These fluids are non-toxic and non-hazardous, ensuring that they do not pose health risks when used in industrial applications. This feature is especially important when the fluids are employed in environments where contact with personnel or sensitive equipment is likely.
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When using these heat transfer fluids, HEAT-PLUS GEN 22 is important to note that the maximum temperature of the fluid film should not exceed 343°C. This temperature limit should be observed to ensure safe and efficient operation of the system.
These heat transfer fluids are utilized in various food-related applications. They serve as a heat transfer medium in systems where temperature control is crucial. The fluids are compatible with food processing equipment and are suitable for maintaining precise temperatures in food-related processes. The maximum operating temperature of 328°C ensures their effectiveness in demanding food industry applications.
These heat transfer fluids have the ability to resist carbon formation. This characteristic is valuable because the formation of carbon deposits can negatively impact system efficiency and performance. By preventing carbon buildup, these fluids help maintain consistent heat transfer and reduce the need for maintenance to remove carbon deposits.
These fluids are non-toxic and non-hazardous, ensuring that they do not pose health risks when used in industrial applications. This feature is especially important when the fluids are employed in environments where contact with personnel or sensitive equipment is likely.
These heat transfer fluids are designed to excel in both open and closed systems that operate at extremely high temperatures. Their ability to perform exceptionally well at elevated temperatures makes them suitable for various industrial processes and applications where maintaining precise temperature control is critical.
The proprietary additives included in these fluids play a significant role in prolonging their lifespan compared to regular and other synthetic fluids. These additives enhance the fluid's resistance to degradation and maintain its performance at very high operating temperatures. As a result, the fluids have an extended service life, reducing the need for frequent replacements and maintenance.
These heat transfer fluids are primarily composed of synthetic base fluids known for their high thermal and oxidative stability. These base fluids serve as the foundation for the exceptional performance of the fluids in high-temperature applications.
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