
If you’ve ever glanced at the back of a product’s technical datasheet or peeked into chemical catalogs, you might have stumbled upon cas 13463-67-7 — a term that’s oddly cryptic but incredibly important. This identifier refers to Titanium Dioxide, a widely used compound crucial to countless industries worldwide. Understanding what cas 13463-67-7 represents and why it matters can unlock insights into everything from paints and coatings to food safety and even solar technology.
Globally, titanium dioxide (or TiO2) holds an essential spot, especially when you consider its multifaceted applications. With increasing population and industrial demand, the world’s consumption of TiO2 keeps rising, driven by its unmatched combination of opacity, brightness, and durability. It essentially enhances products’ longevity and user experience in subtle but profound ways.
According to a 2023 report from the International Organization for Standardization (ISO), global production of titanium dioxide exceeded 7 million metric tons annually. The substance plays a vital role in sectors spanning from construction to cosmetics, impacting economies and daily living. Yet, challenges like sustainable sourcing and environmental impact loom large, raising questions about how industries can optimize the use of cas 13463-67-7 responsibly.
In real terms, this compound doesn’t just make things “look white” or shiny — it’s a linchpin in advancing sustainable technologies, too. And oddly enough, despite its ubiquity, not many people know what it is or why its chemical code matters. Let’s break it down.
To put it simply, cas 13463-67-7 is the unique Chemical Abstracts Service (CAS) registry number assigned to titanium dioxide (TiO2). This long-form number acts like a chemical fingerprint, ensuring everyone — from researchers to manufacturers — is talking about the very same substance without confusion.
Titanium dioxide itself is a naturally occurring oxide of titanium. It appears as a white pigment widely appreciated for its brightness and high refractive index. Because of these properties, TiO2 is integral in manufacturing paints, plastics, papers, inks, foods, and even personal care products like sunscreen where its UV-blocking ability shines (literally!).
Its connection to industry is longstanding and continues to deepen. The compound supports everything from improving the durability of infrastructure to enabling better food preservation — applications essential to modern humanitarian and economic development.
TiO2 delivers unmatched opacity and brightness, providing excellent coverage in paints and coatings without thick layers, saving materials and costs.
This compound is chemically inert, making it stable under sunlight and resistant to weathering — essential for outdoor use.
It absorbs and scatters ultraviolet light, making it invaluable in sunscreen formulations and protective coatings.
When properly processed, TiO2 is safe for use in consumables, paints, and cosmetics, adhering to strict regulatory standards.
From plastics to ceramics, its integration is seamless, adapting to diverse manufacturing needs.
| Property | Typical Value | Unit |
|---|---|---|
| CAS Number | 13463-67-7 | - |
| Purity | ≥ 99.5% | % |
| Particle Size (Median) | 0.2 - 0.3 | µm |
| Color | White | - |
| Brightness | ≥ 98% | % |
Titanium dioxide’s applications reach every corner of the industrial spectrum. For instance, in Asia and Europe — the largest consumers — it’s critical in automotive paints that offer weather resistance and long-lasting gloss. The construction industry in North America utilizes it heavily for exterior wall coatings, improving both aesthetics and energy efficiency through reflective properties.
Interestingly, humanitarian initiatives also reap its benefits. In post-disaster relief operations, TiO2-infused paints help rehabilitate damaged infrastructure with materials that resist mold and UV damage, simply prolonging the life of scarce resources. Meanwhile, food packaging leveraging this compound adds protection against UV-induced spoilage, contributing toward reducing food waste — a sustainable win globally.
So, you see, beyond the lab coat and chemical jargon, cas 13463-67-7 quietly shapes the quality and sustainability of products we encounter daily.
It’s fascinating how TiO2 research never really stops. Scientists are exploring nanostructured forms of this chemical to improve photocatalytic activity — essentially, creating self-cleaning surfaces or pollution-degrading coatings. Automated manufacturing lines now integrate TiO2 variants in more precise ways to tailor optical properties for next-generation electronics.
In the vein of sustainability, greener extraction methods and recycling of TiO2-based products are gaining traction. The push towards circular economy frameworks demands innovation in minimizing waste and energy consumption, where this compound’s role will be pivotal.
But it’s not all smooth sails. Challenges persist related to potential environmental effects during manufacturing, disposal concerns, and regulatory hurdles concerning nanoparticle forms. Some studies caution about airborne particle inhalation risks during handling, requiring firms to invest in stricter safety protocols.
Thankfully, innovations like enclosed reactor systems, improved filtration, and alternative pigment formulations address these issues head-on. Collaboration between governments, research institutions, and manufacturers continues to strengthen guidelines ensuring safe and sustainable use.
| Supplier | Purity | Price (per ton) | Lead Time | Region |
|---|---|---|---|---|
| Supplier A | 99.6% | $2,100 | 2 weeks | Asia |
| Supplier B | 99.4% | $2,250 | 3 weeks | Europe |
| Supplier C | 99.5% | $2,000 | 1.5 weeks | North America |
As industries look ahead, the role of cas 13463-67-7 — titanium dioxide — remains foundational yet dynamic. Its ability to enhance product performance, contribute to sustainability goals, and innovate manufacturing will only grow in importance. For businesses and professionals, staying informed about this compound means unlocking vast potential for development while embracing responsibility.
If you want to explore more about cas 13463-67-7, its specifications, and how to source it reliably, do visit our website: https://www.cqtitaniumdioxide.com.
In short, knowing more about cas 13463-67-7 isn’t just chemistry trivia — it’s a key to understanding a pillar of modern industry and sustainability.
References:
1. Wikipedia - Titanium Dioxide
2. ISO Standards on Pigments and Paints
3. WHO Chemical Safety Guidelines