首页> 外文期刊>Soil Research >Metal bioavailability dynamics during a two-year trial using ryegrass (Lolium perenne L.) grown in soils treated with biosolids and metal salts.
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Metal bioavailability dynamics during a two-year trial using ryegrass (Lolium perenne L.) grown in soils treated with biosolids and metal salts.

机译:在使用经过生物固体和金属盐处理的土壤中生长的黑麦草(黑麦草)的两年试验中,金属生物利用度动态。

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A 24-month field lysimeter experiment using ryegrass (Lolium perenne L.) grown in three soil types was used to investigate metal bioavailability dynamics following amendment with biosolids and metal salts (Cd, Cu, Ni, Zn). Common surrogates of soil metal bioavailability (total soil metal, EDTA, Ca(NO3)2, total dissolved, diffusive gradient in thin film, and modelled free ion activity) were determined on soil samples taken every 6 months. Ryegrass was also harvested every 6 months and analysed for metal concentrations. Across soils and treatments dissolved organic carbon (DOC) and pH decreased, whereas dissolved Ca and Mg increased with time. The free ion activity concentrations of each metal also increased over 24 months, whereas Ca(NO3)2-extracted metals were unchanged. Zinc presented the most changes in bioavailability status, with total Zn concentration decreasing over time, and EDTA-extractable and soil solution Zn increasing significantly by 1.82 mg kg-1 (1.1%) and 1.52 mg L-1 (29%), respectively. Shoot concentration of Zn increased by 1.32 mg kg-1 (2.7%), whereas shoot Ni concentration decreased by 0.65 mg kg-1 (4%). The findings of this study clearly demonstrated that over 24 months, soil metal bioavailability and shoot metal concentrations register only minor changes and appear to be unaffected by soil DOC and pH fluctuations.
机译:使用在三种土壤类型中生长的黑麦草(黑麦草 L.)进行的为期24个月的溶渗仪实验,用于研究在用生物固体和金属盐(Cd,Cu,Ni,Zn)修饰后的金属生物利用度动态。 。土壤金属生物利用度的常见替代指标(土壤金属总量,EDTA,Ca(NO 3 2 ,薄膜中的总溶解度,扩散梯度和模拟的自由离子活性)为每6个月对土壤样品进行一次测定。还每6个月收获黑麦草,并分析金属浓度。在土壤和处理中,溶解性有机碳(DOC)和pH值均降低,而溶解的Ca和Mg则随时间增加。每种金属的自由离子活性浓度也在24个月内增加,而Ca(NO 3 2 提取的金属没有变化。锌表现出最大的生物利用度变化,总锌浓度随时间降低,EDTA萃取物和土壤溶液中锌显着增加1.82 mg kg -1 (1.1%)和1.52 mg L -1 (29%)。锌的芽浓度增加了1.32 mg kg -1 (2.7%),而镍的茎浓度降低了0.65 mg kg -1 (4%)。这项研究的结果清楚地表明,在过去的24个月中,土壤金属的生物利用度和枝条金属的浓度仅发生很小的变化,并且似乎不受土壤DOC和pH波动的影响。

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