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Titanium Dioxide Cost: High Purity TiO2 for Diverse Industrial Uses

जुलाई . 30, 2025 03:00 Back to list

Titanium Dioxide Cost: High Purity TiO2 for Diverse Industrial Uses

Overview: Titanium Dioxide Cost & Industry Background

Titanium Dioxide (TiO2) is a critical white pigment and functional filler widely used in paints, coatings, plastics, papers, and even cosmetics. With growing demand in construction, automotive, and consumer sectors, the titanium dioxide cost has become a focal point for manufacturers and end-users seeking performance, value, and sustainability.
As of 2024, rapid shifts in raw material prices, energy costs, and global logistics are driving both price volatility and continued innovation in production technology.

Titanium Dioxide Cost: High Purity TiO2 for Diverse Industrial Uses
  • Main Product: Industrial Chemical Tio2 for paint R-996 Titanium Dioxide Powder
  • Main Applications: Paints, Industrial Coatings, Plastics, Rubber Compounds, Inks, Paper, Food & Cosmetics
  • Key Related Keywords: ti02 titanium dioxide, nano titanium dioxide, titanium dioxide r996, titanium dioxide uses, titanium dioxide dye, titanium dioxide CAS, buff titanium dioxide, arti titanium dioxide, talc titanium dioxide, LD50 titanium dioxide, r902 titanium dioxide, pure titanium dioxide

How is Titanium Dioxide Cost Determined? Key Parameters & Market Trends

The titanium dioxide cost is shaped by a combination of raw material expenses (ilmenite, rutile), energy usage, process efficiency, capacity utilization, and environmental compliance. Downstream, application-specific demands drive the selection of grades like titanium dioxide r996 for architectural paints or nano titanium dioxide for high-performance coatings and UV-protection films.

Titanium Dioxide Cost (2021–2024 Global Reference Price, USD/ton)
Year China (USD/ton) Europe (USD/ton) USA (USD/ton) SE Asia (USD/ton)
2021 2,700 3,050 3,120 2,900
2022 3,250 3,780 3,550 3,140
2023 3,200 3,590 3,410 3,210
Q2 2024* 3,150 3,470 3,335 3,160
*Prices referenced from ICIS Global Markets and Statista. Fluctuations due to freight, energy, and raw material indices.

Key drivers in 2024 include:

  • Feedstock supply (rutile & ilmenite)
  • Energy prices (gas & electricity)
  • Production route (Chloride vs. Sulfate Process)
  • Regulatory requirements (ISO 591, REACH)
  • Demand boom in high-quality pigment and nano titanium dioxide sectors
Titanium Dioxide Cost: High Purity TiO2 for Diverse Industrial Uses

Industrial Chemical TiO2 for Paint R-996: Process Flow & Technical Specifications

Titanium Dioxide Manufacturing Flow (Chloride Process)

Titanium Dioxide Cost: High Purity TiO2 for Diverse Industrial Uses
  1. Raw Material Preparation: Ilmenite or rutile ore is finely ground and mixed.
  2. Chlorination: Raw feed reacts with chlorine and petroleum coke in a fluidized bed at ≈900°C, producing titanium tetrachloride (TiCl4).
  3. Purification: TiCl4 vapor is condensed and purified to remove iron chlorides and impurities.
  4. Oxidation: Purified TiCl4 is oxidized at >1000°C to yield fine TiO2 pigment particles.
  5. Hydration/Milling: Pigments are further milled, surface treated (alumina/silica coating) for improved performance.
  6. Filtration, Drying & Micronization: Final product is filtered, dried, and micronized to achieve targeted particle size and distribution.
Key technical standards: ISO 591-1, ASTM D476, REACH compliant.

