The Versatility of EDTA Disodium Dihydrate in Modern Chemistry
In the dynamic field of chemistry, specific compounds emerge as linchpins for innovation across numerous industries. EDTA Disodium Dihydrate, known by its CAS numbers 6381-92-6 and 139-33-3, is one such cornerstone molecule. Its exceptional chelating capabilities make it indispensable in applications ranging from cosmetic formulations to advanced industrial processes. As a prominent manufacturer and supplier, we aim to elucidate the versatile nature of this compound and guide potential buyers on effective sourcing strategies.
Chemical Foundation: EDTA Disodium Dihydrate
EDTA Disodium Dihydrate is a white, crystalline powder characterized by the molecular formula C10H14N2Na2O8•2H2O. Its efficacy stems from the EDTA molecule's ability to form stable complexes with a wide array of metal ions. This process, known as chelation, involves the formation of coordinate bonds between the ligand (EDTA) and the metal ion, effectively neutralizing the metal's reactivity.
Key chemical properties that make it valuable for buyers include:
- High Purity: Typically available at 99% purity, ensuring predictable chemical behavior and performance in sensitive applications.
- Chelation Strength: Forms robust complexes with polyvalent metal ions, significantly reducing their catalytic activity.
- Water Solubility: Its solubility in water allows for easy integration into aqueous-based formulations and processes.
- Stability: The compound itself is stable under standard storage conditions, ensuring a reliable shelf-life.
For R&D scientists and product developers, understanding these attributes is crucial when considering chemical suppliers.
Broad Spectrum of Applications
The unique properties of EDTA Disodium Dihydrate translate into a wide range of critical applications:
- Cosmetics and Personal Care: Enhances the performance and stability of products like shampoos and lotions by preventing metal ion-induced degradation and improving lathering.
- Food and Beverages: Acts as a preservative by sequestering metal ions that catalyze oxidation, thereby preserving color, flavor, and texture.
- Pharmaceuticals: Serves as an excipient to stabilize drug formulations, protecting APIs from degradation and ensuring therapeutic efficacy.
- Industrial Processes: Used in detergents, textiles, and water treatment to prevent discoloration, improve cleaning efficiency, and manage water hardness.
- Laboratory Reagents: Essential in various analytical and biochemical techniques where precise control of metal ion concentration is required.
When looking to buy these materials, it's essential to consider the reputation and capabilities of the chemical manufacturer and supplier.
Strategic Sourcing from a Leading Manufacturer
As a manufacturer of EDTA Disodium Dihydrate, we are dedicated to providing the chemical industry with high-quality products. Our commitment offers several advantages to buyers:
- Consistent Quality: We ensure 99% purity and adherence to rigorous specifications, vital for sensitive applications.
- Cost-Effective Procurement: Our manufacturing scale allows us to offer competitive prices for bulk orders, making it economical for businesses to purchase.
- Reliable Supply Chain: We maintain robust inventory and logistics to ensure timely and dependable delivery.
We encourage chemists and procurement professionals to contact us for a quote and a sample of our EDTA Disodium Dihydrate. Discover the advantage of partnering with a reliable chemical supplier that prioritizes quality and service.
Perspectives & Insights
Bio Analyst 88
“Chemical Foundation: EDTA Disodium Dihydrate EDTA Disodium Dihydrate is a white, crystalline powder characterized by the molecular formula C10H14N2Na2O8•2H2O.”
Nano Seeker Pro
“Its efficacy stems from the EDTA molecule's ability to form stable complexes with a wide array of metal ions.”
Data Reader 7
“This process, known as chelation, involves the formation of coordinate bonds between the ligand (EDTA) and the metal ion, effectively neutralizing the metal's reactivity.”