Let's count some benefits of using bioplastics
- Decreased plastic waste
- Possess no carbon footprint
- Non-toxic and poses no health risk
PolymerHemp is a polymer science technology focused on composites made from renewable sources. A biocomposite is formed by a base matrix (resion) and reinforced by natural hemp fibers.
Our planet has no alternative, We have! So switch plastics with bioplastics and please save Mother Earth!
We Must encourage consumers to consider their purchases if we hope to create a low-pollution, sustainable society.
Our planet has no alternative, We have! So switch plastics with bioplastics and please save Mother Earth!
We Must encourage consumers to consider their purchases if we hope to create a low-pollution, sustainable society.
Polymern Hemp is a science and technology company. Our environmentally friendly resin is ideal for high strength, low respiratory irritation, and equipment wear. Polymern Hemp is a science and technology company. Our environmentally friendly resin is ideal for high strength, low respiratory irritation, and equipment wear.
We are assisting us all in this mission by providing free moulding of any ideas you may have. Let us help you with hemp plastic component you need. We are dedicated to the future and working to rid the planet of plastic thought our biodegradable line.
The potentiality of natural plants in replacing traditional and mineral fillers as reinforcements in plastic matrix composites is in its infancy.
Much interest has been seen with biocomposites materials due to the significant rapid renewability of resources.
For example, as a non-renewable resource, glass fibers have been used for some time and since their inception, a number of limitations have been evident, such as high energy consumption, processing difficulties, poor recycling properties and poor degradability.
Furthermore, glass fiber particles have shown to cause environmental pollution and is a considerable health hazard.
The potentiality of natural plants in replacing traditional and mineral fillers as reinforcements in plastic matrix composites is in its infancy. Much interest has been seen with biocomposites materials due to the significant rapid renewability of resources.
For example, as a non-renewable resource, glass fibers have been used for some time and since their inception, a number of limitations have been evident, such as high energy consumption, processing difficulties, poor recycling properties and poor degradability. Furthermore, glass fiber particles have shown to cause environmental pollution and is a considerable health hazard.
The potentiality of natural plants in replacing traditional and mineral fillers as reinforcements in plastic matrix composites is in its infancy. Much interest has been seen with biocomposites materials due to the significant rapid renewability of resources.
For example, as a non-renewable resource, glass fibers have been used for some time and since their inception, a number of limitations have been evident, such as high energy consumption, processing difficulties, poor recycling properties and poor degradability.
Furthermore, glass fiber particles have shown to cause environmental pollution and is a considerable health hazard.
The potentiality of natural plants in replacing traditional and mineral fillers as reinforcements in plastic matrix composites is in its infancy.
Much interest has been seen with biocomposites materials due to the significant rapid renewability of resources.
For example, as a non-renewable resource, glass fibers have been used for some time and since their inception, a number of limitations have been evident, such as high energy consumption, processing difficulties, poor recycling properties and poor degradability.
Furthermore, glass fiber particles have shown to cause environmental pollution and is a considerable health hazard.
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