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Synthesis of Grafted Polylactic Acid and Polyhydroxyalkanoate by a Green Reactive Extrusion Process

机译:绿色反应挤出法合成接枝聚乳酸和聚羟基链烷酸酯

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Grafted polylactic acid (PLA) and polyhydroxyalkanoate (PHA) were synthesized by a reactive extrusion method. The grafted bio-based polymers had either polar functional groups such as hydroxyl (-OH) and polyethylene glycol (PEG) or non-polar functional groups. It was found that grafted biopolymers had significantly reduced melt viscosity, making them more suitable for certain polymer processing such injection molding and fiber spinning. The grafted biopolymers had improved compatibility in blending with other polar polymers such as polyvinyl alcohol and exhibited improved fiber spinning processability in polymer blends. Grafted PHA had a low crystallization rate making continuous reactive extrusion impossible. It was found that a novel co-grafting method, i.e. grafting PHA in the presence of PLA, was effective to overcome the process challenge of PHA. The reactive groups introduced to PLA or PHA can be used for further side chain reactions. The free radical initiated grafting reaction was a green reaction method. It eliminated the use and recovery of organic solvents, the reaction rate was also significantly increased over solution grafting reaction, taking seconds to complete rather than hours.
机译:通过反应挤出法合成了接枝的聚乳酸(PLA)和聚羟基链烷酸酯(PHA)。接枝的生物基聚合物具有极性官能团(例如羟基(-OH)和聚乙二醇(PEG))或非极性官能团。发现接枝的生物聚合物具有显着降低的熔体粘度,使其更适合于某些聚合物加工,例如注塑和纤维纺丝。接枝的生物聚合物在与其他极性聚合物(例如聚乙烯醇)的共混物中具有改善的相容性,并且在聚合物共混物中显示出改善的纤维纺丝可加工性。接枝的PHA结晶速率低,因此不可能进行连续的反应挤出。已发现一种新颖的共接枝方法,即在PLA存在下接枝PHA可有效克服PHA的工艺挑战。引入PLA或PHA的反应性基团可用于进一步的侧链反应。自由基引发的接枝反应是绿色反应方法。它消除了有机溶剂的使用和回收,与溶液接枝反应相比,反应速率也显着提高,只需数秒即可完成,而无需花费数小时。

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