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TRACE METALS UPTAKE AND DISTRIBUTION IN CORN PLANTS GROWN ON A 6-YEAR URBAN WASTE COMPOST AMENDED SOIL

机译:六年来城市土壤中玉米秸秆改良土壤中微量金属的吸收与分布

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A 6-year field study was performed to evaluate heavy metal accumulation in the top 20 cm of a clay-loam calcareous soil (Fluventic Xerochrept) amended with urban waste compost and to determine heavy metal uptake and distribution in corn plants grown in this soil. Compared with untreated soils, amended soils showed a significant increase only in Cu, Zn, Pb and, in the last 2 years, Cr concentrations. The corn plants grown on the amended soil showed a general increase in metal uptake, which was about three times greater for Pb and two times greater for the other heavy metals than in plants grown on untreated soil. At times, the diluting effect resulting from enhanced growth rates of the plants with compost application resulted in lower concentrations in the plants grown on treated plots. Cr and Pb were less mobile in the corn plant and were accumulated only in root tissues. Only in the last 3 years of the experiment were traces of Pb found also in the stalks. The limited mobility of Pb was confirmed in a contemporary hydroponic greenhouse experiment. The values of the plant/soil transfer coefficients were within the lower range reported in the literature, indicating that in the soil studied (which contained 14% CaCO3) there was limited transfer of heavy metal ions from the soil to the corn plants. It is concluded that the long-term application of large amounts of urban waste compost to CaCO3-containing soils does not necessarily cause medium-term problems to plant, animal or human health.
机译:进行了为期6年的田间研究,以评估用城市垃圾堆肥改良的粘土壤土石灰质土壤(Fluventic Xerochrept)的前20 cm中重金属的积累,并确定重金属在该土壤中生长的玉米植物中的吸收和分布。与未经处理的土壤相比,经过改良的土壤仅显示了Cu,Zn,Pb的显着增加,并且在最近两年中,Cr的浓度显着增加。在改良土壤上生长的玉米植株对金属的吸收普遍增加,与未处理土壤上种植的植株相比,铅的吸收量增加约三倍,其他重金属吸收量增加约两倍。有时,由于施用堆肥而使植物的生长速率提高而产生的稀释作用导致在经过处理的地块上生长的植物中的浓度降低。 Cr和Pb在玉米植物中的流动性较小,仅在根部组织中积累。仅在实验的最后三年中,秸秆中也发现了铅的痕迹。在当代的水培温室实验中证实了铅的有限的迁移性。植物/土壤转移系数的值在文献报道的较低范围内,表明在所研究的土壤(含14%CaCO3)中,重金属离子从土壤向玉米植物的转移有限。结论是,将大量城市垃圾堆肥长期用于含CaCO3的土壤并不一定会对植物,动物或人类健康造成中期问题。

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