Custom Anodic Protection Sulfuric Acid Cooler 100m2 316L Shell and Tube Heat Exchanger
Custom Corrosion Resistant Anodic Protection Sulfuric Acid Cooler with Extended Lifespan and Optimized Thermal Conductivity First Absorption Acid Cooler
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Process parameters |
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Project |
Design parameters |
Performance parameters |
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Shell Side
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Tube Side
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Shell Side
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Tube Side
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MEDIUM |
Fluid name |
Sulfuric Acid
98.5%
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Cooling Water
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Sulfuric Acid
98.5%
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Cooling Water
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Temperature (Inlet) ℃ |
80
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33
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80
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33
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Temperature (Outlet)℃ |
40
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43
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40
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42.655
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Liquid Kg/h |
27500
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27500
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40000
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Density(inlet/outlet) Kg/m3 |
1840
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1000
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1840
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1000
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Viscosity(inlet/outlet)(cp) |
7.9
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0.76
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7.9
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0.76
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Inlet pressure Mpa |
0.5
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0.4
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0.5
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0.4
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Pressure drop, Mpa |
≤0.07
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≤0.06
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0.001
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0.001
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PERFORMANCE |
Heat exchanged quantity W |
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~447027.8
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Flow rate m/s |
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0.055
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0.189
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Heat transfer area affluent coefficient |
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1.1
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Heat transfer coefficient W/m2 ℃ |
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269.266
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Heat transfer area m2 |
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100
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MATERIAL |
Type |
shell and tube
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The flow form
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counter-current flow
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Sealing form |
welding connection in acid side, flange connection in water side
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Materials and specifications |
shell
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316L δ= 5
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Heat transfer tube
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316L Φ19.05×1.65×6000
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Tubesheet
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316L δ= 35
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Baffle-crossing
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316L δ= 5
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head
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316L δ= 35
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Shell Side
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Tube Side
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HG/T20615-2009 class150 RF
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HG/T20615-2009 class150 RF
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size |
Φ600×6994×1060
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Operating weight |
5790 Kg
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The scope of supply |
●Complete set ●Control system
●Special cable ●Random accessories |
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- Oxide Barrier Formation: Low-level direct current promotes the development of a robust oxide coating on all wetted surfaces, serving as a protective shield that reduces corrosion rates by several orders of magnitude.
- Voltage Monitoring & Adjustment: Continuous monitoring of electrical voltage between steel and reference electrode allows dynamic current adjustments, keeping the metal reliably within the passive zone and preventing both active breakdown and transpassive erosion.
- Mechanical Design: The cooler is structurally engineered to withstand thermal pressures inherent to processing environments. Design features like rod-patterned baffles minimize tube oscillation while enhancing heat transfer performance.
- Superior Corrosion Control: Anodic protection significantly limits chemical attack, enabling austenitic stainless steels to perform reliably in conditions where they would normally fail, ensuring continuous operational integrity.
- Extended Equipment Lifespan: Consistent maintenance of the passive oxide layer protects against chemical deterioration, resulting in substantially longer operational life compared to unprotected alternatives.
- Optimized Thermal Efficiency: System architecture supports turbulent acid circulation and incorporates high-capacity heat transfer surfaces essential for precise temperature control and efficient power consumption.
- Operational Reliability: Consistent protective parameters and integrated monitoring features—including remote diagnostic capabilities in modern versions—significantly reduce the risk of acid discharge and unexpected downtime.
- Energy Recovery Potential: Safe operation at elevated temperatures (up to 160°C or higher) enables recovery of high-grade waste heat, enhancing overall energy performance of sulfuric acid facilities.
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