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Application
  • Glass making/ casting

Phthalic anhydride

Phthalic Anhydride is an important aromatic chemical intermediate that appears as white crystalline flakes or powder with a pungent, irritating odor.
It is primarily used as a key raw material in the production of saturated and unsaturated polyester resins, PVC plasticizers, alkyd resins, and various pharmaceutical and dye intermediates.


Chemical Structure

Phthalic Anhydride consists of a 1,3-isobenzofuran-1,3-dione ring, obtained by dehydration of phthalic acid.

  • Molecular Formula: C₈Hâ‚„O₃

  • Structure Type: Cyclic anhydride derived from phthalic acid

  • Functional Groups: Two carbonyl groups within a fused aromatic ring


Physical and Chemical Properties

Property Specification
Appearance White to transparent crystalline solid or powder
Density (solid, 20 °C) ~1.53 g/cm³
Melting Point 131–132 °C
Boiling Point 284–295 °C (may sublime)
Vapor Pressure (20 °C) ~0.0015 mmHg (very low)
Solubility in Water Slight (~0.62 g/100 g at 20 °C); higher at 100 °C (~19 g/100 g)
Color and Odor Colorless to faint yellow; strong, pungent odor

Key Advantages

  • Essential intermediate in manufacturing saturated and unsaturated polyester resins, widely used in fiberglass, coatings, and industrial paints.

  • Primary precursor for phthalate plasticizers used to enhance flexibility and durability in PVC.

  • Plays a crucial role in the synthesis of pharmaceuticals, dyes, pigments, and cosmetic raw materials.

  • High reactivity and conversion efficiency, enabling cost-effective large-scale production.


Limitations and Hazards

  • Strong irritant to skin, eyes, and respiratory system; requires controlled industrial environments.

  • Dust explosion hazard: airborne fine particles may ignite — appropriate dust control systems are essential.

  • Reacts exothermically with moisture — hydrolyzes to phthalic acid upon exposure to humidity.

  • Environmental restrictions apply in some regions due to ecological impact and emission control standards.


Applications

  • Unsaturated Polyester Resins (UPR): for FRP, composites, laminates, and industrial coatings.

  • Plasticizer Production: synthesis of phthalate esters for flexible PVC applications.

  • Paints, Adhesives, and Pigments: intermediate for alkyd resins and colorant synthesis.

  • Pharmaceuticals and Cosmetics: used in controlled synthesis of active intermediates.

  • Specialty Chemicals: manufacturing of lubricant additives, fertilizers, and functionalized industrial oils.


Safety and Handling

GHS Classification:

  • H317 – May cause an allergic skin reaction

  • H318 – Causes serious eye damage

  • H334 – May cause respiratory sensitization

Personal Protective Equipment (PPE):

  • Safety goggles or face shield

  • Chemical-resistant gloves and protective clothing

  • Respiratory protection where dust formation is possible

Storage Conditions:

  • Store in a cool, dry, and well-ventilated area

  • Keep containers tightly closed and away from moisture

  • Prevent dust accumulation and static discharge

Emergency Measures:

  • Skin/Eye Contact: Flush immediately with plenty of water and seek medical attention

  • Inhalation: Move to fresh air and consult a physician if irritation persists

  • Spillage: Avoid dust dispersion; collect dry material and dispose of safely according to local regulations


Summary:
Phthalic Anhydride (PA) is a high-purity, versatile intermediate essential in the resin, plasticizer, coating, and chemical manufacturing industries.
Its balance of reactivity, performance, and product yield makes it a critical compound in modern industrial chemistry — provided it is handled under proper safety and environmental protocols.

Phthalic anhydride