在经济领域利用大型营养体和微藻的问题与前景(以乌兹别克斯坦共和国和世界各国为例的科学分析)

Xurshidbek O. Abdullayev, Mukhlisa Nigmatullayeva, Feruzakhon N. Abdikholikova, Davronjon H. Saminjonov, Saidkamol Xaydarov, Dilafruz Kh. Kuchkarova, Baxriddin O. Soxibov, Nortoji A. Khujamshukurov
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引用次数: 0

摘要

本文介绍了在乌兹别克斯坦条件下基于微藻和大型藻类的生产工艺的问题和前景。文章介绍了在乌兹别克斯坦进行的关于微藻在渔业中的应用、微藻在浮游动物养殖中的重要性、基于高等藻类(即大型藻类)的废水处理、在饲料和补充剂生产中使用杜鹃花和小杓藻的研究工作。在研究的基础上,对决定微藻营养价值的蛋白质和脂肪储存与微藻世代的关系进行了研究,结果发现,在 Chu-13 饲料培养基中,微藻的蛋白质和脂肪积累有很大差异。根据所获得的结果,建议使用 Botryococcus 和 Chlorococcum 属菌株为水产养殖业获得营养成分全面的饲料。此外,在这项研究工作中,微藻(Botryococcus 和 Chlorococcum)是浮游动物食物链中的重要环节之一,被用作活体饲料,建议在浮游动物的人工养殖中将其作为天然食物来源。在大型浮游植物 Lemna minor L.面粉(蛋白质 - 16.10%)、麦麸(蛋白质 - 14.2%)和 Azolla Carolina L.(蛋白质 - 27.6%)混合物的基础上开发了新的营养介质。此外,由于采用了工业化栽培小莲巨藻的技术,昂贵的饲料产品(如小麦粉、小麦麸皮、玉米粉和豆粕)的成分得到了改善,用于栽培营养丰富的昆虫和巨藻,而这些昆虫和巨藻是非传统的食物来源。此外,还建议以高藻蓝藻为基础,对受铬污染的废水进行生物处理。特别指出的是,高等藻类对铬的耐受性是不同的。在对不同类型的高等藻类对铬的耐受性进行研究时发现,在实验中,杜鹃花对其他高等藻类有一定的耐受性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Problems and Prospects of the Use of Macrophytes and Microalgae in Sectors of the Economy (Scientific Analysis on the Example of the Republic of Uzbekistan and Countries of the World)
This article provides information on the problems and prospects of production processes based on microalgae and macrophytes in the conditions of Uzbekistan. The research works conducted in Uzbekistan on the use of microalgae in fisheries, the importance of microalgae in the cultivation of zooplankton, wastewater treatment based on higher algae, that is, macrophytes, and the use of Azolla and small ryaska in the production of feed and supplements are described. Based on research, the dependence of protein and fat storage, which determines the nutritional value of microalgae, was studied on the generations of microalgae, and it was noted that the accumulation of protein and fat by microalgae differed sharply from each other in the Chu-13 feed medium. According to the obtained results, it is recommended to use Botryococcus and Chlorococcum genera strains in obtaining feed with complete nutritional content for the aquaculture industry. Also, in this research work, microalgae (Botryococcus, Chlorococcum), which are one of the essential links in the food chain of zooplanktons used as a live feed, are recommended as a natural food source in the artificial cultivation of zooplanktons. New nutrient media was developed based on mixtures of macrophytes Lemna minor L. flour (protein - 16.10%), wheat bran (protein - 14.2%), and Azolla Carolina L. (protein - 27.6%). Also, as a result of the implementation of the technology of industrial cultivation of Lemna minor macrophyte, the composition of expensive feed products such as wheat flour, wheat bran, corn flour, and soybean meal, is used for the cultivation of nutritious insects and macrophytes, which are non-traditional sources of food, was improved based on azolla and small ryaska. It is also recommended for the biological treatment of chromium-contaminated wastewater based on high-algae Azolla. In particular, it was noted that the tolerance of higher algae to chromium is different. In studies of the tolerance of different types of higher algae to chromium, it was noted that Azolla is somewhat resistant to other higher algae in the experiment.
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