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Carbon Block Heat Exchanger

Carbon Block Heat Exchanger

Carbon Block Heat Exchanger

Carbon block heat exchanger is a corrosion-resistant heat exchange device composed of impregnated non-porous carbon blocks. The core structure consists of solid carbon bricks with mutually perpendicular and intersecting channels, which achieve heat exchange between the two fluid media through heat conduction. It is suitable for various harsh industrial conditions with strong corrosiveness and wide temperature ranges, continuously meeting the heat exchange requirements of continuous operations. You can use it in the fields of chemical engineering, new energy, and fine industries, such as cooling of hydrochloric acid synthesis, the recovery of residual heat from lithium battery corrosion waste liquids, and etc. Its structure is sturdy with a long service life, which performs exceptionally well in various highly corrosive chemical working conditions.

Advantages of carbon block heat exchanger

It is mostly assembled by standard block-shaped modules, and you can customize it according to needs.

Extremely strong temperature adaptability

It can operate stably in both low-temperature and high-temperature environments, which has excellent thermal stability.

 

Sterke chemische inertie

It is resistant to strong acids, strong alkalis, and salt solutions, with.

 

Processing and assembly are simple

You can replace a single koolstofblok separately if damaged, which results in low maintenance costs.

 

Moderate self-weight equipment

It is suitable for installation in various chemical production lines, which will not pollute the medium.

 

Uses of carbon block heat exchanger

Chemische industrie

Cooling in pickling process

It is resistant to strong corrosion and can quickly cool the pickling medium, so it can stabilizes the production temperature of pickling.

Heat exchange in acid-base reaction vessels

You can use it as a heating or cooling unit during the synthesis reaction of corrosive materials such as hydrochloric acid, sulfuric acid, and caustic soda. It can isolat the corrosive medium, which avoids metal equipment corrosion and leakage.

 

New energy and lithium battery field

Waste liquid heat exchange treatment

You can use it to achieve cooling of the waste liquid, preheating of the raw materials, and recovery of waste heat. With the dense and non-permeable carbon material, it does not release metal ions and will not pollute lithium battery raw materials. Then perfectly adapting to the strong corrosion and high purity production conditions in the new energy industry.

 

Fine pharmaceuticals and reagents field

Clean heat exchange

Because of its stable chemical properties, it does not undergo chemical reactions with various liquid medicines or organic reagents. And with its uniform heat exchange and high temperature control accuracy, it maintains the cleanliness of the materials. It fully meets the strict standards for pharmaceutical production and the manufacture of high-purity chemical reagents.

 

Environmental protection and wastewater treatment field

Recovery of residual heat from corrosive wastewater

You can use it to recover the residual heat of the wastewater, preheating the production water or providing heating for the factory area. It can achieve thermal energy recycling, reduce the frequency of equipment maintenance and replacement, and significantly lower the operation and maintenance costs of wastewater treatment.

 

Light Industry and Metallurgy Field

Temperature control in acidic and alkaline media

With a smooth inner wall, it is not prone to scaling, which can withstand acid and alkali erosion and wear. It can stably control the temperature of the acid and alkali medium, which is suitable for continuous production in factories to reduce downtime losses.

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