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首页> 外文期刊>Polymer Journal >Thermal, Crystallization, and Biodegradation Behavior of Poly(3-hydroxybutyrate) Blends with Poly(butylene succinate-co-butylene adipate) and Poly(butylene succinate-co-#epsilon#-caprolactone)
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Thermal, Crystallization, and Biodegradation Behavior of Poly(3-hydroxybutyrate) Blends with Poly(butylene succinate-co-butylene adipate) and Poly(butylene succinate-co-#epsilon#-caprolactone)

机译:热、结晶和生物降解保利(3-hydroxybutyrate)混合的行为聚丁烯succinate-co-butylene己二酸)和聚丁二succinate-co - #ε#己内酯)

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摘要

Morphologies, some physical properties, and biodegradability were investigated for the binary blends of natural poly(3-hydroxybutyrate) [P(3HB)] with chemosynthetic poly(butylene succinate-co-butylene adipate) (PBSA) and poly(butylene succinate-co-#epsilon#-caprolactone) (PBSC) prepared using a simple casting procedure. The DSC thermogram of each blend system revealed two distinct glass transitions independent of blend composition. The radial growth rate of P(3HB) spherulite in the blends, observed on a polarizing microscopy, almost kept constant in the blends with P(3HB) content ranged from 50 wt% to 100 wt%. These results indicate that P(3HB) and PBSA, and P(3HB) and PBSC are immiscible in the amorphous state. The enzymatic degradation of blend film was carried out in phosphate buffer (pH 7.5) at 37 deg C in the presence of P(3HB) depolymerase purified from Alcaligenes faecalis T1. The degradation behavior of blends was monitored by observing UV spectra, measurement of weight-loss and NMR analysis. As a general, the weight-loss rates of blends increased with the increase of P(3HB) content except the blends contained 90 wt% P(3HB) in which a weight-loss was about three times faster than that of pure P(3HB) films. After the beginning of degradation, the content of P(3HB) in films decreased faster than those of blend partners. The biodegradability of aliphatic polyester is suggested to be controllable by blending.
机译:形态,一些物理性质,生物降解性进行了二进制混合的天然聚(3-hydroxybutyrate)[P (3 hb)]与化学合成的聚丁烯succinate-co-butylene (PBSA)和己二酸)聚丁二succinate-co - #ε#己内酯)(PBSC)准备使用一个简单的铸造过程。每个混合系统显示两个的DSC热谱不同的玻璃转换混合独立的组成。球粒混合,观察上偏光显微镜,几乎保持不变P (3 hb)的混合内容范围从50 wt %100 wt %。PBSA, P (3 hb)和PBSC非混相无定形的状态。电影进行了混合磷酸盐缓冲剂(pH值7.5)在37摄氏度的P (3 hb)解聚酶纯化从粪产碱杆菌属T1。通过观察紫外线光谱监测,测量减肥和NMR分析。减肥的混合率的增加增加了P (3 hb)内容除了混合包含90 wt % P (3 hb)减肥是纯粹的三倍吗3 P (hb)电影。P (3 hb)在电影的内容减少得更快比混合的伙伴。脂肪族聚酯的生物降解性建议由混合控制。

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