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What Is a Titanium Reactor? Materials, Design & Applications

What Is a Titanium Reactor? Materials, Design & Applications

MOQ: 1 Sets
Price: 10000 USD
Delivery Period: 2 months
Payment Method: L/C,T/T
Supply Capacity: 200 sets / days
Detail Information
Place of Origin
China
Brand Name
Center Enamel
Certification
ASME,ISO 9001,CE, NSF/ANSI 61, WRAS, ISO 28765, LFGB, BSCI, ISO 45001
Material:
Stainless Steel, Carbon Steel
Size:
Customized
Design Pressure:
0.1-10 Mpa
Applications:
Chemical, Food Processing, Beverage Processing, Brewing, Metallurgy, Oil Refining, Pharmaceuticals
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titanium reactor materials

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titanium reactor design

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titanium reactor applications

Product Description

What Is a Titanium Reactor? Materials, Design & Applications

Answering the core question: What is a titanium reactor, and why does it survive chloride and acid environments that destroy stainless steel? A titanium reactor is a vessel built from commercially pure (Grade 2) or alloyed (Grade 5, Ti-6Al-4V) titanium whose surface forms a self-healing TiO2 passive film just 1-10 nm thick. That film resists pitting in chloride concentrations above 20,000 ppm and in oxidizing acids (nitric, wet chlorine) where 316L fails within months. Titanium serves at 0.1-10 MPa and up to 300 degree C in seawater desalination, chlor-alkali, and TiCl4 production, with a corrosion rate below 0.01 mm/year even under vapor-phase attack.

Core Operating Principles of Titanium Reactors

  • Self-Healing Passive Film: The TiO2 layer reforms instantly when scratched, maintaining below 0.01 mm/year corrosion in oxidizing and chloride media.
  • Chloride Immunity: Unlike 316L (pitting above 1,000 ppm Cl minus), titanium tolerates above 20,000 ppm chloride without crevice attack when properly designed.
  • Low Thermal Expansion / High Strength: Ti-6Al-4V gives 900 MPa yield at half the weight of steel, allowing thin-wall, large-diameter reactors.

Major Types of Titanium Reactors

  • Solid Titanium Vessels: Grade 2 or 5 construction for aggressive acid or chloride duty; used in chlor-alkali and spent-acid recovery.
  • Titanium-Clad (Explosion-Bonded) Reactors: Carbon-steel shell with 3-6 mm Ti layer; 30-50 percent cheaper than solid Ti for large 20-200 m3 towers.
  • Titanium-Lined Agitated Reactors: Glass-like inert lining for pharma and pigment synthesis requiring zero iron contamination.

Titanium Reactor Grades Comparison Matrix

Titanium Grade Composition Key Resistance Typical Service
Grade 2 (CP-Ti) >99% Ti, low O Chlorides, nitric, wet Cl2 Seawater, chlor-alkali
Grade 5 (Ti-6Al-4V) 6%Al, 4%V High strength + corrosion High-pressure vessels
Grade 7 (Ti-Pd) 0.15% Pd Reducing acids (HCl) Acid recovery
Grade 12 0.3% Mo, 0.8% Ni Hot brine, sour gas Geothermal, oilfield

Frequently Asked Questions (FAQ)

Q: Why does titanium resist chloride corrosion better than stainless steel?

A: Its nanometer TiO2 film stays stable in oxidizing chloride solutions, whereas 316L depends on chromium oxide that breaks down above about 1,000 ppm Cl minus, causing pitting.

Q: When is titanium-clad construction used instead of solid titanium?

A: For large 20-200 m3 towers where solid Ti is costly, a 3-6 mm explosion-bonded Ti layer on carbon steel cuts cost 30-50 percent while keeping corrosion resistance.

Q: Does titanium have weaknesses?

A: It is vulnerable in non-oxidizing reducing acids (hydrofluoric, concentrated HCl) unless palladium-alloyed (Grade 7), and it can gall or hydrogen-embrittle above 0.06 percent H2 pickup.

Q: What temperature limit applies to titanium reactors?

A: Continuous service to about 300 degree C for Grade 2; above this the oxide film weakens and hydrogen pickup accelerates, so design stays below 300 degree C.