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The prospect of large-scale application of biodegradable materials is optimistic

Jul 20, 2020

As energy prices rise and environmental issues become increasingly prominent, the replacement of traditional petroleum products by biodegradable biomaterials worldwide is showing a gradual acceleration. It is expected that the government will also issue some corresponding preferential policies and laws and regulations to encourage market application , The prospect of large-scale application of biodegradable materials is optimistic.

Biodegradable materials include polymer materials produced directly by biotechnology, such as polyhydroxy fatty acid esters (PHA); a class of materials obtained by polymerization of raw materials produced by biotechnology, such as polylactic acid (PLA), poly Butylene succinate (PBS), polyamino acid, etc.; in addition, there are carbon dioxide copolymer aliphatic polycarbonate (APC), starch-based biodegradable plastics, etc.

Starch-based biodegradable plastic is a plastic product made by blending starch with other polymers after modification and grafting reaction. It can replace general-purpose plastics in industry, and can be used as packaging materials and shockproof materials. Plastic film, food containers, toys, etc.

PLA is a polymer material polymerized by lactic acid as raw material. It has the characteristics of non-toxic, non-irritating, high strength, easy processing and molding, and excellent biocompatibility. The product can be completely degraded after use. Therefore, PLA is a This bio-environmental protection material that can truly achieve the dual effects of ecology and economy is the most active and fastest-growing biodegradable plastic in recent years.

Polybutylene succinate is obtained by polycondensation of succinic acid and butylene glycol, and is currently recognized as a biodegradable plastic with the best comprehensive performance in the world. Because PBS has excellent comprehensive performance, reasonable cost performance, and a wide range of uses, it can be used in packaging, tableware, cosmetic bottles and pharmaceutical bottles, disposable medical supplies, agricultural films, pesticide and fertilizer slow-release materials, biomedical polymer materials and other fields.

Polyhydroxyalkanoate is a kind of natural polymer polyester, which is an intracellular polyester synthesized by many bacteria under specific conditions. Bacteria from more than 90 genera have been found to synthesize more than 150 different structures of PHA. At present, the commercialized PHA products mainly include polyhydroxybutyric acid (PHB), copolymer of hydroxybutyric acid and hydroxyvaleric acid (PHBV) and copolymer of hydroxybutyric acid and hydroxycaproic acid (PHBHHx).

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