Polyphosphoric acid CAS 8017-16-1

Chemical Name: Polyphosphoric acid

Synonym:

CAS No.: 8017-16-1

MF: (H)n+2.(P)n.(O)3n+1    MW:

Molecular structure:

 

Polyphosphoric acid Application scenarios

1. Core Area of ​​Organic Synthesis:
It is a key cyclizing agent, acylating agent, and dehydrating agent in this field. It can catalyze intramolecular cyclization reactions of compounds such as carboxylic acids and ketones to synthesize quinolines and quinones, and can also catalyze the synthesis of heterocyclic compounds such as thiophenes; it can also be used in Friedel-Crafts reactions, amino acid rearrangements, and other reactions. Simultaneously, it catalyzes esterification reactions in fragrance synthesis to produce special fragrant esters, improves reaction selectivity and yield in drug synthesis, and is also an important raw material for the synthesis of phosphate esters and high-molecular-weight polyphosphate esters.

2. Petroleum Refining Field:
It can be used as a catalyst for alkylation reactions, promoting the reaction of olefins with hydrocarbons such as isobutane to produce high-octane gasoline components, thereby improving the quality and performance of gasoline, meeting the requirements of modern automobiles. In addition, it can also be used as a fuel additive to help optimize the relevant properties of petroleum products.

3. Building Materials Modification Field:
It is commonly used in asphalt modification. When blended with asphalt, it forms chemical bonds, significantly improving the rutting resistance, high-temperature stability, and water damage resistance of asphalt. Compared with other modifiers, it is also more cost-effective, and is widely used in asphalt paving for highways and municipal roads, ensuring the durability of roads.

4. Metal and Surface Treatment Field:
On the one hand, electroplating-grade high-purity polyphosphoric acid can be used for surface treatment of metals such as steel and aluminum, forming a phosphate conversion film with strong corrosion resistance and good adhesion, laying the foundation for subsequent coating and electroplating of metals, and extending the life of metal products; on the other hand, it can also be used to treat titanium implants, helping to optimize the bone regeneration compatibility of related orthopedic implant devices.

5. Electronics and New Energy Fields:
In the electronics industry, high-purity products can be used for cleaning and etching of integrated circuits and liquid crystal panels, and can also clean semiconductor materials such as silicon wafers, removing surface impurities and oxides, ensuring the precision of electronic component manufacturing. In the new energy field, it is an important raw material for the synthesis of lithium hexafluorophosphate, a key material for new energy batteries, supporting the production of lithium batteries and other new energy storage devices.

6. Food Processing Auxiliary Field:
Its sodium salts, potassium salts, and other derivatives are often used as food additives. For example, sodium polyphosphate can be used as a moisture retention agent in meat products, keeping them tender and juicy; in baked goods, it can act as a leavening agent, resulting in a lighter texture, and it can also adjust the acidity of some foods and extend their shelf life.

Description

Polyphosphoric acid CAS 8017-16-1

Item Specification
Appearance Colorless transparent or slightly yellowish, viscous liquid
H3PO4, % ≥105.0 ≥115.0 ≥116.0 ≥117.0 ≥118.0
P2O5, % ≥76.0 ≥83.3 ≥84.0 ≥84.7 ≥85.4
Chlorine, % ≤0.0010 ≤0.0010 ≤0.0010 ≤0.0010 ≤0.0010
Iron, % ≤0.0020 ≤0.0020 ≤0.0020 ≤0.0020 ≤0.0020
Arsenic, % ≤0.0100 ≤0.0100 ≤0.0100 ≤0.0100 ≤0.0100
Heavy metals (calculated as lead),% ≤0.0030 ≤0.0030 ≤0.0030 ≤0.0030 ≤0.0030

 

Application:

1. Polyphosphoric acid (PPA) is a commonly used chemical modifier of asphalt. Blended with asphalt, it forms stable chemical bonds, improves interfacial compatibility and modification effects, and has received much attention in recent years.

2. Polyphosphoric acid (PPA) undergoes two chemical reactions during the modification process: neutralisation and esterification. Compared with other modifiers, polyphosphoric acid has excellent modification effects on asphalt, such as improving water damage and rutting resistance, improving high temperature performance, reducing temperature sensitivity.

3. In addition, research has shown that the polyphosphoric acid and some polymer blending, not only can achieve the same effect with the use of polymer-modified asphalt alone, but also with cheap polyphosphoric acid modifier instead of some of the expensive polymer modifiers, reduce the cost of modified asphalt.

4. Polyphosphoric acid can also be used in organic synthesis as a water loss agent, cyclisation agent, acylating agent, is the condensation, cyclisation, rearrangement, substitution and other reactions of the catalyst or solvent.

5. Sometimes with polyphosphoric acid ester (PPE) class to increase the solubility of polyphosphoric acid in organic solvents, in addition to polyphosphoric acid is also used as orthophosphoric acid substitutes and analytical reagents.

6. It is used as a catalyst for polymerisation, alkylation, dehydration and isomerisation in the chemical and petrochemical industries, and has a wide range of applications especially in pharmaceuticals, organic pigments and petrochemical catalysts. It can also be used in the synthesis of pharmaceutical products such as Fluoro Methaquine and Ketotifen.

 

Package:40kgs/drum; 340kgs/drum; IBC drum.

 

Storage:

Being kept in dry, clean warehouse with well ventilation.

Avoid exposing to light and heating.

Protecting the product from leakage, rain and insolation during transportation.

 

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