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首页> 外文期刊>Journal of Applied Polymer Science >Oxygen barrier materials from renewable sources: Material properties of softwood hemicellulose-based films
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Oxygen barrier materials from renewable sources: Material properties of softwood hemicellulose-based films

机译:来自可再生资源的阻氧材料:软木半纤维素基薄膜的材料性能

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The aim of this study was to investigate the film-fori-ning ability of the hemicellulose O-acetyl-galactoglucomannan (AcGGM) and to evaluate its potential as a barrier material. The polymer film was evaluated by measurement of its oxygen permeability (Ox-Tran (R) Mocon), thermal properties (differential scanning calorimetry), and dynamic mechanical properties under a humidity scan (humidity-scan DMA). The AcGGM was isolated from industrial process water obtained from mechanical wood Pulping. The self-supporting films were formed by solution-casting from water. As expected, a plasticizer was needed to avoid brittleness, and glycerol, sorbitol, and xylitol were compared. However, these additives resulted in higher sensitivity to moisture, which might be less beneficial for some applications. Interesting oxygen barrier and mechanical strength properties were achieved in a film obtained from a physical blend of AcGGM and either alginate or carboxymethycellulose, both having a substantially higher molecular weight than AcGGM. No phase separation was observed, since all the components used were rich in hydroxyl functionalities. When a plasticizer was also added to the binary mixture, a compromise between (1) low O-2 permeability, (2) high mechanical toughness, and (3) flexibility of an AcGGM-based film was obtained. (c) 2006 Wiley Periodicals, Inc.
机译:这项研究的目的是研究半纤维素O-乙酰基-半乳糖基葡甘露聚糖(AcGGM)的成膜能力,并评估其作为阻隔材料的潜力。通过在湿度扫描(湿度扫描DMA)下测量其氧渗透性(Ox-Tran(R)Mocon),热性能(差示扫描量热法)和动态机械性能来评估聚合物膜。从机械木浆制浆获得的工业过程用水中分离出AcGGM。通过从水中溶液流延形成自支撑膜。如预期的那样,需要增塑剂以避免变脆,并比较了甘油,山梨糖醇和木糖醇。但是,这些添加剂对水分的敏感性更高,这对某些应用可能不利。在由AcGGM和藻酸盐或羧甲基纤维素的物理共混物获得的膜中获得了令人感兴趣的氧气阻隔性和机械强度性能,两者均具有比AcGGM高得多的分子量。没有观察到相分离,因为所有使用的组分都具有丰富的羟基官能度。当还向二元混合物中添加增塑剂时,在(1)低O-2渗透性,(2)高机械韧性和(3)AcGGM基薄膜的柔韧性之间取得了折衷。 (c)2006年Wiley Periodicals,Inc.

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