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Poly(3-hydroxybutyrate)

Updated: 2026-07-17

Overview

Poly(3-hydroxybutyrate) (PHB) is a naturally occurring biodegradable polyester synthesized by various microorganisms as an energy storage material. It belongs to the polyhydroxyalkanoate (PHA) family and is known for its thermoplastic properties and environmental compatibility. PHB is produced through bacterial fermentation of sugars or lipids, making it a sustainable alternative to petroleum-based plastics. Due to its microbial origin, PHB is fully biodegradable under composting conditions, breaking down into water and carbon dioxide. This characteristic has driven its adoption in eco-friendly packaging, disposable products, and specialized medical applications where biodegradability is crucial.

Physical and Chemical Properties

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PHB exhibits a semi-crystalline structure with a high degree of crystallinity (50-70%), contributing to its stiffness and brittleness in pure form. Its melting point ranges between 160-180°C, similar to polypropylene, but it has a narrower processing window due to thermal degradation near its melting point. The polymer is insoluble in water but dissolves readily in chlorinated solvents like chloroform. Mechanically, PHB has a tensile strength of 30-40 MPa and an elongation at break of 5-8%, which can be improved through copolymerization or blending with other polymers. Its barrier properties against oxygen and water vapor are superior to many biodegradable alternatives, making it suitable for food packaging applications.

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Main Applications

The primary use of PHB is in sustainable packaging solutions, including food containers, bottles, and films where biodegradability is required. In the medical field, PHB's biocompatibility makes it valuable for surgical sutures, drug delivery systems, and tissue engineering scaffolds that gradually absorb in the body. Agricultural applications include biodegradable mulch films and plant pots that decompose in soil. Emerging uses include 3D printing filaments and disposable items like cutlery and straws. PHB is also being explored in consumer electronics for temporary casings and in fishing gear to prevent plastic pollution in oceans.

Safety and Storage

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PHB is generally recognized as safe for most applications, with low toxicity and no known carcinogenic effects. However, as with all fine powders, inhalation of dust during processing should be avoided through proper ventilation or respiratory protection. Prolonged skin contact may cause mild irritation in sensitive individuals. Storage requires protection from moisture to prevent premature degradation. The material should be kept in sealed containers at room temperature (15-25°C) away from direct sunlight. Bulk storage in humid environments may require desiccants. PHB is not considered flammable but may emit fumes if overheated during processing.

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B2B Procurement Guide

When sourcing PHB, buyers should first verify the material's certification for biodegradability (e.g., EN 13432, ASTM D6400) and its production method (bacterial strain used, fermentation substrate). Industrial-grade PHB typically has a purity of 96-99%, while medical-grade requires higher purity levels (≥99.5%). Key procurement considerations include minimum order quantities (often 500kg+ for bulk purchases), lead times (4-8 weeks for customized formulations), and compatibility with existing processing equipment. Buyers should request technical datasheets with melt flow index (MFI) values and thermal stability data. For packaging applications, confirm barrier property specifications and regulatory compliance for food contact if applicable.

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