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首页> 外文期刊>Polymer Degradation and Stability >Mechanical, morphological and biodegradation studies of microwave processed nanostructured blends of some bio-based oil epoxies with poly (vinyl alcohol)
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Mechanical, morphological and biodegradation studies of microwave processed nanostructured blends of some bio-based oil epoxies with poly (vinyl alcohol)

机译:微波处理的某些生物基油性环氧树脂与聚乙烯醇的纳米结构共混物的机械,形态和生物降解研究

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摘要

Bioresource based blends exploit the synergy between polymers derived from renewable resource and commercial polymers to obtain desirable physical, mechanical, and biodegradable properties. With the aim to develop a sustainable resource based biodegradable mulch films, nanostructured blends of epoxies of linseed oil (LOE) and dehydrated castor oil (DCOE) with poly (vinyl alcohol) (PVA) were prepared in the weight ratios of 20/80, 50/50 and 80/20. Microwave-assisted blending was used for the synthesis of DCOE/LOE blends with PVA and the results were compared with conventional solution blending using FT-IR, TGA-DTA and optical measurements. The results revealed that microwave-assisted blending proved to be an efficient method for the formation of compatible blends in a short span of time as compared to conventional solution blending. Transmission electron microscopy (TEM) analysis of DCOE/PVA and LOE/PVA blends synthesized by microwave-assisted method confirmed the formation of a nanostructured blend. Scanning electron microscopy (SEM), respirometry and mechanical measurements were carried out to compare the morphology, biodegradability, and the mechanical strength of DCOE/PVA and LOE/PVA blends. It was observed that DCOE/PVA blends exhibited higher biodegradability, better mechanical properties, and lower moisture absorption characteristics as compared to LOE/ PVA blends. The mechanical strength, moisture absorption, and biodegradability of these blends were also compared with blends of other bioresource based polymers such as sugarcane bagasse (SCB), waste gelation (WG), apple peal (AP), and starch/glycerol with PVA, as available from the cited literature in the text.
机译:基于生物资源的共混物利用了可再生资源衍生的聚合物与商业聚合物之间的协同作用,以获得所需的物理,机械和可生物降解的性能。为了开发一种可持续的,基于资源的可生物降解覆盖膜,以20/80的重量比制备了亚麻籽油(LOE)和脱水蓖麻油(DCOE)的环氧树脂与聚乙烯醇(PVA)的纳米结构共混物, 50/50和80/20。微波辅助共混用于与PVA的DCOE / LOE共混物的合成,并将结果与​​使用FT-IR,TGA-DTA和光学测量的常规溶液共混进行比较。结果表明,与常规溶液混合相比,微波辅助混合被证明是在短时间内形成相容性混合物的有效方法。通过微波辅助方法合成的DCOE / PVA和LOE / PVA共混物的透射电子显微镜(TEM)分析证实了纳米结构共混物的形成。进行扫描电子显微镜(SEM),呼吸测定和机械测量以比较DCOE / PVA和LOE / PVA共混物的形态,生物降解性和机械强度。观察到,与LOE / PVA共混物相比,DCOE / PVA共混物表现出更高的生物降解性,更好的机械性能和更低的吸湿特性。还将这些混合物的机械强度,吸湿性和生物降解性与其他基于生物资源的聚合物(如甘蔗渣(SCB),废胶凝体(WG),苹果果皮(AP)和淀粉/甘油与PVA)的混合物进行了比较,如下可从文中引用的文献中获得。

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