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Biodegradable Poly(vinyl alcohol) Foams Supported by Cellulose Nanofibrils: Processing, Structure, and Properties

机译:纤维素纳米原纤维支撑的可生物降解聚乙烯醇泡沫:加工、结构和性能

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摘要

In order to capture savings in energy and ambitious environmental targets, biodegradable composite foams of poly(vinyl alcohol) (PVA) supported by cellulose nanofibrils (CNF) were prepared through unidirectional freeze-drying technology. Effects of the content of CNF, the solid content of the precursor suspension, and the quenching temperature on the microstructure and properties of the composite foams were investigated by scanning electron microscopy (SEM), compressive testing, X-ray diffraction (XRD) analysis, water uptake, and biodegradation tests. Results show that the incorporation of CNF preferably at a weight ratio of 30 wt greatly enhanced the mechanical strength and modulus, energy absorption, water resistance, and dimensional stability of the composite foams because of the rigid and semicrystalline nature of CNF as well as regular and compact pore structures. Furthermore, the biodegradation tests performed in a simulated aerobic compost environment suggested that the involvement of CNF significantly accelerated the pace of biodegradation of the composite foams. Hence, we provided some meaningful information on the biomimetic cellular composite foams with controllable morphs and properties by varying the freeze-drying process and composition.
机译:为了实现节能和雄心勃勃的环境目标,通过单向冷冻干燥技术制备了由纤维素纳米原纤维(CNF)支撑的聚乙烯醇(PVA)的可生物降解复合泡沫。通过扫描电子显微镜(SEM)、压缩试验、X射线衍射(XRD)分析、吸水率和生物降解试验等手段研究了CNF含量、前驱体悬浮液固含量和淬火温度对复合泡沫组织和性能的影响。结果表明,由于CNF的刚性和半结晶性以及规则和致密的孔隙结构,优选以30 wt %的重量比掺入CNF可大大提高复合泡沫的机械强度和模量、吸能性、耐水性和尺寸稳定性。此外,在模拟好氧堆肥环境中进行的生物降解测试表明,CNF的参与显着加快了复合泡沫的生物降解速度。因此,我们通过改变冷冻干燥过程和成分,为具有可控变形和性能的仿生多孔复合泡沫提供了一些有意义的信息。

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