在空间站创造一个微绿生长环境

Pub Date : 2021-01-01 DOI:10.15407/knit2021.04.065
N. Japashov, A. Mansurova, N. Balta, Almaty Kazakhstan Biology, A. Mathematics
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引用次数: 0

摘要

无论是在陆地上还是在空间站条件下,植物都是人类必不可少的营养来源。由于现代农业技术的成就,在近地站的空间条件下种植植物性食物已经成为可能。这篇文章的目的是研究在空间站为人类营养植物的生长创造最佳条件。在工作中,选择了适合空间站条件的植物和土壤类型。为此,进行了三个阶段的实验。在第一个实验中,利用实验方法选择最适合在极端条件下生长的植物类型。通过实验测定了土壤的组成和结构。结果表明,水凝胶可用于空间站条件下的蓄积水分,是一种适合植物生长的介质。研究表明,水凝胶(没有任何营养混合物)可以促进植物生长。在研究的第二阶段,植物成功地生长在水凝胶和土壤的混合物上。在第三个实验中,作者在水凝胶中加入了生物刺激剂和有机产品,结果,植物生长的速度和稳定性都有所提高。图中展示了作者制作的在上述实验中测试过的空间条件下种植植物的容器的实验原型。
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Creating a microgreen growing environment at the space station
Plants are essential types of human nutrition, both in terrestrial and in space station conditions. The cultivation of plant foods in space conditions at the near-Earth stations has become possible due to the modern achievements in agricultural technologies. The proposed article aims to study the creation of optimal conditions for growing plants used in human nutrition in the space stations. In the work, a selection of plants and soil types for space station conditions was made. For this purpose, a three-stage experiment was carried out. In the first experiment, an experimental method was exploited to select the types of plants that are most suitable for growing under extreme conditions. The composition and structure of the soil were determined experimentally. It is shown that hydrogel can be used to accumulate water in space station conditions and can be a suitable medium for growing plants. Studies have shown that just hydrogel (without any nutrient mixtures) can promote plant growth. At the second stage of research, plants were successfully grown on the mixture of the hydrogel and the soil. In the third experiment, the authors added biostimulants and organic products to the hydrogel, and as a result, there was an increase in the speed and stability of plant growth. The experimental prototype of the container for growing plants in space conditions, which was tested in the above experiments, created by the authors, is shown.
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