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Chitosan coating surface properties as affected by plasticizer, surfactant and polymer concentrations in relation to the surface properties of tomato and carrot

机译:壳聚糖涂层的表面性能受增塑剂,表面活性剂和聚合物浓度的影响,与番茄和胡萝卜的表面性能有关

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摘要

The objectives of this work were to determine the effects of the concentrations of glycerol and sorbitol (as hydrophilic plasticizers),Tween 80 (as surfactant) and chitosan on the wettability of Cuban chitosan-based edible coatings in view of their application on tomatoand carrot and to develop a model allowing the optimization of coating composition.The values of the polar and dispersive components of the superficial tension of the foods were determined to be 3.04 and 25.67 mN/m,respectively, for tomato, and 0.34 and 26.13 mN/m, respectively, for carrot, the sum of the two components being the superficial tensionsof tomato and carrot (28.71 and 26.48 mN/m, respectively). The skins of both foods are therefore low-energy surfaces, meaning that theZisman method for the determination of wettability could be applied.The best experimental values of wettability were obtained for the following coating composition: 1.5% (w/v) of chitosan and 0.1%(w/w) of Tween 80.The increase in the concentration of chitosan and glycerol or sorbitol as plasticizers decreased the values of wettability and adhesioncoefficients.The results of wettability were adjusted to a polynomial model that describes the dependence of the adhesion coefficient (Wa), cohesioncoefficient (Wc) and spreading coefficient (Ws) on chitosan and Tween 80 concentrations. The optima calculated by the model equationswere in excellent agreement (relative error below 3%) with the experimental values.
机译:这项工作的目的是确定甘油和山梨糖醇(作为亲水性增塑剂),吐温80(作为表面活性剂)和壳聚糖的浓度对古巴壳聚糖基可食用涂料的润湿性的影响,因为它们在番茄,胡萝卜和建立一个可以优化包衣成分的模型。确定食品表面张力的极性和分散成分的值分别对于番茄为3.04和25.67 mN / m,对于西红柿为0.34和26.13 mN / m,对于胡萝卜,这两个成分的总和为番茄和胡萝卜的表面张力(分别为28.71和26.48 mN / m)。因此,两种食品的表皮都是低能表面,这意味着可以采用Zisman方法测定润湿性。对于以下涂料组合物,获得了最佳润湿性实验值:壳聚糖1.5%(w / v)和0.1吐温80的%(w / w)。作为增塑剂的壳聚糖和甘油或山梨糖醇的浓度增加,降低了润湿性和粘附系数的值。将润湿性的结果调整为描述粘附系数依赖性的多项式模型( Wa),壳聚糖和吐温80浓度的内聚系数(Wc)和扩散系数(Ws)。通过模型方程计算出的最优值与实验值非常吻合(相对误差低于3%)。

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