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首页> 外文期刊>Royal Society Open Science >Process optimization of ultrasound-assisted treatment for soya bean protein isolate/polyacrylamide composite film
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Process optimization of ultrasound-assisted treatment for soya bean protein isolate/polyacrylamide composite film

机译:超声波分离大豆分离蛋白/聚丙烯酰胺复合膜的工艺优化

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In this paper, composite films composed of soya bean protein isolate (SPI) and polyacrylamide (PAM) were prepared under variations of ultrasonic power, treatment time and heating temperature. The effects of the major processing parameters related to ultrasonic-assisted treatment were evaluated and optimized through the single-factor analysis and Box–Behnken design (BBD), respectively, when the tensile strength of composite films was considered as the response value. The single-factor analysis was carried out to study the effects of ultrasonic power, treatment time and heating temperature on the viscosity and cohesion of the slurry and the tensile strength of SPI/PAM composite films, which also provided a reasonable data range of each factor for further optimization. Experiment results indicated that these three factors play a significant role in the tensile strength of films. Then BBD was applied to optimize the treatment conditions of these three factors, using the tensile strength of films as the response value. According to the interactive second-order polynomial model of three factors and the three-dimensional response surface, the maximum tensile strength of films was obtained under the optimal condition. To verify the reliability of the model, the experiment with the optimal condition was conducted, and results demonstrated that the observed tensile strength was in agreement with the predicated one. Also, the morphology and water solubility of the films showed that the film can be coated on the yarns evenly and removed clearly.
机译:本文在超声波功率,处理时间和加热温度的变化下,制备了由大豆分离蛋白(SPI)和聚丙烯酰胺(PAM)组成的复合膜。当将复合膜的拉伸强度作为响应值时,分别通过单因素分析和Box-Behnken设计(BBD)评估和优化了与超声辅助处理相关的主要加工参数的效果。进行了单因素分析,研究了超声功率,处理时间和加热温度对浆料粘度和内聚力以及SPI / PAM复合膜拉伸强度的影响,也为每种因素提供了合理的数据范围进行进一步优化。实验结果表明,这三个因素在薄膜的拉伸强度中起着重要作用。然后以膜的拉伸强度为响应值,应用BBD优化这三个因素的处理条件。根据三个因素的交互式二阶多项式模型和三维响应面,在最佳条件下获得了薄膜的最大拉伸强度。为了验证该模型的可靠性,在最佳条件下进行了实验,结果表明所观察到的拉伸强度与预期的一致。而且,膜的形态和水溶性表明,该膜可以均匀地涂覆在纱线上并且可以清楚地除去。

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