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Layering‐Triggered Delayering with Exfoliated High‐Aspect Ratio Layered Silicate for Enhanced Gas Barrier Mechanical Properties and Degradability of Biodegradable Polymers

机译:具有剥离的高纵横比层状硅酸盐的分层触发延迟用于增强的阻气机械性能和可生物降解聚合物的可降解性

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摘要

Research on biodegradable polymers with the intention of fast, complete degradation in industrial compost (i‐compost) for organic recyclability is paramount to identifying solutions to the problem of excessive plastic waste originating specifically from packaging. Conventional biodegradable polymers, such as polylactide (PLA), are far from optimum for this application due to the poor gas barrier properties and slow degradation. In the paper, a new concept (triggered degradation by delayering) is shown in which exfoliated, self‐assembled sodium‐hectorite (Hec) arranged in a layer‐by‐layer manner alternating with electrospun hot‐pressed PLA provides strong gas barrier properties at high humidity and simultaneously accelerates the degradation of PLA, as tested in an enzymatic solution and i‐compost. A thin composite film (thickness 56 µm) shows a tensile strength and modulus 58 and 2000 MPa, respectively, whereas oxygen permeability is as low as 0.0064 cm3 cm m−2 day−1 bar−1. Furthermore, the delayering of the composite film by swelling of Hec layer led to accelerated degradation of PLA, as shown in detail by enzymatic and compost degradation. Since such concepts for enhanced degradability are urgently needed for sustainable utilization of biodegradable polymers in plastic waste management, the present work is an important step ahead.
机译:生物降解聚合物的研究具有快速,完全降解的工业堆肥(I-COPOST)对于有机可回收性至关重要是识别源自包装的过度塑料废物问题的解决方案。常规的可生物降解的聚合物,例如聚乳糖(PLA),由于气体阻隔性能差和缓慢降解,对该施加远未最佳。本文中,示出了一种新的概念(通过延迟触发的劣化),其中以逐层方式布置的剥离的自组装钠 - 斜度(HEC)与Electrowum热压PLA交替地提供了强的阻气性质高湿度并同时加速PLA的降解,如在酶促溶液和I堆肥中测试。薄的复合膜(厚度56μm)分别显示拉伸强度和模量58和2000MPa,而氧气渗透性低至0.0064cm 3cmm-2天-1-1。此外,通过HEC层溶胀的复合膜的延迟导致PLA的降解,如酶促和堆肥劣化详细所示。由于迫切需要这种用于增强可降解性的概念,因此可以在塑料废物管理中可持续利用可持续利用,因此目前的工作是前方的重要步骤。

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