| 84862 |
Synonym: 2,2′,2′′-Nitrilotriethyl Borate
| Appearance | N/A |
| Content of Zinc | N/A |
| Boiling Point | N / A |
| Melting Point | 237°C |
| Vapor Pressure | N/A |
| % Volatile by Weight | N/A |
| Solubility in Water | N/A |
| Density | N/A |
| pH of Liquid, Typical (10% soln) | N/A |
| Specific Gravity Approx | N/A |
| Odor | N/A |
| pH | N/A |
| Flash Point | N/A |
| Ignition temperature | N/A |
| Lower exposure limit | N/A |
| Upper exposure limit | N/A |
| Color | White |
| Formula Weight | 156.98 |
| Physical Form | Crystal-Powder at 20°C |
| Chemical Name or Material | Triethanolamine Borate |
Classification of the substance or mixture
GHS Label elements, including precautionary statements
Hazards not otherwise classified (HNOC) or not covered by GHS
GHS Classification in accordance with 29 CFR 1910 (OSHA HCS). For the full text of the H-Statements mentioned in this Section, see Section 16.
Signal word :
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Triethanolamine borate is a boron-containing organic compound formed from boric acid and triethanolamine. It is typically a viscous liquid and is valued for its lubricating and stabilizing properties in industrial applications.
Triethanolamine borate uses include metalworking fluids, corrosion inhibitors, engine coolants, and lubricant additives. It enhances thermal stability, reduces wear, and helps maintain pH balance in fluid systems.
Yes, Sarchem Laboratories can provide triethanolamine borate in research and industrial grades, with customized concentrations or formulations available based on client requirements.
Triethanolamine borate is considered low in toxicity when used properly, but it should be handled according to safety guidelines and disposed of in accordance with local environmental regulations.
Store triethanolamine borate in tightly sealed containers, away from heat and moisture. Use clean, dry handling equipment to maintain product integrity and prevent contamination.
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