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A degradable three-layer co-extruded plastic composite film with oxygen barrier properties

A three-layer co-extrusion and composite film technology, which is applied in the field of plastic film materials, can solve the problems of application limitations and reduction of film mechanical properties, and achieve the goals of improving mechanical properties, compatibility, oxygen barrier and degradability Effect

Active Publication Date: 2017-06-06
TIANJIN JINSHENGYU PLASTIC PROD SCI & TECH CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, further studies have found that although the oxygen barrier and degradability of the oxygen barrier and degradable plastic film are greatly improved compared with LDPE films, from the perspective of application, the oxygen barrier and degradability still need to be further improved
In the LDPE / PBM / Pullulan system, increasing the content of PB and Pullulan, especially the increase of the content of Pullulan, can improve the oxygen barrier and degradability, but the overall mechanical properties of the film are reduced, and the application is greatly restricted.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0040] A preparation method of a degradable plastic composite film with oxygen barrier properties, comprising the following steps:

[0041] (1) Preparation of modified Pullulan polysaccharide. Weigh 100Kg of Pullulan polysaccharide, add 100L of tannic acid solution with a concentration of 2.5g / L to dissolve evenly, blast dry and cut into pellets to obtain tannic acid-modified Pullulan polysaccharide.

[0042] (2) Preparation of three-layer film raw materials. The raw materials of the inner layer and the outer layer are the same, and its components are 100Kg of LDPE, 70Kg of PBM masterbatch, 20Kg of tannic acid modified Pullulan polysaccharide, 4Kg of antioxidant 168, and 1Kg of ultraviolet absorber UV-531. Mix LDPE, PBM masterbatch, modified Pullulan polysaccharide, antioxidant, and ultraviolet absorber in a conventional high-speed mixer for 25 minutes according to the formula, and then extrude and granulate in a twin-screw extrusion granulator. The temperature of the rear s...

Embodiment 2

[0046] A preparation method of a degradable plastic composite film with oxygen barrier properties, comprising the following steps:

[0047] (1) Preparation of modified Pullulan polysaccharide. Weigh 100Kg of Pullulan polysaccharide, add 100L of tannic acid solution with a concentration of 2g / L to dissolve evenly, blast dry and cut into pellets to obtain tannic acid-modified Pullulan polysaccharide.

[0048] (2) Preparation of three-layer film raw materials. The raw materials of the inner layer and the outer layer are the same, and its components are 100Kg of LDPE, 50Kg of PBM masterbatch, 40Kg of tannic acid modified Pullulan polysaccharide, 4Kg of antioxidant 168, and 1Kg of ultraviolet absorber UV-531. Mix LDPE, PBM masterbatch, modified Pullulan polysaccharide, antioxidant, and ultraviolet absorber in a conventional high-speed mixer for 30 minutes according to the formula, and then extrude and granulate in a twin-screw extrusion granulator. The temperature of the rear sec...

Embodiment 3

[0052] A preparation method of a degradable plastic composite film with oxygen barrier properties, comprising the following steps:

[0053] (1) Preparation of modified Pullulan polysaccharide. Weigh 100Kg of Pullulan polysaccharide, add 100 L of tannic acid solution with a concentration of 3g / L to dissolve evenly, blast dry and cut into pellets to obtain tannic acid-modified Pullulan polysaccharide.

[0054] (2) Preparation of three-layer film raw materials. The raw materials of the inner layer and the outer layer are the same, and its components are 100Kg of LDPE, 60Kg of PBM masterbatch, 30Kg of tannic acid modified Pullulan polysaccharide, 3Kg of antioxidant 168, and 1Kg of ultraviolet absorber UV-531. According to the formula, LDPE, PBM masterbatch, modified Pullulan polysaccharide, antioxidant, and ultraviolet absorber were mixed in a conventional high-speed mixer for 35 minutes, and then extruded and granulated in a twin-screw extrusion granulator. The temperature of t...

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PUM

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Abstract

The invention discloses a degradable three-layer co-extrusion plastic composite film with an oxygen separation performance. Degradable plastic master batch PBM mature in the present market, Pullulan polysaccharide and film-level LDPE are employed as raw material with addition of anti-oxidants and ultraviolet ray absorbers, tannic acid is employed for modifying Pullulan polysaccharide, further the plastic film three-layer co-extrusion film blowing technology is employed, and a three-layer plastic composite film with good oxygen separation performance, degradability and mechanical properties is prepared. The inner layer, the middle layer and the outer layer of the composite film are LDPE / PBM / Pullulan, PBM / Pullulan and LDPE / PBM / Pullulan respectively. The composite film can decompose automatically under action of oxygen enrichment and microbes, a wasted film can be degraded and digested completely by microbes in nature, the oxygen separation performance of the composite film can be raised by 70%-80% compared with the oxygen separation performance of an LDPE film with the same thickness, and the mechanical properties of the composite film are almost the same as mechanical properties of an LDPE film with the same thickness. The composite film is advantaged by simple production technology, high production efficiency and easy industrial enforcement.

Description

technical field [0001] The invention belongs to the field of plastic film materials, in particular to a degradable three-layer co-extruded plastic composite film with good mechanical properties and oxygen barrier properties. Background technique [0002] The preservation of food and medicine requires packaging materials to have excellent oxygen barrier properties to prevent the oxygen in the air from destroying their components. For the packaging of foods and medicines that require high oxygen barrier properties, traditional plastic packaging film materials have different degrees of air permeability, which seriously affects the quality of packaging. At present, traditional packaging materials such as glass and aluminum foil are still the main packaging materials for oxygen barrier substances, or these materials are used in combination with polymer materials. This makes the packaging cost high, difficult to recycle materials, and pollutes the environment. Therefore, the dev...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B32B27/06B32B27/32B32B9/04C08L23/06C08L3/02C08L5/00B65D65/46B65D65/40B29D7/01B29B9/06B29C47/06B29C55/28
CPCY02W90/10
Inventor 朱凤超田雪涛王雪
Owner TIANJIN JINSHENGYU PLASTIC PROD SCI & TECH CO LTD
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