
HEDTA FE 17084-02-5
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HEDTA FE 17084-02-5 |
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CAS: 17084-02-5 |
HS CODE: |
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Formula: C10H14FeN2O7++ |
Molecular Weight: 330.07200 |
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Structural Formula: |
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Synonyms: |
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Fe(III) (N-(hydroxyethyl)ethylenediaminetriacetate); |
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iron, [n-[2-[bis(carboxymethyl)amino]ethyl]-n-(2-hydroxyethyl)glycinato(3-)]; |
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Iron(2-), [N-[2-[bis(carboxy-.kappa.O)methyl]amino-.kappa.N]ethyl] -N- [2-(hydroxy-.kappa.O) ethyl}glycinate(3-)-.kappa.N,.kappa.O]; |
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hydroxyethylethylenediaminetriacetic acid, iron(III) salt; |
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Iron, [N-[2-[bis[(carboxy-.kappa.O)methyl]amino-.kappa.N]ethyl] -N- [2-(hydroxy-.kappa.O) ethyl]glycinato(3-)-.kappa.N,.kappa.O]; |
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Ferric hedta; |
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[N-[2-[bis(carboxymethyl)amino]ethyl]-N-(2-hydroxyethyl)glycinato(3-)] iron; |
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USAGE OF HEDTA FE |
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SPECIFICATION OF HEDTA FE |
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PTOPERTIES OF |
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Boiling Point: |
572.5ºC at 760 mmHg |
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Flash Point: |
300ºC |
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Vapour Pressure: |
1.72E-15mmHg at 25째C |
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SAFETY INFO: |
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N/A |
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MSDS: HEDTA FE |
TDS: HEDTA FE |
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RELATED PRODUCTS: |
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VIDEO: HEDTA FE |
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Introduction
HEDTA FE 17084-02-5 is a highly efficient chelating agent with good metal ion binding ability. This compound is a derivative of hydroxyethylethylenediaminetetraacetic acid (EDTA), contains multiple hydroxyl and ester groups, and can be widely used in water treatment, cleaning agents, metalworking fluids and agriculture.
Advantages
Good chelating ability
HEDTA FE 17084-02-5 can form stable chelates with a variety of metal ions (such as iron ions, calcium ions, etc.), and is particularly suitable for treating metal impurities in aqueous solutions or controlling the concentration of metal ions.
High temperature resistance
The boiling point of this chemical is as high as 572.5℃ (760 mmHg) and the flash point is 300℃. It shows good thermal stability and can be used in industrial applications under high temperature environments.
Safe vapor pressure
HEDTA FE 17084-02-5 has an extremely low vapor pressure of only 1.72E-15 mmHg at 25℃. It has low volatility, is safer during use, and has less impact on the environment.
Chemical stability
HEDTA molecules contain multiple carboxyl (-COOH) and amino (-NH) functional groups, which can form multiple coordination bonds with metal ions to form stable chelates, which can maintain their performance for a long time and reduce the risk of decomposition or failure.
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