Silicon Carbide Heat Exchanger

Silicon Carbide Heat Exchanger

Silicon carbide heat exchanger is a special heat exchange equipment assembled with silicon carbide ceramics that undergo reactive sintering or atmospheric sintering as the core heat exchange component. Because its outstanding high thermal conductivity, extremely strong corrosion resistance, excellent thermal shock resistance, and the characteristics of being dense and leak-proof. It performs exceptionally well in the fields of fine chemicals, wet metallurgy, and environmental protection waste treatment. And it is highly suitable for heat recovery and medium exchange requirements in strong corrosive and high-temperature working conditions. You can use it in waste acid recovery, pharmaceutical and chemical synthesis, and acid washing production lines and other process scenarios.

Advantages of silicon carbide heat exchanger

It can be made in various overall structures such as shell-and-tube type, plate type, modular type, etc.

Excellent high-temperature thermal stability

It can operate stably for a long time under high-temperature and alternating hot-cold conditions.

 

Resistant to rapid cooling and heating

Due to this, it is unlikely to crack or fail.

 

Extremely strong chemical inertness

It can withstand continuous corrosion from various strong acids, strong alkalis, and strong oxidizing media.

 

High density

It has no pore leakage, so medium will not leak through each other.

 

Glatt inner wall surface

The fouling rate is low, so its daily cleaning and maintenance are convenient, which has a long overall service life.

Uses of silicon carbide heat exchanger

Fine Chemicals Field

Process Medium Heat Exchange

With extremely high chemical stability, it can withstand complex acid-base systems for a long time. And without the release of metal ions during the heat exchange process, it can effectively ensures the purity and batch stability of the products.

 

Environmental Hazard Waste Field

Waste Acid Heat Recovery

With a dense structure and resistant to erosion, it can withstand particle erosion. It efficiently recovers the high-temperature residual heat from the waste acid concentration process, preheat the incoming water and process materials. And it reduces steam energy consumption, which achieves the goals of waste liquid resource utilization and energy recovery.

 

Wet Metallurgy Field

Cooling and Preheating of Extract Solution

It can stably cool the high-temperature extract solution and preheat the low-temperature feed materials, which precisely controls the temperature of processes. And it ensures the stable and controllable metallurgical reactions, improving the extraction efficiency and product recovery rate of metals.

 

New Materials Industry

High-Purity Material Heat Exchange

Due to its zero metal dissolution and no pollution risks, it can meet the sealed heat exchange requirements. It stabilizes the physical and chemical indicators of the materials, ensuring the purity grade and performance of high-end new materials products.

 

Smoke Gas Treatment Field

High-Temperature Exhaust Gas Heat Exchange

With high-temperature resistance, acid gas corrosion resistance, and thermal shock resistance, it can achieve heat recovery of high-temperature exhaust gas. It can achieve energy conservation and environmental protection goals, suitable for long-term continuous exhaust gas treatment conditions.

 

Surface Treatment Field

Temperature Control of Acid Washing Line

It can continuously and stably complete the heating and constant temperature control of acid tanks. And it effectively improves the acid washing quality and surface uniformity of the workpieces, significantly reducing the frequency of equipment replacement and operation costs.

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