Understanding the Purity and Specifications of Triazinetrisaminohexanoic Acid
For Research and Development scientists and product formulators, understanding the precise specifications of chemical raw materials is paramount to achieving optimal experimental outcomes and product performance. When working with advanced compounds like Triazinetrisaminohexanoic Acid (CAS 80584-91-4), delving into purity levels, active content, and other critical parameters is essential for successful application.
The Significance of Purity and Active Content:
Triazinetrisaminohexanoic Acid is a complex organic molecule prized for its corrosion-inhibiting properties. It is often supplied in various grades, with differing percentages of the active compound. Common purities or active content levels include 50%, 65%, 85%, and even higher, up to 99% or more. The choice of purity depends heavily on the intended application:
- Higher Purity Grades (e.g., 85-99%): These are typically preferred for applications where maximum performance and minimal interference from impurities are critical. This might include high-performance metalworking fluids, specialized coolants, or formulations requiring strict control over byproducts.
- Lower Purity Grades (e.g., 50-65%): These grades can be more cost-effective for applications where a slightly lower concentration of the active ingredient is acceptable, or where the solvent/carrier in these grades offers additional benefits. For instance, some lower-purity versions might be sold as viscous liquids or pasty solids, which can aid in handling and dissolution in certain systems.
Key Technical Specifications to Consider:
Beyond active content, several other specifications define the quality and suitability of Triazinetrisaminohexanoic Acid:
- Appearance: Typically described as white granules, powder, or a light yellow to brown viscous liquid/pasty solid, depending on the grade.
- Acid Value: This indicates the amount of free acid present, often expressed in mg KOH/g. For Triazinetrisaminohexanoic Acid, values typically range from 221-240 mg KOH/g or 340-370 mg KOH/g, depending on the specific product and purity. This parameter is important for pH adjustments and solubility.
- Chloride Content: Low chloride content is desirable, as chloride ions can contribute to corrosion. For high-performance applications, levels below 350 ppm, or even below 100 ppm, are sought after. Manufacturers often highlight their ability to achieve very low chloride content (e.g., tens of ppm) as a mark of quality.
- Solubility and Clarity: The ability to dissolve well in water or common solvents like triethanolamine (TEA) and maintain a clear solution is crucial for many formulations.
- Melting Point: For solid forms, the melting point range provides an indicator of purity. For Triazinetrisaminohexanoic Acid, this is typically around 178-182 °C or 186-188 °C for different solid forms.
How to Buy the Right Grade:
When you decide to buy Triazinetrisaminohexanoic Acid, communicate your specific application requirements to potential suppliers. As a dedicated manufacturer in China, we offer a range of purity levels and specifications to meet diverse R&D and production needs. We can provide detailed Certificates of Analysis (COA) for each batch, ensuring you have the precise data required for your projects. Inquire about our wholesale prices and reliable supply chain to secure your high-quality Triazinetrisaminohexanoic Acid.
Perspectives & Insights
Bio Analyst 88
“For Research and Development scientists and product formulators, understanding the precise specifications of chemical raw materials is paramount to achieving optimal experimental outcomes and product performance.”
Nano Seeker Pro
“When working with advanced compounds like Triazinetrisaminohexanoic Acid (CAS 80584-91-4), delving into purity levels, active content, and other critical parameters is essential for successful application.”
Data Reader 7
“The Significance of Purity and Active Content:Triazinetrisaminohexanoic Acid is a complex organic molecule prized for its corrosion-inhibiting properties.”