Performance Benefits
SCHULTZ® S760 is a synthetic heat transfer fluid with a maximum service temperature at 350°C and with bibenzyl as the main ingredient. Boasting excellent anti-cokeability performance, it can provide long-term service in heating supply systems.
High Temperature Stability – The operating temperature of SCHULTZ® S760 in the liquid phase can reach as high as 350°C, boasting superior high-temperature stability. It is one of the most heat-resistant liquid-phase heat transfer fluid.
Favorable Low-Temperature Pumpability – With favorable low-temperature performance, SCHULTZ® S760 can easily start from cold at low temperatures and is more suitable for operation in cold regions.
Highly Cleanness – With lower thermal cracking, SCHULTZ® S760 will not generate high-boiling residues easily. The split products are mainly of low molecules. The unique high cleanness and cokeability-free properties enable it to maintain a clean heating system, effectively prolonging the service life of the machinery.
Product Typical Properties
Appearance |
Colorless Transparent Liquid |
Component |
Diaryl Alkyl |
Moisture Content / (mg/kg) |
40 |
Flash Point / °C |
192 |
Auto Ignition Temperature / °C |
390 |
Pour point / ℃ |
-30 |
Density (20°C) (kg/m3) |
1026 |
Total Acidity / KOH (mg/g) |
0.01 |
Carbon Residue % |
0.01 |
Distillation Range 2% / °C |
330 |
Kinematic Viscosity (mm2 /s) 0°C |
227 |
Kinematic Viscosity (mm2 /s) 40°C |
14.8 |
Kinematic Viscosity (mm2 /s) 100°C |
2.8 |
Average Molecular Weight |
236 |
Coefficient of Thermal Expansion (300℃) / ℃ |
0.000952 |
Heat of Combustion / (kJ/kg) |
40194 |
Pseudocritical Temperature / ℃ |
575 |
Pseudocritical Pressure / bar |
20 |
Pseudocritical Density / (kg/m3) |
3.4 |
Optimal Applicable Temperature Range / ℃ |
-20-350 |
Maximum Operation Temperature / ℃ |
350 |
Maximum Liquid Film Temperature / ℃ |
380 |
Note: The above data are based upon test samples in laboratory, and not guaranteed for all products.
For full specifications of SCHULTZ® S760, please contact our sales dept.