壳聚糖对黄原胶基食用薄膜性能的影响

Mercy Oyindamola Olowolafe, V. Enujiugha, Ajibola Mitchell Oyinloye, Solomon Temidayo Olowolafe
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引用次数: 0

摘要

食品保鲜研究已发展到食用多糖产品的使用,而使用最多的多糖是黄原胶。在这项研究中,黄原胶和壳聚糖被用于复合涂层材料。使用黄原胶和壳聚糖通过浇注法制成复合薄膜。黄原胶和壳聚糖的比例各不相同:90:10、92.5:7.5、95:5、97.5:2.5 和 100:0。对薄膜的机械性能(杨氏模量、断裂伸长率、断裂应变、断裂载荷、断裂应力和断裂能)进行了分析。以断裂伸长率和杨氏模量为参考变量,进一步评估了黄原胶-壳聚糖比例为 90:10、95.5:5、97.5:2.5 的薄膜的阻隔性能(厚度、水溶性、氧气渗透性和水蒸气渗透性)和光学性能(不透明度和颜色参数)。每种复合薄膜的断裂伸长率都随着年轻模量的降低而增加。以黄原胶为基材的薄膜在厚度、水蒸气渗透性和溶解性方面都发生了变化,但氧气渗透性变化不大(p ≤ 0.05)。此外,生产出的薄膜不透明度较低,薄膜的光度值与薄膜的透明度直接相关。L* 值最高的薄膜具有最小的 ΔE 值和最高的 WI 值。研究结果表明,所开发的复合多糖薄膜可用于减少与合成包装相关的环境问题。
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EFFECT OF CHITOSAN INCLUSION ON THE PROPERTIES OF XANTHAN GUM-BASED EDIBLE FILMS
Researches in food preservation have evolved into use of edible polysaccharide products and the most utilized polysaccharide is xanthan gum. In this study, xanthan gum and chitosan were used in composite coating material. The composite films were developed by casting using xanthan gum and chitosan. The films were prepared in varying proportion of xanthan gum and chitosan thus; 90:10, 92.5:7.5, 95:5, 97.5:2.5, and 100:0. The films were analyzed for mechanical properties (Young’s modulus, elongation at break, strain at break, load at break, stress at break and energy at break). Using the elongation at break and Young’s modulus as reference variables, films with the following proportion of xanthan-chitosan; 90:10, 95.5:5, 97.5:2.5 were further evaluated for barrier properties (thickness, solubility in water, oxygen permeability and water vapour permeability) and optical properties (opacity and colour parameters). The elongation at break of each composite film increased with decreased young modulus. The xanthan gum-based films brought about changes in thickness, water vapor permeability and solubility of films but did not change significantly (p ≤ 0.05) the oxygen permeability. Furthermore, the produced films had low opacity values and the luminosity values of the films were directly linked to the transparency of the films. The films with the highest L* value had the least ΔE value and highest WI value. The findings showed that the developed composite polysaccharide films could be useful in reducing environmental problems associated with synthetic packaging.
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