Analysis of the 90SR content in grassland vegetation when placed in leached chernozem

V. A. Pogorelova, B. Tsipinova, A. Melchenko
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Abstract

Nuclear power continues to develop rapidly in the 21st century. Due to the growth of the population on the planet and the growth of its well-being, more energy is required, which nuclear energy can also provide. Currently, work to improve the reactors used at nuclear power plants is going on. However, unfortunately, there are no guarantees for their trouble-free operation. Therefore, in case of possible accidents and radioactive contamination of the soil, the question arises of its further use in agricultural production. The return of radioactively contaminated fertile lands to agricultural production is the most important task at the present stage of human life. The purpose of the research is to study the content of specific activity in grassland vegetation, depending on its type, when the nuclide is located in the soil at a depth of 50 cm. The migration and accumulation of 90SR in grassland vegetation located in the orchard in the soil at a depth of 50 cm has been studied. The study of the accumulation of radionuclides in agricultural plants and soil after its radioactive contamination is one of the most urgent problems of our time. A field experiment has been carried out in a fruit seed orchard. Grassland vegetation is the most valuable bioresource, that is, it is a potential food for domestic and wild animals, so it is important to make a forecast of its possible use. Accumulation of the radionuclide in grassland vegetation along the trophic chain can lead to its accumulation in the human body. The largest accumulation of 90SR in annual herbaceous vegetation, as a possible fodder bioresource, when the radionuclide is located in the soil at a depth of 50 cm, is distinguished by field bindweed. In 2019, the difference in the accumulation of the nuclide between field bindweed and couch grass was 2.5 times. A decreasing series is compiled for the accumulation of the radionuclide, when it is located in the soil at a depth of 50 cm: field bindweed (Convolvulus arvensis L.) > field dandelion (Taraxacum officinale) = field sow thistle (Sonchus arvensis L.) > creeping couch grass (Agropyrum repens L.) > common yarrow (Achillea millefolium L.).
淋溶黑钙土中草地植被90SR含量分析
核能在21世纪继续快速发展。由于地球上人口的增长及其福祉的增长,需要更多的能源,核能也可以提供。目前,改进核电站反应堆的工作正在进行中。然而,不幸的是,不能保证它们的无故障运行。因此,在可能发生事故和土壤受到放射性污染的情况下,就产生了在农业生产中进一步使用它的问题。使受放射性污染的肥沃土地恢复农业生产是人类生活现阶段最重要的任务。本研究的目的是研究核素位于土壤50 cm深度时,不同类型草地植被的比活度含量。研究了果园草地植被中90SR在50 cm深度土壤中的迁移和积累。研究放射性核素在农业植物和土壤受到放射性污染后的积累是当今最紧迫的问题之一。在一个果子园进行了田间试验。草地植被是最有价值的生物资源,是家畜和野生动物的潜在食物来源,因此对其利用前景进行预测具有重要意义。放射性核素在草地植被中沿营养链的积累可导致其在人体内的积累。90SR在一年生草本植被中积累量最大,作为一种可能的饲料生物资源,当放射性核素位于50 cm深的土壤中时,以田间杂草为特征。2019年,田间旋花和躺椅草的核素积累量差异为2.5倍。对放射性核素在土壤50 cm深度时的累积量进行了递减排列:田间旋花(Convolvulus arvensis L.) >田间蒲公英(Taraxacum officinale) =田间野蓟(Sonchus arvensis L.) >匍匐草(Agropyrum repens L.) >普通蓍草(Achillea millefolium L.)。
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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