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Engineering renewable cellulosic thermoplastics

机译:工程可再生纤维素热塑性塑料

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Biopolymers are engineered physically, chemically, genetically or biochemically (i.e. via biotechnological fermentation process) with the purpose to meet specific industry requirements of a wide range of applications. Various technological strategies are reported to create biodegradable plastics with unique physicochemical properties and a predetermined service life. The combination of polymeric material in composites is considered to optimize their mechanical behavior and reliability. Extrusion, a thermomechanical process, is the most widely used technology for producing thermoplastic starch. However, the ease of cellulose accessibility for thermal processing is of increasing economic importance but is complicated by the presence of very strong intermolecular hydrogen bonds in cellulose. Chemical modification is still the common way to get cellulosic thermoplastic products from renewable resources. Therefore, STEP ITN research activities focus on understanding the fundamental chemistry governing polysaccharide transformation and shaping, to utilize this knowledge to introduce thermo-plasticity and new functionalities in polymers such as unmodified cellulose.
机译:生物聚合物是通过物理,化学,遗传或生物化学方法(即通过生物技术发酵工艺)进行工程设计的,目的是满足广泛应用的特定行业要求。据报道,存在各种技术策略来制造具有独特物理化学性质和预定使用寿命的可生物降解塑料。复合材料中聚合材料的组合被认为可以优化其机械性能和可靠性。挤出是一种热机械方法,是生产热塑性淀粉最广泛使用的技术。然而,用于热处理的纤维素易于接近性在经济上日益重要,但是由于纤维素中存在非常强的分子间氢键而变得复杂。化学改性仍然是从可再生资源中获取纤维素热塑性产品的常用方法。因此,STEP ITN的研究活动集中于理解控制多糖转化和成型的基本化学,以利用该知识在未改性纤维素等聚合物中引入热塑性和新功能。

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