of thermal conduction and phase change processes. Here’s a detailed breakdown of how the economizer works:

      1. Heat Absorption: The flue gases, which are typically hot and laden with thermal energy, pass over the heat pipes. The outer surface of the heat pipes, often equipped with fins to maximize surface area, absorbs the heat from the flue gases.

      2. Heat Transfer: Inside the heat pipes, a working fluid (usually water or another suitable liquid) absorbs the heat and vaporizes. This vapor travels to the cooler end of the heat pipe, where it condenses back into a liquid, releasing the latent heat of vaporization.

      3. Heat Release: The released heat is transferred to the feedwater, which flows around the cooler end of the heat pipes. This process raises the temperature of the feedwater, preparing it for further use in the boiler or as a direct hot water supply.

      4. Cycle Continuation: The condensed working fluid returns to the hot end of the heat pipe, where it reabsorbs heat and repeats the cycle. This continuous process ensures efficient and continuous heat transfer from the flue gases to the feedwater.

      http://www.jsksintelligent.com
      Jiangsu Kesheng Intelligent Manufacturing Co., Ltd.

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