Custom Anodic Protection Sulfuric Acid Cooler With Corrosion Prevention First Absorption Acid Cooler
Custom Anodic Protection Sulfuric Acid Cooler with Corrosion Prevention, Extended Operational Duration, and Enhanced Thermal Exchange Dry Acid Cooler
|
Process parameters |
||||||||
|
Project |
Design parameters |
Performance parameters |
||||||
|
|
Shell Side
|
Tube Side
|
Shell Side
|
Tube Side
|
||||
|
MEDIUM |
Fluid name |
Sulfuric Acid
96%
|
Cooling Water
|
Sulfuric Acid
96%
|
Cooling Water
|
|||
|
|
Temperature (Inlet) ℃ |
80
|
33
|
80
|
33
|
|||
|
|
Temperature (Outlet)℃ |
66
|
43
|
66
|
42.984
|
|||
|
|
Liquid Kg/h |
1599400
|
|
1599400
|
810000
|
|||
|
|
Density(inlet/outlet) Kg/m3 |
1810
|
1000
|
1810
|
1000
|
|||
|
|
Viscosity(inlet/outlet)(cp) |
7.9
|
0.76
|
7.9
|
0.76
|
|||
|
|
Inlet pressure Mpa |
0.5
|
0.4
|
0.5
|
0.4
|
|||
|
|
Pressure drop, Mpa |
≤0.07
|
≤0.06
|
0.07
|
0.003
|
|||
|
PERFORMANCE |
Heat exchanged quantity W |
|
~9360932.8
|
|||||
|
|
Flow rate m/s |
|
0.596
|
0.787
|
||||
|
|
Heat transfer area affluent coefficient |
|
1.1
|
|||||
|
|
Heat transfer coefficient |
|
745.986
|
|||||
|
|
Heat transfer area m2 |
|
390
|
|||||
|
|
Type |
shell and tube
|
The flow form
|
counter-current flow
|
||||
|
|
Sealing form |
welding connection in acid side, flange connection in water side
|
||||||
|
|
Materials and specifications |
shell
|
304L δ= 10
|
|||||
|
|
|
Heat transfer tube
|
316L Φ19×2.0×6000
|
|||||
|
|
|
Tubesheet
|
304L δ= 55
|
|||||
|
|
|
Baffle-crossing
|
304L δ= 10
|
|||||
|
|
|
head
|
Q235-B δ= 12
|
|||||
|
|
Flange standard |
Shell Side
|
Tube Side
|
|||||
|
|
|
HG/T20615-2009 class150 RF
|
HG/T20615-2009 class150 RF
|
|||||
|
Size |
Φ1300×6594×1878
|
|||||||
|
Operating weight |
15761 Kg
|
|||||||
|
The scope of supply |
●Complete set ●Control system
●Special cable ●Random accessories |
|||||||
- Protective Film Generation: A minimal direct current is applied to trigger the development of a resilient oxide film across all internal surfaces, diminishing corrosion rates by several orders of magnitude.
- Potential Surveillance and Calibration: Electrical potential between the steel and reference electrode is continuously monitored, with instantaneous adjustments to maintain optimal passive zone operation.
- Engineering Configuration: The cooler is architecturally designed to handle typical thermal loads, featuring rod-configured baffles that restrict tube vibration while improving heat transfer efficiency.
- Reliable Corrosion Prevention: Anodic protection significantly restrains chemical erosion, allowing austenitic stainless steels to perform dependably in environments where they would typically be unsuitable.
- Extended Operational Duration: Continuous preservation of the passive oxide layer offers markedly extended service life compared to unprotected alternatives.
- Enhanced Thermal Exchange: System design encourages turbulent acid flow and integrates high-efficiency heat transfer surfaces for precise temperature regulation and economical energy utilization.
- System Robustness: Consistent protective parameters and comprehensive oversight capabilities substantially reduce the threat of acid escape and unscheduled interruptions.
- Waste Heat Utilization: Safe functioning at elevated temperatures (up to 160°C or more) facilitates capture of valuable waste heat, increasing overall thermal efficiency.
Get in Touch
Have questions about our products or want to discuss a custom order? Our team is ready to help you.