Assessment of function-technological and rheological parameters of consistency stabilisers for dairy protein-fat systems for the production of semi-smoked sausages

Vitaliy Rudiuk, V. Pasichnyi
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Abstract

During the past few years, the world community has faced a number of problems related to the delivery and storage of milk and milk products. In particular, the situation provoked by quarantine restrictions in various countries of the world forces to look for solutions regarding the use of non-traditional raw materials for the production of classic or similar food products. As a result, it is quite promising to use dairy products with extended shelf life, in particular, dry milk concentrates as the main protein carriers for the production of stable protein-fat systems. The use of dry milk proteins makes it possible to manufacture restored structural products that can be used as an alternative to classic ones. Therefore, the object of research is food components of various origins, in particular food modified starches, food fibers and their modifications, hydrocolloids. Characteristic indicators of viscosity with increasing shear stress were determined for 5 % solutions of modified starches of various types after brewing at a temperature of 80 °C. It was found that when the shear stress increases to a value of 200 Pa, there is a significant decrease in viscosity, which generally characterizes them as structural systems. The functional and technological indicators of wheat (VF-200), bamboo (BAF-200) food fibers (fiber length 200 microns) and carboxyl methyl cellulose (CMC) were studied. Increased functional and technological capabilities of CMC compared to dietary fibers were revealed. The kinetics of swelling of dietary fibers and CMC were studied, while the period of maximum intensification of the process, which is between 5 and 15 minutes, was determined. The maximum value of the swelling coefficient is characteristic for CMC 4.4±0.04, for wheat fiber 4.01±0.06, for bamboo fiber 3.81±0.05. Using the method of mathematical and statistical processing of experimental data, optimization of concentration and technological modes was carried out to achieve maximum hydration and strength of iota-carrageenan gel. It was determined that at a concentration of 1 % during brewing at 80 °C and a time of 5 min. high enough gel strength can be achieved for optimum consistency in the overall system. The result of the work is a comprehensive study of the functional technological characteristics of food additives that will form the consistency of a structural protein-fat product of the cheese type, which can be used in sausage products as a filler, with the aim of improving the organoleptic, structural-mechanical and nutritional values of the finished products.
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半烟熏香肠生产中乳蛋白-脂肪体系稠度稳定剂的功能-工艺和流变参数评价
在过去几年中,国际社会面临着与牛奶和奶制品的运送和储存有关的一些问题。特别是,世界各国的检疫限制所造成的情况迫使人们寻找解决办法,解决使用非传统原料生产传统或类似食品的问题。因此,使用具有较长保质期的乳制品,特别是干浓缩牛奶作为生产稳定的蛋白质-脂肪系统的主要蛋白质载体是很有前景的。干牛奶蛋白的使用使得制造修复的结构产品成为可能,这些产品可以作为经典产品的替代品。因此,研究的对象是各种来源的食品成分,特别是食品变性淀粉,食品纤维及其改性,水胶体。在80°C的温度下,测定了不同类型的变性淀粉5%溶液在酿造后随剪切应力增加的粘度特征指标。研究发现,当剪切应力增加到200 Pa时,黏度显著降低,通常将其表征为结构体系。对小麦(VF-200)、竹(BAF-200)食品纤维(纤维长度200微米)和羧甲基纤维素(CMC)的功能指标和工艺指标进行了研究。与膳食纤维相比,CMC的功能和工艺能力有所提高。研究了膳食纤维和CMC的溶胀动力学,确定了该过程的最大强化时间为5 ~ 15分钟。CMC膨胀系数最大值为4.4±0.04,小麦纤维为4.01±0.06,竹纤维为3.81±0.05。采用数理统计的方法对实验数据进行处理,对浓度和工艺模式进行优化,以获得最大水化程度和最大强度的角叉胶凝胶。经测定,在80°C的酿造过程中,浓度为1%,时间为5分钟,可以在整个体系中获得足够高的凝胶强度,以达到最佳的一致性。本工作的结果是对食品添加剂的功能技术特性进行了全面的研究,这些添加剂将形成奶酪型结构蛋白-脂肪产品的一致性,可用于香肠产品中作为填料,目的是提高成品的感官,结构机械和营养价值。
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89
审稿时长
8 weeks
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