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Long-term properties and end-of-life of polymers from renewable resources

机译:来自可再生资源的聚合物的长期特性和寿命终止

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摘要

The long-term properties and end-of-life of polymers are not antagonist issues. They actually are inherently linked by the duality between durability and degradation. The control of the service-to-disposal pathway at useful performance, along with low-impact disposal represents an added-value. Therefore, the routes of design, production, and discarding of bio-based polymers must be carefully strategized. In this sense, the combination of proper valorisation techniques, i.e. material, energetic and/ or biological at the most appropriate stage should be targeted. Thus, the consideration of the end-of-life of a material for a specific application, instead of the end-of-life of a material should be the fundamental focus. This review covers the key aspects of lab-scale techniques to infer the potential of performance and valorisation of polymers from renewable resources as a key gear for sustainability.
机译:聚合物的长期性能和寿命终止不是拮抗剂的问题。实际上,它们通过耐久性和退化之间的双重性而固有地联系在一起。以有用的性能控制服务到处置路径以及低影响的处置代表了附加值。因此,必须仔细设计生物基聚合物的设计,生产和废弃途径。从这个意义上讲,应该针对适当的增值技术,即在最适当的阶段进行材料,能量和/或生物学的组合。因此,对于特定应用而言,考虑材料的使用寿命而不是材料的使用寿命应成为基本重点。这篇综述涵盖了实验室规模技术的关键方面,以推断可再生资源中聚合物的性能和增值潜力,将其作为可持续性的关键手段。

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