Titanium Pipe and Tube Applications in Chemical Processing: Selection Guide 2026

Why Titanium Is the Material of Choice for Chemical Processing

Titanium and titanium alloys have earned their reputation as the ultimate material for corrosive chemical processing applications. With exceptional resistance to virtually all oxidizing and neutral corrosive media, titanium piping systems can provide service lives exceeding 30 years in environments that would destroy stainless steel in months. While the initial material cost is higher, the total cost of ownership often favors titanium due to eliminated maintenance, zero product contamination, and unmatched service life.

At CoreMetal Steel, we supply titanium pipe and tube in all standard grades for chemical processing, heat exchanger, and offshore applications. This guide covers titanium material selection, corrosion resistance, and design considerations for chemical process piping.

Titanium Grades for Chemical Processing

Grade Designation Composition Key Properties Typical Chemical Applications
Grade 1 CP Ti (pure) 99.5% Ti min Most ductile, best formability Mild corrosive services
Grade 2 CP Ti (pure) 99.0% Ti min Best all-around corrosion resistance Chlor-alkali, bleach, oxidizing acids
Grade 5 (6Al-4V) Ti-6Al-4V 6% Al, 4% V Highest strength, heat treatable High-pressure, high-temperature services
Grade 7 CP Ti + 0.15% Pd Pd enhanced Enhanced crevice corrosion resistance Reducing acid services
Grade 12 (Ti-0.3Mo-0.8Ni) Ti-0.3Mo-0.8Ni Mo + Ni alloyed Crevice corrosion resistance in brines Sour gas, chloride services
Grade 16 (Ti-0.15Pd) Ti-0.15Pd Pd enhanced Similar to Gr.7, improved weldability Chemical processing, sour gas

Corrosion Resistance in Chemical Environments

Acid Resistance

Chemical Concentration Temperature Grade 2 Rate Recommendation
Hydrochloric acid (HCl) 1-5% 20C 0.005 mm/yr Acceptable with aeration
Hydrochloric acid Above 5% Above 40C Severe attack NOT recommended
Sulfuric acid (H2SO4) 1-5% Boiling 0.05 mm/yr Good resistance
Sulfuric acid 5-20% Ambient 0.001 mm/yr Excellent resistance
Nitric acid (HNO3) All concentrations Up to boiling 0.001 mm/yr Outstanding resistance
Phosphoric acid (H3PO4) All concentrations Up to 120C 0.001 mm/yr Outstanding resistance
Chromic acid All concentrations Up to boiling Negligible Ideal material
Organic acids (acetic) All concentrations Up to boiling Negligible Excellent resistance

Alkali and Salt Resistance

  • Sodium hydroxide (NaOH): Excellent resistance at all concentrations up to boiling
  • Potassium hydroxide (KOH): Excellent resistance across all conditions
  • Chlorides: Outstanding resistance to chloride-induced pitting and SCC
  • Seawater: Zero corrosion rate in flowing or stagnant conditions
  • Hypochlorite: Outstanding – titanium is the standard material for chlor-alkali plants

Environments Where Titanium Performs Poorly

  • Reducing acids without oxidizers: HCl above 5%, dilute H2SO4 without dissolved oxygen
  • Anhydrous conditions: Dry chlorine gas, methanol without water
  • Hydrofluoric acid (HF): Severe attack at all concentrations
  • Hot concentrated phosphoric acid with fluoride ions

Key principle: Titanium requires an oxidizing environment (or dissolved oxygen) to maintain its passive film. Reducing conditions can cause rapid attack.

Design Considerations for Titanium Piping

Mechanical Properties

Grade Yield Strength (MPa) Tensile Strength (MPa) Elongation (%) Max Service Temp (C)
Grade 2 275 345 25 315
Grade 5 (Ti-6Al-4V) 830 900 14 400
Grade 12 345 483 20 315

Pressure Rating Considerations

  • Titanium Grade 2 has approximately 2/3 the yield strength of 316L stainless steel
  • Wall thickness may need to be increased compared to stainless steel equivalent
  • Titanium Grade 5 offers higher strength (comparable to high-strength steels) but reduced corrosion resistance in some environments
  • ASME B31.3 allows stresses up to 137 MPa for Grade 2 at ambient temperature

Galvanic Compatibility

  • Titanium is noble (cathodic) to virtually all other engineering metals
  • Connecting titanium to steel, aluminum, or copper alloys will accelerate corrosion of the less noble material
  • Avoid direct contact with less noble metals – use insulating flanges or dielectric unions
  • Titanium-to-titanium connections are preferred wherever possible

Hydrogen Absorption

A unique concern with titanium in chemical service:

  • Titanium can absorb hydrogen in reducing acid environments
  • Hydrogen absorption leads to embrittlement (hydride formation)
  • Hydrides form when hydrogen content exceeds 150 ppm
  • Mitigation: Palladium-containing grades (Gr.7, Gr.16) resist hydrogen uptake
  • Cathodic protection must be carefully controlled (max -0.7V vs Ag/AgCl)

Common Chemical Processing Applications

Chlor-Alkali Industry

  • Brine piping and headers
  • Chlorine wet gas cooling and drying systems
  • Caustic soda (NaOH) evaporation and concentration
  • Hypochlorite production and storage
  • Titanium Grade 2 is the standard material for chlorine wet services

Organic Chemical Processing

  • Acetic acid reactors and distillation columns
  • Terephthalic acid (PTA) production
  • Phenol and caprolactam processes
  • Fatty acid processing
  • Essential oil and fragrance manufacturing

Petroleum Refining and Petrochemical

  • Sour water strippers (H2S + NH3 + chloride)
  • Overhead condensers in crude distillation
  • CO2 removal systems (amine regeneration)
  • Alkylation unit heat exchangers
  • Grade 12 or Grade 16 preferred for sour service

Desalination

  • MSF (Multi-Stage Flash) evaporator tubing
  • MED (Multi-Effect Distillation) heat exchangers
  • RO high-pressure piping
  • Brine heaters and heat recovery sections
  • Titanium Grade 2 is the premium material for top-brine sections

Standards and Specifications

Product Form ASTM Standard ASME Standard
Seamless Pipe B338 SB-338
Welded Pipe B338 / B862 SB-338 / SB-862
Seamless Tube B338 SB-338
Welded Tube B338 / B862 SB-338 / SB-862
Plate, Sheet, Strip B265 SB-265
Bar and Billet B348 SB-348
Forgings B381 SB-381
Fittings B363 SB-363

Conclusion

Titanium pipe and tube offer unmatched corrosion resistance for the most demanding chemical processing environments. While the initial investment is higher than stainless steel or nickel alloys, the extended service life, zero maintenance cost, and product purity make titanium the most cost-effective choice for many applications over the life of the plant.

CoreMetal Steel supplies titanium pipe and tube in all standard grades (Grade 2, Grade 5, Grade 7, Grade 12, Grade 16) per ASTM B338 and related specifications. Contact our technical team at tracy@coremetalsteel.com for material recommendations and competitive pricing on titanium piping systems.

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