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Alpha activity emitted from leaves and roots of beetroot plant planted in enhanced soil with fertilizers

机译:从甜菜根植物的叶子和根源发射的alpha活动,种植在增强的土壤中用肥料

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This study is to assesses radioactive materials transported to the beetroot plants grow in different fertilized soil. Equivalent weights of fertilizers were added to the soil prior the plantation. The alpha track densities were estimated utilizing solid state nuclear track detector (SSNTDs), CR-39. The obtained results show that alpha track densities in Beetroot plants in the lower and upper sides of plant leaves were varied from 67.62 Tr.cm?2 to 101.83 Tr.cm?2 and from 45.35 Tr.cm?2 to 94.67 Tr.cm?2 with mean values of 89.96 Tr.cm?2 and 68.48 Tr.cm?2, respectively. Alpha track densities were also measured in the samples of the enhanced plantation soil with fertilizers and in the whole parts of the Beetroot plant which were planted in these soils. These values were compared with alpha track densities obtained from fertilizer samples in the previous studies. The lower face of leaves gives higher α-particles activity than that obtained from the upper face. As well as, the alpha activity from the plants planted in soils enhanced with phosphate compost was found greater as contrast with that planted in a soil enhanced with organic fertilizer. The utilization of organic fertilizer don't cause much risks like contrasted with phosphate fertilizers. Therefore, the alpha activity depends on the nature of fertilizers added to the soil.
机译:该研究是评估输送到甜菜根植物的放射性物质生长在不同的受精土壤中。在种植园之前将相当重量的肥料加入到土壤中。利用固态核轨道检测器(SSNTDS),CR-39,估计α轨道密度。得到的结果表明,植物叶子下侧和上侧甲虫植物中的α轨道密度从67.62 TR.CM?2和45.35 TR.CM?2到94.67 TR.CM变化? 2分别为89.96克拉/毫米的平均值分别为89.96。还在增强种植园土壤样品中测量α轨道密度,用肥料和甜菜根植物的整个部分地种植在这些土壤中。将这些值与在先前研究中的肥料样品中获得的α轨道密度进行比较。叶片的下表面具有比从上表面获得的α-颗粒活性更高。除此之外,从磷酸盐堆肥增强的土壤中种植的植物的α活性与用有机肥料增强的土壤种植的鲜明对比度更大。有机肥的利用不会造成与磷酸盐肥料形成对比的风险。因此,α活性取决于添加到土壤中的肥料的性质。

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