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Fully biodegradable PE stretch film in terrestrial environment

Author: Site Editor     Publish Time: 01-25-2024      Origin: Site

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Polyolefins come from natural gas or petroleum and are hydrocarbon compounds containing hydrogen [H] and carbon [C] atoms. They are polymer materials with a carbon-carbon [C-C] bond as the backbone. This molecular structure determines the highly stable chemical properties of polyolefins, making them resistant to rapid degradation by environmental microorganisms. The result is significant environmental pollution and ecological crises. With the increasing awareness of environmental protection in society, the development of fully biodegradable Polyolefin has become urgent. 


Sunward Company, as a professional packaging material manufacturer, introduced advanced international technology, formulated a new recipe and meantime improved the manufacturing process. As a result, Sunward has successfully developed a PE stretch film that is fully biodegradable in natural environments. After testing and validation, the mechanical properties of the biodegradable PE stretch film from Sunward Company are essentially the same as traditional PE stretch films.


Extensive literature research, including domestic and international databases from 1985 to 2023, such as Chinese patents, Chinese scientific papers, Chinese theses, Chinese scientific journal papers, Chinese chemical abstracts, European Patent Office, Engineering Index, Science Abstracts, theses, Chemical Abstracts, and Scifinder database, concludes the following:


Innovativeness:


The biodegradable PE stretch film from Sunward Company is innovative, as there are reports of PE biodegradable stretch films in foreign and domestic literature, However, the preparation process, the composition and ratio of raw materials used by Sunward Company are different. Hence there are no literature reports of a product exactly the same as Sunward that is completely biodegradable in natural environments.


Advancement:


In terms of mechanical properties, the tensile strength and elongation at break of Sunward Company's biodegradable PE stretch film are superior to reported in both foreign literature and domestic literature and the two values both meet standard requirements (refer to Table 1). In terms of biodegradability, testing by SGS-CSTC Standards Technical Services (Shanghai) Co., Ltd. confirms that the degradation performance of Sunward's fully biodegradable PE stretch film complies with the requirements of the UK PAS 9017 《Plastics - Polyolefins for biodegradation in terrestrial environments – Specification》 and the national standard GBT22047-2008/ISO17556-2003 《Determination of the ultimate aerobic biodegradability of plastic materials in soil by measuring the carbon dioxide evolved》 (refer to Table 2).


Table 1: Test Report for biodegradable PE stretch film (19 micron)


No

SWD-010

Specification

19 Micron

Product Type

Fully biodegradable PE stretch film

Production Date

June 20th

Test Item

Unit

Standard

Test Result

Tensile

MD

N/MM2

15

30

TD

15

25

Elongation at break

MD

%

100

400

TD

100

600

Haze

%

2

1.2

 

Tolerance of Size

Average Thickness

μm

±0.3

19

Single Point Thickness

μm

±2

10-30

Width

mm

≥+510


AppearancePass

Conclusion Pass


Table 2: SGS Test Report


Fully biodegradable PE stretch film in terrestrial environment

In summary, Sunward Company's development of PE biodegradable stretch film have no identical literature reports both domestically and internationally. The tensile strength and elongation at break of the stretch film are superior to reported values in both foreign and domestic literature and the two values both meet standard requirements. The degradation performance complies with the UK standard PAS 9017 and the national standard GBT22047-2008/ISO17556-2003. Therefore, the PE biodegradable stretch film developed by Sunward Company in Shanghai has fulfilled an international advanced standard.


SUNWARD

POF Shrink Film Supplier
We are mainly engaged in R&D, production and sales of functional and environment-friendly packaging material.

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