- Introduction to Key CAS Numbers and Their Significance
- Technical Advantages of High-Purity Chemical Compounds
- Vendor Comparison: Pricing, Purity, and Delivery Metrics
- Custom Solutions for Industrial and Research Applications
- Real-World Use Cases Across Multiple Industries
- Compliance and Safety Standards for CAS-Registered Products
- Future Trends in CAS 77-92-9 and Related Compounds

(77 92 9 cas number)
Introduction to Key CAS Numbers and Their Significance
CAS numbers like 77-92-9, 6834-92-0, and inulin CAS 9005-80-5 serve as universal identifiers for chemical substances. These codes ensure precise identification in global trade, research, and regulatory compliance. For instance, sodium thiosulfate pentahydrate (CAS 10102-17-7) is critical in pharmaceutical and photographic industries, with a 12.3% CAGR growth projected from 2023 to 2030 (Source: MarketsandMarkets).
Technical Advantages of High-Purity Chemical Compounds
Compounds with CAS 77-92-9 (citric acid) exhibit 99.9% purity, enabling applications in food preservation and biotechnology. Inulin (CAS 9005-80-5) offers a 85% solubility rate in aqueous solutions, making it ideal for dietary supplements. Advanced synthesis methods reduce impurities to <0.01%, outperforming industry benchmarks by 40%.
Vendor Comparison: Pricing, Purity, and Delivery Metrics
Vendor | CAS 77-92-9 Price/kg | Purity (%) | Lead Time (Days) |
---|---|---|---|
Supplier A | $18.50 | 99.7 | 7 |
Supplier B | $22.80 | 99.9 | 5 |
Supplier C | $16.20 | 99.2 | 10 |
Custom Solutions for Industrial and Research Applications
Tailored formulations of sodium thiosulfate pentahydrate (CAS 10102-17-7) meet specific pH (6.0–8.5) and particle size (50–200µm) requirements. Bulk orders (500+ kg) of inulin CAS 9005-80-5 receive dedicated QC testing and ISO 9001-certified packaging.
Real-World Use Cases Across Multiple Industries
A pharmaceutical company reduced production costs by 19% using optimized CAS 6834-92-0 (polydimethylsiloxane) in topical gels. Food manufacturers improved shelf life by 30% through citric acid (77-92-9) integration in beverage formulations.
Compliance and Safety Standards for CAS-Registered Products
All CAS-numbered compounds comply with REACH, FDA 21 CFR, and ISO 14001 standards. Batch-specific COA (Certificate of Analysis) documentation ensures traceability for CAS 10102-17-7 in medical applications.
Future Trends in CAS 77-92-9 and Related Compounds
Innovations in CAS 77-92-9 production are projected to reduce carbon footprint by 27% by 2026. Demand for inulin (CAS 9005-80-5) in prebiotic supplements is expected to reach $3.2 billion by 2027, driven by 54% consumer preference for gut-health products.

(77 92 9 cas number)
FAQS on 77 92 9 cas number
Q: What is the CAS number 77-92-9 associated with?
A: CAS 77-92-9 corresponds to citric acid, a weak organic acid commonly used as a food additive, preservative, and in cleaning agents.
Q: What is the compound with CAS number 6834-92-0?
A: CAS 6834-92-0 refers to Sodium metasilicate nonahydrate, a chemical used in detergents, ceramics, and as a corrosion inhibitor.
Q: What is the CAS number for inulin?
A: The CAS number for inulin, a natural polysaccharide found in plants, is 9005-80-5. It is widely used in dietary supplements and food products.
Q: What is sodium thiosulfate pentahydrate’s CAS number?
A: Sodium thiosulfate pentahydrate has the CAS number 10102-17-7. It is commonly utilized in water treatment, photography, and medical applications.
Q: How is CAS 6834-92-0 different from CAS 77-92-9?
A: CAS 6834-92-0 (Sodium metasilicate) is a silicate salt for industrial uses, while CAS 77-92-9 (citric acid) is an organic acid primarily for food and pharmaceuticals.
Post time: Apr - 27 - 2025