Graduate Program in Food Science and Technology, Federal University of Pará, Belém, Pará, Brazil.
Centre of Biological Engineering, University of Minho, Campus de Gualtar, Braga, Portugal.
Sci Rep. 2021 Oct 19;11(1):20655. doi: 10.1038/s41598-021-99085-3.
Fish skin is a raw material used for gelatin production. It can satisfy consumers with specific socio-cultural and religious needs. Different technologies have been studied for drying gelatin. Therefore, it is relevant to understand the influence of drying conditions on the final product. This study aims to optimize drying methods such as convection hot air alone and combined with infrared radiation to obtain gelatin from acoupa weakfish skin by using composite central rotational designs 2 and 2 and response surface methodology. The gelatin obtained from the optimized conditions were characterized based on their physical, chemical, technological, and functional properties. The desirability function results show the convection hot air as the most effective method when conducted at 59.14 °C for 12.35 h. Infrared radiation at 70 °C for 2.0 h and convective drying at 70 °C for 3.5 h were the best condition of the combined process. The gelatins obtained had gel strength of 298.00 and 507.33 g and emulsion activity index of 82.46 and 62.77 m/g in the combined and convective methods, respectively, and protein content above 90%. These results indicate that the processes studied can be used to produce gelatin with suitable technological and functional properties for several applications.
鱼皮是一种用于生产明胶的原料。它可以满足具有特定社会文化和宗教需求的消费者。已经研究了不同的干燥技术来干燥明胶。因此,了解干燥条件对最终产品的影响是相关的。本研究旨在通过使用复合中心旋转设计 2 和 2 以及响应面法,优化对流热空气单独和与红外辐射结合的干燥方法,从弱鱼皮中获得明胶。根据物理、化学、技术和功能特性对从优化条件下获得的明胶进行了表征。理想函数结果表明,在 59.14°C 下干燥 12.35 小时的对流热空气是最有效的方法。在 70°C 下进行红外辐射 2.0 小时和在 70°C 下进行对流干燥 3.5 小时是组合工艺的最佳条件。在组合和对流方法中,所获得的明胶的凝胶强度分别为 298.00 和 507.33 g,乳化活性指数分别为 82.46 和 62.77 m/g,蛋白质含量均高于 90%。这些结果表明,所研究的工艺可用于生产具有适合多种应用的技术和功能特性的明胶。