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包 装 工 程 第40 卷 第7 期
·66 · PACKAGING ENGINEERING 2019 年4 月
3--co-3-
(广西大学,南宁 530004 )
目的 综述近年来国内外聚(3-羟基丁酸酯-co-3-羟基戊酸酯)(PHBV )的改性研究进展,为进一
步开发PHBV 在包装领域的应用提供科学的理论基础。方法 以PHBV 薄膜材料为主,根据PHBV 的优
缺点,从物理改性和化学改性2 个方面进行阐述。结果 PHBV 是一种拥有生物可降解性的热塑性树脂,
具有广阔的应用前景,但PHBV 的脆性大、韧性差,必须对其进行改性,且物理和化学改性均有优缺点。
结论 大量研究表明,PHBV 经过改性后性能有所改善,但由于其相容性差导致复合材料性能的提升幅
度有限,因此,有待开发和完善PHBV 的生物降解性,且工艺简单、成本又低的改性技术。
PHBV ;物理改性;化学改性
TQ323.4+ 1 A 1001-3563(2019)07-0066-10
DOI 10.19554/j.cnki.1001-3563.2019.07.010
Research Progress on Poly (3-hydroxybutyrate-co-3-hydroxyvalerate) Modifications
ZHANG Bo-bo, HUANG Chong-xing, GUO Wei, WANG Jian, HUANG Hao-he
(Guangxi University, Nanning 530004, China)
ABSTRACT: The work aims to review the research progress of poly (3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV)
modification at home and abroad in recent years to provide a scientific theoretical basis for the further development of
PHBV application in the packaging field. Based on the advantages and disadvantages of PHBV film materials, the physi-
cal and chemical modification of PHBV were discussed. PHBV was a kind of thermoplastic resin with biodegradability
and had broad application prospects. However, PHBV had high brittleness and poor toughness, and must be modified
and both physical and chemical modification had advantages and disadvantages. Numerous studies have shown that the
properties of PHBV have improved after modification, but the performance of composites is limited due to poor compati-
bility. Therefore, it is necessary to develop and improve modification technology that does not sacrifice biodegradability
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