Film Masterbatches
MA1250P, MA1250P-2, MA1250P-A
- Improves flexibility and film handling of PLA
- Able to be dry blended, easy to customize
- Certified industrial and home compostable
Masterbatch Portfolio
We at CJ Biomaterials offer many different masterbatches for you to use in your applications.
Product Highlights
PHACT™ PHA materials are designed to deliver performance, processability, and compostability, enabling real-world applications at scale.
Film Masterbatches
Spunbond Masterbatches
Meltblown Masterbatches
Nucleation Masterbatches
Technical Information
| Masterbatches | ||||||||
|---|---|---|---|---|---|---|---|---|
| Property | Units | MA1250P | MA1250P-2 | MA1250P-A | MA1350Q | MA8750A | MS0001N | MS0002N |
| Form | - | Pellet | Pellet | Pellet | Pellet | Pellet | Pellet | Pellet |
| Specific Gravity | g/cc | 1.22 | 1.22 | 1.22 | 1.22 | 1.22 | 1.25 | 1.25 |
| Melt Temperature | °C | 150 - 170 | 150 - 170 | ~80 | 150 - 170 | 165 - 185 | - | - |
| Glass Transition Temp | °C | -17, 60 | -17, 60 | -17, 57 | -17, 60 | -17, 60 | - | - |
| Melt Flow Rate (190 C, 2.16 kg) | g/10 min | 5 - 8 | 5 - 8 | 5 - 8 | ~20 | 10 - 18 | 1.0 | 1.0 |
| Biobased Carbon Content | % | 100.0 | 100.0 | 100.0 | 100.0 | 100.0 | - | - |
| Masterbatches | ||||||||
|---|---|---|---|---|---|---|---|---|
| MA1250P | MA1250P-2 | MA1250P-A | MA1350Q | MA8750A | MS0001N | MS0002N | ||
| Ideal Applications | Films | |||||||
| Injection Molding | ||||||||
| Rigid Thermoforming | ||||||||
| Extrusion Coating | ||||||||
| Fibers/Nonwovens | ||||||||
| Certifications | Industrial Compostability | |||||||
| Home Compostability | ||||||||
| Soil Degradability | ||||||||
| Marine Degradability | ||||||||
| Regional Availability | Americas | |||||||
| EMEA | ||||||||
| APAC | ||||||||
| South Korea | ||||||||
| Japan | ||||||||
| China | ||||||||
Sustainability
Designed to meet real-world application needs, from material performance to technical guidance and end-of-life solutions.
The circular economy is a sustainable approach that aims to keep materials in use for as long as possible by reducing waste, reusing resources, and recycling products at the end of their life. This means designing materials that are made from renewable biological resources and can be reused, recycled, composted, or biodegraded in appropriate systems. Bioplastics in a circular economy are intended to minimize environmental impact, reduce dependence on fossil fuels, and return valuable materials or nutrients back into the production cycle whenever possible.
Sugarcane is one of the most widely used renewable feedstocks for the production of polyhydroxyalkanoates (PHAs), a family of biodegradable bioplastics produced by microorganisms. During the production process, sugars extracted from sugarcane are fermented by bacteria, which convert the carbon-rich substrate into PHA as an intracellular energy storage material. Because sugarcane is a fast-growing, renewable crop with high sugar content, it provides an efficient and sustainable carbon source for microbial fermentation. Using sugarcane as a feedstock can reduce reliance on petroleum-based raw materials while supporting the production of biodegradable plastics with a lower environmental footprint.We are with you every step of the way to help you get the best experience with our PHACT™ PHA products. We have technical experts on staff who have years of experience working with PHA and adaption it into new and existing products.
As biodegradable and, in many cases, compostable bioplastics, PHAs can be broken down by naturally occurring microorganisms into carbon dioxide, water, and biomass under appropriate conditions. Unlike many other compostable bioplastics that require industrial composting facilities, PHAs have demonstrated the ability to biodegrade in a wider range of environments, including industrial and home compost, soil, freshwater, and marine ecosystems. However, the rate of degradation depends on factors such as temperature, moisture, microbial activity, and the specific PHA formulation. While PHAs offer improved end-of-life options compared with conventional plastics, proper waste management and composting infrastructure remain important to maximize their environmental and circular economy benefits.
Resources
FAQs
Find answers to common questions about PHA materials, applications, performance, and sustainability.
Explore PHACT™ PHA for Your Applications
Our technical team can help evaluate materials, performance requirements, and sustainability targets for your application.
PHACT™ PHA Masterbatches are advanced, ready-to-use materials engineered by CJ Biomaterials to deliver high performance, processability, and compostability. They are designed to be easily integrated into manufacturing processes to enable scalable, sustainable solutions across packaging, consumer goods, and other industries.
We offer a diverse portfolio of masterbatches tailored for specific applications, including:
Film Masterbatches (e.g., MA1250P series)
Spunbond Masterbatches (e.g., MA1350Q)
Meltblown Masterbatches (e.g., M8750A)
Nucleation Masterbatches (e.g., MS0001N, MS0002N)
Yes. Our PHACT™ PHA masterbatches are certified biobased. They hold Home and Industrial compostable certifications from BPI, as well as OK compost HOME and INDUSTRIAL, and OK biodegradable SOIL and MARINE certifications from TÜV AUSTRIA. They are designed to support a circular economy by breaking down into carbon dioxide, water, and biomass under appropriate conditions without leaving behind persistent microplastics.
Yes, we are with you every step of the way. We have technical experts on staff with years of experience working with PHA. Our team can help you determine which masterbatch grades will work best for your specific application and provide R&D guidance to ensure the adoption of PHACT™ PHA goes smoothly.
CJ Biomaterials provides comprehensive documentation to support your manufacturing needs. Safety Data Sheets (SDS) and Technical Data Sheets (TDS) are readily available for all masterbatch products. These resources can help you evaluate specific material performance parameters and ensure safe, effective implementation in your applications.