Key Advantages of R-996 Titanium Dioxide

  • Process: Advanced chloride process, ensuring high purity and low residue, low heavy metals content.
  • Material: Pure rutile phase TiO2 (≥94%), nano-structured surface treatment for enhanced dispersion.
  • Standards: Compliant with ISO, ANSI, ASTM and Chinese GB/T 1706-2006; meets RoHS and REACH directives for global trade.
  • Applications: High-gloss paints, automotive coatings, industrial protective coatings, powder coatings, plastics, inks, paper, food packaging (food-safe grades).
  • Performance: Superior weather resistance, anti-UV, hiding power, and color retention for exterior paints and plastics.
  • Lifetime: Service life in coatings: >15 years (outdoor, with proper formulation and installation); low chalking rate; outstanding anti-corrosion for metals.
Titanium Dioxide Cost: High Purity TiO2 for Diverse Industrial Uses

Technical Specifications & Comparative Data

R-996 Titanium Dioxide Powder: Key Parameters

Product Specifications: Industrial Chemical Tio2 R-996
Property R-996 Value Industry Range Test Method
TiO2 Content (%) ≥94 90–95 ISO 591-1
Color (L* Value) 98.5 97–99 GB/T 1706-2006
Oil Absorption (g/100g) 16.5 15–22 ISO 787/41
pH Value 7.2 6.5–8.5 ISO 787/9
Residue (45μm) (%) <0.01 <0.05 ISO 787/7
Specific Gravity (g/cm³) 4.1 3.8–4.2 ISO 787/16
Average Particle Size (μm) 0.22 0.20–0.30 Laser Diffraction
Weather Resistance Excellent (Class I) Good–Excellent EN ISO 2810

Application Scenarios & Competitive Advantages

Main Use Cases: R-996 Titanium Dioxide

  • Paints & Architectural Coatings: Delivers high hiding power and UV-retention for premium indoor/outdoor paints, thermal insulation paints, anti-mold and anti-corrosive solutions. R-996 is a preferred pigment for ISO 12944-compliant weather-resistant coatings.
  • Industrial/Protective Coatings: Used in pipelines, petrochemical and marine structures for maximum corrosion protection (test results show ≤1% chalking after 5000h QUV exposure).
  • Plastic Compounds: Enhances color, opacity, and longevity for pipes, films, PVC windows, and automotive parts.
  • Printing inks & masterbatches: High opacity enriches brightness and resistance in challenging environments.
  • Food/Packaging/Cosmetics: Pure titanium dioxide designated with CAS 13463-67-7 is accepted in many international regulations (except recent EU food bans).
Titanium Dioxide Cost: High Purity TiO2 for Diverse Industrial Uses
Compliant with ISO 591-1, EN 71, ANSI, and REACH requirements for global applications.

Industry Data: Why Choose R-996?

  • Color Strength (Tinting): R-996 is rated 109–112% versus standard, outperforming many chloride and sulfate competitors.
  • Dispersion: Fast wetting, low agglomeration, minimizes mixing energy vs. buff titanium dioxide and other legacy grades.
  • Weather & Chemical Resistance: Maintains gloss and color for >7 years exterior use per GB/T 1766 lab testing.
TiO2 Grade Comparison
Grade Production Method Hiding Power (g/m2) Weather Resistance Applications Global Market Share (%) 2023*
R-996 Chloride, Surface-treated 12.5 Excellent Paint, Plastic, Ink 18%
R-902 Titanium Dioxide Sulfate, Alumina Treated 13.1 Good Paint, Plastic 17%
Buff Titanium Dioxide Chloride/Blended 15.6 Standard Construction, Plaster 7%
Nano Titanium Dioxide Chloride (+Nano Grinding) 11.5 Excellent (nano) Functional films, UV blocker 4%

Supplier Analysis & Customization Solutions

Industry Leading Manufacturers: R-996 Titanium Dioxide Powder

  • Chongqing Intelligent Equipment Co., Ltd (See Product: R-996 TiO2): Advanced chloride-route production, ISO 9001 & ISO 14001 certified, RoHS/REACH compliant, supplying >25 countries.
  • Venator (UK/USA): Strong reputation for weather-stable TiO2 (R-902), robust support for global paints industry.
  • Chemours (formerly DuPont), Lomon Billions, BASF: Leading global market, offering comprehensive grades for various applications and price points.

