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Behavior of cerium dioxide nanoparticles in chernozem soils at different exposure scenarios

机译:不同曝光情景下Chernozem土壤中二氧化铈纳米粒子的行为

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Nowadays, widespread application of engineered nanoparticles (ENPs) inevitably leads to their release into the environment. Soils are regarded as the ultimate sink for ENPs. The study on mobility of ENPs in soils is important in the assessment of potential risks related to their toxicity. The behavior of ENPs is dependent not only on parameters of soil but also on exposure scenarios, namely, the amount of ENPs trapped in soil. In the present work, the mobility of cerium dioxide nanoparticles (nCeO(2)) in soils at different exposure scenarios has been studied. The relationship between mobility of nCeO(2) and their concentration in soil in the range from 1 to 1000 g g(-1) is evaluated. It is shown that the mobility of nCeO(2) decreases with decreasing their concentration in soil and attains the minimum value at the concentration of nCeO(2) below 10 g g(-1). In relative terms, only about 0.1-0.2% of nCeO(2) at their concentration in soil 10-1000 g g(-1) are mobile and can migrate in soil profile under saturated conditions. The major portion of nCeO(2) (about 99.8%) remains immobile in soil. Evidently, the vertical transport of nCeO(2) in soil profile should depend on volume of released suspensions. In the case of small or moderate wet deposition, nanoparticles will accumulate in upper soil horizons, where biological activity is highest, and affect the soil inhabitants (plant roots, earthworms, insects, microorganisms, etc.).
机译:如今,广泛应用工程化纳米颗粒(ENP)不可避免地导致其释放到环境中。土壤被视为enps的终极汇。对土壤中恩林的流动性研究对于评估与其毒性有关的潜在风险是重要的。恩斯珀斯的行为不仅依赖于土壤的参数,也依赖于曝光场景,即陷入土壤中的enps的量。在本作工作中,研究了不同曝光情景下土壤中二氧化铈纳米颗粒(NCEO(2))的迁移率。评估NCEO(2)的迁移率之间的关系及其在1至1000g(-1)的土壤中的浓度。结果表明,NCEO(2)的迁移率降低了降低其在土壤中的浓度下降,并达到低于10gg(-1)的NCEO(2)浓度的最小值。在相对术语中,在10-1000g(-1)中仅在土壤中浓度的约0.1-0.2%的Nceo(2)是移动的,并且可以在饱和条件下迁移在土壤曲线中。 NCEO(2)的主要部分(约99.8%)仍然在土壤中不动。显然,NCEO(2)在土壤轮廓中的垂直传输应取决于释放悬浮液的体积。在小或中等湿沉积的情况下,纳米颗粒将积聚在上层水土中,生物活性最高,并影响土壤居民(植物根,蚯蚓,昆虫,微生物等)。

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