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Full biodegradation plastic for starch ester and preparation method

A technology for biodegradable plastics and starch esters, applied in the field of biodegradable plastics, can solve the problems of low degree of substitution of starch hydroxyl groups, and achieve the effects of excellent mechanical properties, good mechanical properties and excellent water resistance.

Active Publication Date: 2013-03-06
CHENDU NEW KELI CHEM SCI CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0008] The present invention aims at the defects that the degree of substitution of starch hydroxyl groups in the existing starch-based biodegradable plastics is low, and thermoplastic materials can be used for thermoplastic processing, and proposes a complete starch ester biodegradable plastic, which is composed of complete ester Composed of condensed starch esters, it has plastic properties such as solvent solubility, water resistance, and thermoplastic processability

Method used

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Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0033] 85 parts of tapioca starch, 5 parts of monopropyl maleate, 2 parts of succinic acid, 0.1 part of sodium tripolyphosphate, 0.05 part of lipase, and 200 parts of water were weighed for later use.

[0034] 1) Mix starch, water and lipase, raise the temperature in the reactor to 80°C, and stir at a constant speed for hydrolysis reaction for 30 minutes.

[0035] 2) The esterification agent succinic acid was added to the reaction kettle, the pressure of the reaction kettle was raised to 1.6Mpa, the temperature was raised to 120°C, and the esterification reaction was carried out under nitrogen protection for 30 minutes to obtain a liquid waxy starch ester.

[0036] 3) Add monopropyl maleate to the reaction kettle, the pressure of the reaction kettle rises to 1.6Mpa, the temperature rises to 120°C, and the polycondensation reaction occurs under nitrogen protection conditions to gradually form colloids. The reaction time is about 20 minutes, and the reaction is complete Finally,...

Embodiment 2

[0041] 90 parts of potato starch, 5 parts of ethyl dilactate, 2 parts of formic acid, 0.2 part of calcium maleate, 0.1 part of high-temperature α-amylase, and 200 parts of water were weighed for later use.

[0042] 1) Mix starch, water, and high-temperature α-starch in a reaction kettle at a temperature of 80°C, and stir at a constant speed for a hydrolysis reaction for 30 minutes.

[0043] 2) Formic acid was added to the reaction kettle, the pressure of the reaction kettle was raised to 2.0Mpa, the temperature was raised to 120°C, and the esterification reaction was carried out under nitrogen protection for 30 minutes to obtain a liquid waxy starch ester.

[0044] 3) Add ethyl dilactate into the reaction kettle, the pressure of the reaction kettle rises to 2.0Mpa, the temperature rises to 120°C, and the polycondensation reaction occurs under nitrogen protection conditions to gradually form colloids. The reaction time is about 20 minutes. After the reaction is complete, Add ca...

Embodiment 3

[0050] 95 parts of corn starch, 4 parts of hydroxybutyraldehyde, 3 parts of acetic anhydride, 0.2 part of epichlorohydrin, 0.1 part of high-temperature α-amylase, and 200 parts of water were weighed for later use.

[0051] 1) Combine starch, water, and high-temperature α-starch in a reaction kettle at a temperature of 80°C, and stir at a constant speed for a hydrolysis reaction for 40 minutes.

[0052] 2) Add acetic anhydride to the reactor, the pressure of the reactor is raised to 2.0Mpa, the temperature is raised to 120°C, and the esterification reaction is carried out under nitrogen protection for 30 minutes to obtain a liquid waxy starch ester.

[0053] 3) Add hydroxybutyraldehyde to the reaction kettle, the pressure of the reaction kettle rises to 2.0Mpa, and the temperature rises to 120°C. Under the condition of nitrogen protection, the polycondensation reaction gradually forms colloids. The reaction time is about 20 minutes. After the reaction is complete, add The epich...

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PUM

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Abstract

The invention discloses a full biodegradation plastic for starch ester and a preparation method. The invention is characterized in that the full biodegradation plastic for the starch ester is completely subjected to esterification processing. The full biodegradation plastic for the starch ester comprises the following raw materials in parts by weight: 85-95 parts of starch, 3-5 parts of flexible agent, 2-3 parts of esterifying agent, 0.1-0.3 parts of cross-linking agent, 0.05-0.1 parts of hydrolase and 200 parts of water. According to the invention, the starch is completely subjected to esterification reaction by hydrolysis, high-pressure esterification and polycondensation to obtain a long-chain starch ester plastic mass, the full biodegradation plastic for the starch ester is obtained by further shearing, mixing, crosslinking and devolatilizing on a screw extruder, and the biodegradation plastic can be completely prepared from the starch.

Description

technical field [0001] The invention relates to the field of biodegradable plastics. Specifically relates to a starch ester complete biodegradable plastic prepared by complete esterification treatment. The material has the characteristics of plastic and complete degradation function, and realizes the preparation of bioplastics by completely utilizing starch. The source of raw materials is sufficient, the quality is stable, and the process control is simple. It can replace the existing biodegradable plastics fermented by microorganisms and chemically synthesized to get rid of bioplastics. Dependence on petroleum resources and chemical raw materials. Background technique [0002] Biodegradable plastic is a new energy-saving and environmentally friendly material. Because it contains active groups such as hydroxyl, ester, and carboxyl that are easily decomposed by microorganisms, when placed in a natural environment under certain temperature and humidity conditions, due to...

Claims

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Application Information

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IPC IPC(8): C08L3/04C08J3/24C08B31/00C08B31/02
Inventor 陈庆曾军堂
Owner CHENDU NEW KELI CHEM SCI CO LTD
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