Customization Programs

  • Particle size distribution, surface coating, and hydrophobic/hydrophilic tuning for specific paints, PVC, or ink systems.
  • Private label and OEM branding for international partners.
  • Support for regulatory documentation (FDA, ISO, REACH) and application method optimization.
Titanium Dioxide Cost: High Purity TiO2 for Diverse Industrial Uses

Case Study: Titanium Dioxide R-996 in Real-World Applications

  • China National Offshore Oil Project (2022): Protective coatings using R-996 achieved over 10 years durability with ≤2% gloss loss and minimal chalking after 6000h salt-spray test (ISO 9227). Customer testimonial: “Consistent batch quality and weather shield outperformed prior grades.”
  • Western Europe High-Speed Rail (2023): TiO2-formulated line marking paints: Improved reflectivity & reduced application frequency (3.8 years interval, down 20% vs. competitor).
  • Food Packaging Film Manufacturer: Adopted pure titanium dioxide (CAS 13463-67-7) per FDA/China GB4806, yielding >15% higher opacity value; confirmed LD50 titanium dioxide classification at “Not Classified as Hazardous” (per OECD 425 acute toxicity study).
Titanium Dioxide Cost: High Purity TiO2 for Diverse Industrial Uses

FAQs: Titanium Dioxide Industry Technical Terms & Customer Questions

Q1: What is the difference between Chloride and Sulfate TiO2 Process?

Chloride process yields higher-purity rutile TiO2 with fewer impurities and superior weather/UV resistance, using chlorine gas on rutile ores. Sulfate process digests ilmenite in sulfuric acid, has broader feedstock adaptability but often higher residual impurities.

Q2: What does the “R-996” grade mean in titanium dioxide?

“R” refers to rutile crystal structure (vs. “A” for anatase); “996” denotes a specific product code optimized for paints with enhanced dispersion, tinting power, and weather-resistant surface treatment.

Q3: How is nano titanium dioxide used relative to standard grades?

With mean particle size < 100nm, nano titanium dioxide offers transparency in coatings, UV-shielding, and easy incorporation in sunscreens/functional films. It’s less used for opacity, more for advanced functions.

Q4: What is the CAS number for titanium dioxide and why is it important?

The official CAS number is 13463-67-7, used for regulatory and safety documentation. It certifies product identity for REACH/FDA/GB registration and global trade.

Q5: What is LD50 for titanium dioxide, and does it pose a health hazard?

LD50 (lethal dose 50%) for TiO2 via oral/dermal routes: >10,000 mg/kg (non-toxic classification, OECD 425). It’s considered inert for industrial users; however, EU restricts TiO2 E171 for food use since 2021.

Q6: How does buff titanium dioxide differ from pure titanium dioxide?

Buff titanium dioxide is a blended pigment with ochre/yellow tones (often mixed iron oxides) for special color requirements, while pure titanium dioxide is brilliant white, used in high-purity demanding industries.

Q7: Can R-996 TiO2 be used for wastewater or process water treatment?

Yes, advanced grades (including arti titanium dioxide) are used in catalysis, photocatalytic oxidation, and dye removal in water treatment sectors, especially as part of hybrid UV-driven processes.

Customer Support, Warranty, and Delivery

  • Delivery Lead Time: Standard: 7–15 working days from confirmed order and payment. Inventory allocation possible for urgent projects.
  • Quality Assurance: 3-year product warranty for normal industrial use; full batch traceability; test certificate with each shipment.
  • Regulatory Support: Full documentation for ISO, FDA, REACH, and customer-specific quality requirements.
  • Technical Consultation: Dedicated engineers offer formulation guidance, tailored dispersion tips, and on-site analysis. Post-sale troubleshooting on request.
  • After-sales Service: Response in 24h, multilingual support, online formulation tools available.

For up-to-date titanium dioxide cost and detailed chemical or logistics advice, consult our technical sales engineers.

References and Further Reading:
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