1-Hydroxy Ethylidene-1,1-Diphosphonic Acid Dequest 2010 Etidronic Acid
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<p> <b><span>1-<span> </span></span></b><b>Hydroxy Ethylidene-1,1-Diphosphonic Acid</b> </p> <div align="center"> <b>(HEDP)</b> </div> <div align="left"> <b>CAS No. 2809-21-4 <span> </span></b> </div> <div align="left"> <b>Molecular Formula: C<sub>2</sub>H<sub>8</sub>O<sub>7</sub>P<sub>2</sub> <span> Molecular weight: 206.02 </span></b> </div> <div align="left"> <b>Synonyms: Dequest 2010; Etidronic Acid</b> </div> <div align="left"> <b>Properties:</b> </div> <div> HEDP is an organophosphoric acid corrosion inhibitor. It can chelate with Fe, Cu, and Zn ions to form stable chelating compounds. It can dissolve the oxidized materials on these metals’ surfaces. It shows excellent scale and corrosion inhibition effects under temperature 250℃. </div> <div> HEDP has good chemical stability under high pH value, hard to be hydrolyzed, and hard to be decomposed under ordinary light and heat conditions. Its acid/alkali and chlorine oxidation tolerance are better than that of other organophosphoric acids (salt). </div> <div> HEDP can react with metal ions in water system to form hexa-element chelating complex, with calcium ion in particular. Therefore, it has good antiscale and visible threshold effects. When built together with other water treatment chemicals, it shows good synergistic effects. </div> <div> Solid HEDP is crystal powder, suitable for usage in winter and freezing districts. Due to its high purity, it can be used as cleaning agent in electronic fields and as additives in daily chemicals. </div> <div align="left"> <b>Specification:</b> </div> <div align="center"> <table border="1" cellspacing="0" cellpadding="0" width="500"> <tbody> <tr> <td width="187"> <div align="center"> Items </div> </td> <td colspan="2"> <div align="center"> Index </div> </td> </tr> <tr> <td width="187"> <div align="left"> Appearance </div> </td> <td width="156"> <div align="center"> Clear, Colorless to pale yellow aqueous solution </div> </td> <td width="157"> <div align="center"> White crystal powder </div> </td> </tr> <tr> <td width="187"> <div align="left"> Active content (HEDP) % </div> </td> <td width="156"> <div align="center"> 58.0-62.0 </div> </td> <td width="157"> <div align="center"> 90.0min </div> </td> </tr> <tr> <td width="187"> <div align="left"> Phosphorous acid (as PO<sub>3</sub><sup>3-</sup>) % </div> </td> <td width="156"> <div align="center"> 2.0 max </div> </td> <td width="157"> <div align="center"> 0.8 max </div> </td> </tr> <tr> <td width="187"> <div align="left"> Phosphoric acid (asPO<sub>4</sub><sup>3-</sup> ) % </div> </td> <td width="156"> <div align="center"> 0.8 max </div> </td> <td width="157"> <div align="center"> 0.5 max </div> </td> </tr> <tr> <td width="187"> <div align="left"> Chloride (as Cl<sup>-</sup>) ppm </div> </td> <td width="156"> <div align="center"> 100.0 max </div> </td> <td width="157"> <div align="center"> 100.0max </div> </td> </tr> <tr> <td width="187"> <div align="left"> pH (1% solution) </div> </td> <td width="156"> <div align="center"> 2.0 max </div> </td> <td width="157"> <div align="center"> 2.0 max </div> </td> </tr> <tr> <td width="187"> <div align="left"> Density (20℃) g/cm<sup>3</sup> </div> </td> <td width="156"> <div align="center"> 1.43-1.47 </div> </td> <td width="157"> <div align="center"> - </div> </td> </tr> <tr> <td width="187"> <div align="left"> Fe, mg/L </div> </td> <td width="156"> <div align="center"> 10.0 max </div> </td> <td width="157"> <div align="center"> 5.0 max </div> </td> </tr> <tr> <td width="187"> <div align="left"> Colour APHA (Hazen) </div> </td> <td width="156"> <div align="center"> 30.0 max </div> </td> <td width="157"> <div align="center"> - </div> </td> </tr> <tr> <td width="187"> <div align="left"> Ca sequestration (mg CaCO<sub>3</sub>/g) </div> </td> <td width="156"> <div align="center"> 500.0 min </div> </td> <td width="157"> <div align="center"> - </div> </td> </tr> </tbody> </table> </div>
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