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首页> 外文期刊>European Journal of Soil Science >Evaluation of the potential impact of Cu competition on the performance of o,o-FeEDDHA in soil applications
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Evaluation of the potential impact of Cu competition on the performance of o,o-FeEDDHA in soil applications

机译:评估铜竞争对o,o-FeEDDHA在土壤应用中的性能的潜在影响

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Ferric ethylene diamine-N,N-bis(hydroxy phenyl acetic acid) (FeEDDHA)-based iron (Fe) fertilizers are commonly applied to plants grown on calcareous soils and comprise a mixture of FeEDDHA components. Upon application to the soil, the pore water concentrations of the active ingredients racemic and meso o,o-FeEDDHA show a gradual decline unrelated to plant uptake or biodegradation. In the present study, the potential of soil copper (Cu) to reduce the effectiveness of FeEDDHA-based fertilizers in calcareous soils by displacing Fe from o,o-FeEDDHA has been evaluated through modelling and experiments. Predictions with mechanistic multi-surface models show that there is a thermodynamic basis for assuming that under equilibrium conditions a certain fraction of o,o-EDDHA ligands in soil solution can be chelated to Cu, in particular for meso o,o-EDDHA. The large affinity of o,o-CuEDDHA for binding to the soil solid phase, demonstrated in a batch interaction experiment, greatly increases the potential impact of Cu competition on the o,o-FeEDDHA solution concentration; for a given quantity of o,o-CuEDDHA in soil solution, a much larger quantity of o,o-CuEDDHA is adsorbed to the solid phase. Finally, evidence for the actual displacement of Fe from o,o-FeEDDHA by Cu was found in a soil incubation study. With these results, the boundary conditions are met for explaining the observed gradual decline in o,o-FeEDDHA concentration with Cu competition.
机译:乙二胺铁-N,N-双(羟基苯基乙酸)(FeEDDHA)基铁(Fe)肥料通常应用于钙质土壤上生长的植物,且包含FeEDDHA成分的混合物。施用到土壤中后,活性成分的外消旋和内消旋o,o-FeEDDHA的孔隙水浓度逐渐降低,与植物的吸收或生物降解无关。在本研究中,已通过建模和实验评估了土壤铜(Cu)通过从o,o-FeEDDHA中置换Fe来降低石灰性土壤中FeEDDHA基肥料的有效性的潜力。机理多表面模型的预测表明,有一个热力学基础可假设在平衡条件下,土壤溶液中一定比例的o,o-EDDHA配体可与铜螯合,特别是对于中观o,o-EDDHA。分批相互作用实验证明,o,o-CuEDDHA与土壤固相的亲和力大,大大增加了Cu竞争对o,o-FeEDDHA溶液浓度的潜在影响;对于给定数量的土壤溶液中的o,o-CuEDDHA,大量的o,o-CuEDDHA被吸附到固相中。最后,在土壤培养研究中,发现了铁实际取代o,o-FeEDDHA中的Fe的证据。利用这些结果,满足了边界条件以解释观察到的Cu竞争引起o,o-FeEDDHA浓度的逐渐下降。

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