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Para Methoxy Phenyl Acetone
Para Methoxy Phenyl Acetone

Para Methoxy Phenyl Acetone

MOQ : 1 Unit

Para Methoxy Phenyl Acetone Specification

  • Usage
  • Perfumer, Flavorist, Food Additives, And Intermediate of drug
  • Appearance
  • Clear Pale Yellow Colour Liquid
  • Refractive Rate
  • About 1.5250 at25 oc
 

Para Methoxy Phenyl Acetone Trade Information

  • Minimum Order Quantity
  • 1 Unit
  • Delivery Time
  • 10 Days
 

About Para Methoxy Phenyl Acetone

Para Methoxy Phenyl Acetone, also known as PMPA or 4-Methoxyphenylacetone, is an organic compound available in the form of colorless to pale yellow liquid. This chemical compound with a chemical formula of C10H12O2 has a molecular weight of 164.20. It is majorly used in manufacturing pharmaceuticals, fragrances, and other organic compounds. This chemical compound can be synthesized through the reaction of para-anisidine with chloroacetic acid or by reacting p-anisaldehyde with methyl magnesium bromide followed by oxidation. 

 

Specification

Product Name4 METHOXY PHENYL ACETONE
CharacteristicsDescription

Packaging-Primary (Inner Packaging)

HDPE Drums / 0.1. Drums / ISO Tank
Packaging-Shipping (Outer Packaging)Palleting With Wrapping
Storage ConditionsAmbient Temperature & Full Tightly Sealed Container
Specific Labeling RequirementsSpecimen Of Label - Attached
ApplicationPerfumer, Flavorist, Food Additives, And Intermediate of drug
PHYSICAL & CHEMICAL SPECIFICATION
AppearanceClear Pale Yellow Colour Liquid
OdourAromatic Odour
SolubilityMiscible in Methanol and MDC
% Assay (By GC)99.00 % Min
Impurity profile in %-------------
Para Anisic Aldehyde0.30 % Max
Methyl-2-chloropropionate0.10% Max
Glycidic esterO.lO%Max
2-methloxy phenyl acetone0.10% Max
3-methloxy phenyl acetone0.10 % Max
3 Methyl 4- MPA0.15 % Max
Unknown0.20 % Max
Total impurities1.00 % Max.
Moisture (w/w)0.30 0/0 Max
Specific gravity1.058 - 1.072 at25 oc
Refractive IndexAbout 1.5250 at25 oc
Boiling Point CC)267 - 268 oc
Melting point-15 oc


Versatile Applications Across Industries

Para Methoxy Phenyl Acetone is appreciated for its dual use in both food and fragrance sectors. Its chemical stability and distinct aromatic qualities make it a favored choice for perfumers and flavorists. Its role as a pharmaceutical intermediate further elevates its value in the global marketplace.


High Standards in Manufacturing and Supply

Produced under stringent quality controls in India, our Para Methoxy Phenyl Acetone is supplied to both domestic and international clients. Our robust export process ensures timely and safe delivery, supporting various industries worldwide.

FAQs of Para Methoxy Phenyl Acetone:


Q: What are the primary uses of Para Methoxy Phenyl Acetone?

A: Para Methoxy Phenyl Acetone is commonly utilized in perfumery, as a flavor additive, in food products, and as an intermediate for pharmaceutical manufacturing.

Q: How is Para Methoxy Phenyl Acetone processed for industrial applications?

A: The compound undergoes controlled synthesis and rigorous quality assessment to ensure it meets the stringent requirements of perfumers, flavorists, and pharmaceutical manufacturers.

Q: Where is Para Methoxy Phenyl Acetone manufactured and supplied from?

A: We manufacture and supply Para Methoxy Phenyl Acetone in India, catering to both local and international markets with efficient export solutions.

Q: When should Para Methoxy Phenyl Acetone be used in product formulation?

A: This compound is ideal during the flavoring or scent formulation stages, or when synthesizing specific pharmaceutical compounds that require stable aromatic intermediates.

Q: What benefits does Para Methoxy Phenyl Acetone offer to perfumers and flavorists?

A: It provides a stable and desirable aromatic profile, enhancing both fragrance and flavor products with consistency and high purity.

Q: How does the refractive index of Para Methoxy Phenyl Acetone contribute to its function?

A: Its refractive index of about 1.5250 at 25C reflects its chemical purity and can be a key parameter in quality control during product formulation processes.

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