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首页> 外文期刊>Polymer Degradation and Stability >Miscibility and enzymatic degradability of poly(3-hydroxybutyrate-co-3-hydroxyhexanoate)-based polyester blends by PHB depolymerase and lipase
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Miscibility and enzymatic degradability of poly(3-hydroxybutyrate-co-3-hydroxyhexanoate)-based polyester blends by PHB depolymerase and lipase

机译:PHB脱聚酶和脂肪酶聚酯共混物的聚(3-羟基丁酸酯-CO-3-羟基己酸酯的混溶性和酶促可降解性

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Poly(3-hydroxybutyrate-co-3-hydroxyhexanoate) (PHBH) containing 5 and 17 mol% 3-hydroxyhexanoate has been blended with atactic poly(3-hydroxybutyrate) (PHB), polycaprolactone (PCL), and polybuty-lene succinate (PBS) at different ratios by the solvent-casting method. PHBH-5%/atactic PHB and PHBH-17%/atactic PHB showed a single glass-transition temperature (T_g), indicating miscibility in the amorphous state. Immiscibility was observed in the PHBH-5%/PCL and PHBH-17%/PCL blends based on the non-transitioning T_g of the PHBH component, presence of two distinct T_g values for some of the blend films, and individual crystallization manner. The thermal properties and spherulitic morphologies of the PHBH-5%/PBS blend films suggested partial miscibility. The enzymatic degradability of the three types of blends by Ralstonia pickettii T1 PHB depolymerase and Burkholderia cepacia lipase was investigated. Depending on the enzyme-substrate specificity, miscibility, and phase structure of the blend, the variation of the enzymatic degradation rate with the blend ratio was different among the three types of blends. The weight loss rate of PHBH-5%/atactic PHB was higher than that of PHBH-17%/atactic PHB when degraded by PHB depolymerase. The PCL component accelerated the weight loss rate of PHBH-17%/PCL but decreased that of PHBH-5%/PCL Lipase barely eroded PHBH-5%/PBS, but the weight loss rate increased as the PCL content increased. From quantitative analysis of the water-soluble products liberated during degradation, the degradation manners of the blends by PHB depolymerase and lipase are discussed.
机译:将含有5-17mol%3-羟基己酸酯的聚(3-羟基丁酸酯-CO-3-羟基己酸酯)(PHBH)与attactic聚(3-羟基丁酸酯)(PHB),聚己内酯(PCL)和聚丁基 - 琥珀酸盐混合( PBS)通过溶剂铸造方法在不同比例。 PHBH-5%/ atactiCPHB和PHBH-17%/ Atactic PHB显示出单一的玻璃化转变温度(T_G),表明在非晶态中的混溶性。基于PHBH-5%/ PCL和PHBH-17%/ PCL共混物,基于PHBH组分的未转变T_G,对一些共混膜的两个不同T_G值和单独的结晶方式,在PHBH-5%/ PCL和PHBH-17%/ PCL混合物中不混溶。 PHBH-5%/ PBS共混膜的热性质和球晶形态表明部分混溶性。研究了Ralstonia PICKetti T1PHB分聚酶和BurkhowderiaCepacia脂肪酶的三种类型共混物的酶促降解性。根据酶 - 衬底的特异性,混合物和相结构的混合物,酶促降解速率与混合比的变化在三种类型的共混物中不同。通过PHB脱色酶降解时PHBH-5%/ atacticPHB的重量损失率高于PHBH-17%/ atacticPHB的体重减轻率。 PCL组分加速了PHBH-17%/ PCL的重量损失率,但降低了PHBH-5%/ PCL脂肪酶几乎没有侵蚀的PHBH-5%/ PBS,但随着PCL含量的增加而增加,重量损失率增加。从降解期间释放的水溶性产物的定量分析,讨论了PHB解聚酶和脂肪酶的共混物的降解方式。

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