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Improvement of mechanical properties and thermal stability of biodegradable rice starch-based films blended with carboxymethyl chitosan

机译:用羧甲基壳聚糖混合生物降解水稻淀粉基薄膜力学性能和热稳定性的提高

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摘要

Biodegradable blend films from rice starch (RS) and carboxymethyl chitosan (CMCh) were produced and characterized. Color, opacity, mechanical properties, thermal properties, swellability, oxygen and water permeability, and biodegradability of the RS-CMCh blend films are reported. Interaction and compatibility of films components were evaluated by using Fourier transform infrared (FTIR) spectroscopy and X-ray diffraction. Increased yellowness, total color difference and transparency, and decreased redness, lightness and whiteness index were observed in the blend films as incorporation of CMCh increased. Addition of 50% w/w of CMCh into the RS matrix increased the tensile strength of the RS-CMCh blend film by 35% and the elongation at break by 28%. Addition of CMCh improved the thermal stability of the RS-CMCh films. Incorporation of 12, 33 and 50% w/w CMCh in the blend films increased the swelling ratio by around 850%, 3985% and 3404% at 24 h, respectively, when compared with the RS film. The oxygen permeability of all the films increased as relative humidity increased. The FTIR spectra suggested that interactions may be present between the -OH groups of RS and the COO- groups of CMCh. Scanning electron microscopy images revealed that the cross-sectional fracture surfaces of all the films were smooth and homogenous. The RS film exhibited a priming effect in the biodegradation study. The addition of 50% w/w CMCh led to a decrease in mineralization of the blend films.
机译:生产和表征来自水稻淀粉(RS)和羧甲基壳聚糖(CMCH)的可生物降解的混合物薄膜。据报道了颜色,不透明度,机械性能,热性能,溶胀性,氧气和水渗透性,以及RS-CMCH共混膜的生物降解性。通过使用傅里叶变换红外(FTIR)光谱和X射线衍射来评估胶片组分的相互作用和相容性。随着CMCH的掺入增加,在共混膜中,在共混膜中观察到增加的黄色,总色差和透明度,并且降低,发红,亮度和白度指数。向RS基质中加入50%W / W的CMCH将RS-CMCH共混膜的拉伸强度提高了35%,伸长率折断28%。添加CMCH改善了RS-CMCH膜的热稳定性。与RS膜相比,共混膜中12,33和50%W / W CMCH分别在24小时内增加溶胀比率约为850%,3985%和3404%。随着相对湿度的增加,所有薄膜的氧气渗透性增加。 FTIR光谱表明,可以存在相互作用在RS的-OH基团和CMCH的COO-基团之间存在。扫描电子显微镜图像显示,所有薄膜的横截面断裂表面都是光滑均匀的。 RS薄膜在生物降解研究中表现出引发效果。添加50%w / w cmch导致共混膜的矿化下降。

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