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Spatial Distribution of As and Cd in Co-contaminated Soils Within the Rice Root Microzone

机译:水稻根系微区内共污染土壤的空间分布及CD

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Soil samples were collected from the As and Cd co-contaminated demonstration area to analyze the spatial distributions of As and Cd in soils within the rice root microzone using the treatment of soil cubes (50 mm x 50 mm x 50 mm). The results indicated that there was no significant difference in the spatial distributions of total As or Cd in the microzone with the percentage of root weight, horizontal distances (HD), and vertical depths (VD). Interestingly, available As or Cd increased with the increasing HD, and both of them showed a significant difference (p < 0.05) between < 75 mm and >= 120 mm. The availability of As or Cd increased from the center to the edge of the rice root microzone. Moreover, the risk assessment code (RAC) showed that the site with a high potential risk of As or Cd was located on the edge of the rice root microzone. This phenomenon implied that cultivating paddy rice in the low potential risk microzone might have a low accumulative risk.
机译:从AS和Cd共污染的示范区域收集土壤样品,以分析土壤块的治疗(50mm×50mm×50mm)的稻草微氮杂内的土壤中作为和Cd的空间分布。 结果表明,微区中的总作为或Cd的空间分布没有显着差异,具有根重量,水平距离(HD)和垂直深度(VD)的百分比。 有趣的是,可用或CD随着HD的增加而增加,它们两者都显示出显着差异(P <0.05)<75 mm和> = 120mm之间。 AS或CD的可用性从中心增加到稻米微区的边缘。 此外,风险评估代码(RAC)表明,具有高潜在风险的潜在风险或CD的网站位于稻米微区的边缘。 这种现象暗示,在低潜在的风险微区中培养水稻可能具有较低的累积风险。

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