
Advanced cosmetic grade Aluminium Zirconium Tetrachlorohydrex Gly (CAS 98106-53-7) fine powder supplied by Zyntex. Specially engineered for clinical-strength solid sticks, gels, and soft solid antiperspirant formulations.
Exceptional sweat-reduction performance and outstanding compatibility with solid wax matrixes provide a massive competitive edge in advanced deodorant manufacturing. This zirconium-enhanced complex functions by creating highly stable, temporary micro-plugs within the sweat ducts, providing deep wetness control under extreme stress. It enables chemical formulators to achieve consistent therapeutic results in anhydrous formulas without altering viscosity parameters or suspension stability. For instance, Aluminium Zirconium Tetrachlorohydrex Gly is frequently selected as the primary engine in sports-focused clinical deodorants. Consequently, it dramatically extends the duration of active odor and wetness protection. As a result, Zyntex ensures rigorous microbiological screening and exceptionally low heavy metal limits across our entire supply, guaranteeing faultless stability during your manufacturing cycle.
Moreover, Zyntex supplies refined zirconium glycine complexes designed to prevent white residue accumulation on fabrics. This compound acts as a critical active phase, maintaining homogenous distribution inside high-speed cosmetic mixing vessels. It pushes the boundaries of cosmetic science by delivering a heat-stable, premium-grade chemical powder that integrates seamlessly with silicone fluids, emollients, and cosmetic waxes. At the same time, its optimized particle size distribution prevents grittiness, providing an ultra-smooth, luxurious sensory feel on the skin. In short, our product serves as a dependable, heavy-duty active compound, supporting both the high-performance targets of luxury hygiene brands and the technical precision of personal care engineering.
Recently, consumer preference for long-lasting, high-end hyperhidrosis cosmetics has created a strong market push for advanced zirconium-based active matrices. This compound provides a clinically superior, stable solution for solid-stick lines requiring maximal sweat control. Because of this, Zyntex offers strictly monitored cosmetic batches designed to comply with international health and consumer safety directives. Ultimately, selecting Zyntex guarantees a reliable, fully documented, and robust raw material partner. We seamlessly balance profound cosmetic chemistry knowledge with meticulous analytical verification. To conclude, our logistical dedication ensures your personal care manufacturing processes achieve the highest standards of safety, quality, and efficacy.
This elite, high-strength antiperspirant active is a vital formulation agent in these four primary cosmetic sectors:
The standard active ingredient for high-performance wax sticks. Thus, it ensures uniform application and powerful wetness defense.
Utilized in clear cosmetic gels to provide maximum transparency. Undoubtedly, it is vital for achieving residue-free aesthetic goals.
Applied in heavy-duty emulsion roll-ons targeting athletic markets. Consequently, it dramatically enhances product stamina.
Serves as a reliable active phase in prescribed antiperspirant lines. Specifically, it bridges the gap between cosmetics and medicine.
| Parameter | Standard Value |
|---|---|
| Product Name | Aluminium Zirconium Tetrachlorohydrex Gly |
| Appearance | Superfine White Powder |
| Zirconium Content | 13.0% – 15.5% (as ZrO2) |
| CAS Number | 98106-53-7 |
⚠️ Safety & Handling: Classified as a mild skin, eye, and respiratory tract irritant (GHS07). Therefore, store strictly in cool, dry, and well-ventilated warehouse zones inside sealed containers. Zirconium complexes are susceptible to extreme humidity; protect from ambient air to maintain powder dispersion flowability. Use proper industrial PPE, including standard dust masks, protective aprons, and safety glasses during high-volume hopper loading. Always check the official material Safety Data Sheet (SDS) for detailed handling guidelines.