Machine-hardware diagram of complex biotechnological processing of aquaculture objects

Y. Korzhavina, D. L. Alshevskiy, M. Alshevskaya, V. Ustich, F. S. Karneeva, E. P. Bedo
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Abstract

Currently, a number of fish farms operate in the Kaliningrad region, which specialize in breeding aquaculture objects, including common carp (Cyprinus carpio Linnaeus, 1758) and clariid catfish (Clarias gariepinus Linnaeus, 1758) and their further sale in live or chilled whole form. There is not complex processing, as a rule. The paper shows the need for biotechnological processing of aquaculture and ways to use the waste obtained during filleting for production of minced fish and, later, minced semi-finished products. The lack of integrated use of waste from fish processing industries is a common problem in the fishing industry, so the need to solve this problem is obvious. For the efficient processing of fish raw materials, it is necessary to create a technology that will make it possible to maximize the use of waste from fish production, including the use of biotechnological methods, but at the same time ensure high quality of finished products. The paper presents the mass composition of common carp (Cyprinus carpio Linnaeus, 1758) and clariid catfish (Clarias gariepinus Linnaeus, 1758), developed a technological diagram for the complex biotechnological processing of aquaculture objects in the conditions of small enterprises of fish processing farms, proposed a description of technological processes and a machine-hardware diagram. Integrated technology implies the presence of the main and additional production. An additional diagram is associated with the production of imitation fat, the basis for which can be ground fat-containing components pre-treated with enzymes, such as tioshka and milk, as well as fish broths obtained by cooking collagen-containing components (heads, fins, tails). This technological approach can be used in the conditions of “Belvodkhoz” enterprises engaged in the cultivation and subsequent processing of aquaculture objects, for example, Fish Farm “Volma”.
水产养殖对象复杂生物技术加工的机器设备图
目前,加里宁格勒地区有许多鱼类养殖场,专门从事鲤鱼(林奈,1758 年)和鲶鱼(林奈,1758 年)等水产养殖对象的繁殖,并以活体或冷藏整鱼形式销售。通常不会进行复杂的加工。本文说明了水产养殖生物技术加工的必要性,以及如何利用鱼片加工过程中产生的废料生产鱼糜和鱼糜半成品。水产品加工业的废弃物缺乏综合利用是渔业的一个普遍问题,因此解决这一问题的必要性显而易见。为了高效加工鱼类原料,有必要创造一种技术,既能最大限度地利用鱼类生产过程中产生的废弃物,包括使用生物技术方法,又能确保成品的高质量。本文介绍了鲤鱼(Cyprinus carpio Linnaeus, 1758)和鲶鱼(Clarias gariepinus Linnaeus, 1758)的质量组成,制定了在小型企业鱼类加工场条件下对水产养殖对象进行复杂生物技术加工的技术图表,提出了技术流程描述和机器设备图表。综合技术意味着主要生产和附加生产的存在。附加图与仿脂肪生产有关,其基础可以是用酶预处理过的含脂肪成分(如 tioshka 和牛奶),以及通过烹饪含胶原蛋白成分(鱼头、鱼鳍、鱼尾)获得的鱼汤。这种技术方法可用于 "Belvodkhoz "企业从事水产养殖和后续加工的条件,例如 "Volma "养鱼场。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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