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首页> 外文期刊>Journal of Applied Polymer Science >Radiation-assisted morphology modification of LDPE/TPS blends: A study on starch degradation-processing-morphology correlation
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Radiation-assisted morphology modification of LDPE/TPS blends: A study on starch degradation-processing-morphology correlation

机译:LDPE / TPS共混物的辐射辅助形态修饰:淀粉降解-加工-形态相关性研究

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Potato starch was radiolytically degraded to different extents by irradiating with Co-60 gamma radiation in wide dose range. The degraded starch was plasticized using glycerol and water to obtain radiation processed thermoplastic starch (RTPS). Blends of different RTPS and low density polyethylene (LDPE) were prepared by internal melt mixing. Characterization of blends using differential scanning calorimetry, thermogravimetric analysis, X-ray diffraction, Fourier transformed infrared spectroscopy, scanning electron microscope, melt flow, contact angle, and soil burial studies indicated changes in the blend morphology and biodegradation behavior with the increase in the dose imparted to the starch fraction. Molecular weight of starch decreased substantially in the dose range of the study. The melt viscosity of LDPE/RTPS blend decreased whereas crystallinity of LDPE phase increased with the incorporation of RTPS. No significant change in the carbonyl index and thermal stability of the blends was observed in the dose range studied; therefore, the observed changes in the physical and thermal properties of the blends were attributed primarily to the kinetic factors affecting crystallization and time-dependent phase separation process. Biodegradability of blends varied with the radiation dose imparted to starch component of blend, suggesting better encapsulation of RTPS by LDPE chains.
机译:通过用宽剂量范围的Co-60γ射线辐照,马铃薯淀粉被不同程度地辐射分解。使用甘油和水将降解的淀粉增塑,以获得辐射处理的热塑性淀粉(RTPS)。通过内部熔融混合制备不同的RTPS和低密度聚乙烯(LDPE)的共混物。使用差示扫描量热法,热重分析,X射线衍射,傅立叶变换红外光谱,扫描电子显微镜,熔体流动,接触角和土壤掩埋研究表征混合物,表明随着剂量的增加,混合物的形态和生物降解行为会发生变化。赋予淀粉级分。在研究的剂量范围内,淀粉的分子量显着降低。 LDPE / RTPS共混物的熔体粘度随RTPS的加入而降低,而LDPE相的结晶度则提高。在所研究的剂量范围内,未观察到共混物的羰基指数和热稳定性发生显着变化。因此,所观察到的共混物物理和热性能的变化主要归因于影响结晶的动力学因素和与时间有关的相分离过程。共混物的生物降解性随赋予共混物淀粉成分的辐射剂量而变化,这表明LDPE链可更好地包裹RTPS。

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