Gogotov I N, Gerasin V A, Kniazev Ia V, Antipov E M, Barazov S Kh
Prikl Biokhim Mikrobiol. 2010 Nov-Dec;46(6):659-65.
Conditions for the processing and mixing of biodegradable polymers at temperatures less than their thermal destruction (130-150 degrees C) using standard equipment have been identified. The structure of the polyhydroxybutyrate/valerate (PHB/V) copolymer has been revealed and peculiarities of the crystal phase formation at different monomer ratios have been investigated. It was shown that pure PHB with molecular mass 180-270 kDa has elastic module approximately 1.2 GPa, strength approximately 25 MPa, and elongation at break approximately 10%. The most active biodestructors of PHB, PHB/V, and their composites have been selected (Aspergillus caespitosus), and the ability of basidiomycete Panus tigrinus to biodegrade polyalkanoates was demonstrated for the first time. It was shown that A. caespitosus degraded PHB/V and Biopol films along with the PHB with the destruction rate depending on the technology of the film production, on the molecular mass, and on the extend of the polymer crystallinity.
已确定使用标准设备在低于生物可降解聚合物热破坏温度(130 - 150摄氏度)下进行加工和混合的条件。揭示了聚羟基丁酸酯/戊酸酯(PHB/V)共聚物的结构,并研究了不同单体比例下晶相形成的特点。结果表明,分子量为180 - 270 kDa的纯PHB具有约1.2 GPa的弹性模量、约25 MPa的强度和约10%的断裂伸长率。已筛选出对PHB、PHB/V及其复合材料最具活性的生物分解剂(丛生曲霉),并首次证明了担子菌虎皮香菇对聚羟基链烷酸酯的生物降解能力。结果表明,丛生曲霉降解PHB/V和Biopol薄膜以及PHB,破坏速率取决于薄膜生产技术、分子量和聚合物结晶度。