首页> 美国政府科技报告 >Isotopic-Tracer-Aided Studies on Undesirable Effects of Heavy Metals in the Soil-Plant System. Part of a Coordinated Programme on Isotopic-Tracer-Aided Studies of Agrochemical Residue - Soil Biota Interactions. Final Report for th
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Isotopic-Tracer-Aided Studies on Undesirable Effects of Heavy Metals in the Soil-Plant System. Part of a Coordinated Programme on Isotopic-Tracer-Aided Studies of Agrochemical Residue - Soil Biota Interactions. Final Report for th

机译:同位素示踪剂辅助研究土壤 - 植物系统中重金属的不良影响。农业化学残留 - 土壤生物群相互作用的同位素示踪剂辅助研究协调计划的一部分。最终报告

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Uptake of isotopically labelled mercury (Hg-203), cadmium (Cd-115m) and zinc (Zn-65) from a calcareous chernozem and a podzolized brown earth by spring and winter varieties of wheat, rye and barley was investigated in pot experiments carried out until maturity of the plants. The labelled heavy metals, applied at concentrations innocuous to plant growth (0.5 ppm Hg or Cd, 50 ppm Zn) were determined radiometrically in the straw and in the grains of the harvested plants, as well as in the milling products (bran, semolina and flour) obtained by standard procedures of grain processing. Uptake of mercury was several hundred times smaller than the uptake of cadmium, if both metals were applied to the soil in equal amounts. Whereas the uptake of mercury from the acid soil was insignificant or not detectable, cadmium was taken up from this soil at a much higher rate than from the alkaline soil. Thus, not mercury, but cadmium imposes the greatest hazard on the food chain. Winter varieties of cereals took up more mercury and cadmium than did spring varieties. The content of heavy metals in the plants decreased considerably when plants approached maturity. During translocation through the plants the metals were gradually retained when passing from the stalks (''straw'') into the grains, and from the seed-cover (''bran'') into the endosperm (''flour''). The heavy metal contents of the grain. (Atomindex citation 14:727808)

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