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Reactivity and effectiveness of traditional and novel ligands for multi-micronutrient fertilization in a calcareous soil

机译:石灰性土壤中传统和新型配体在多种微量元素施肥中的反应性和有效性

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摘要

This study compares the effectiveness of multi-micronutrient formulations containing iron (Fe), manganese (Mn), and zinc (Zn) with traditional (EDTA, DTPA, HEEDTA, and EDDHAm) or novel chelates (o,p-EDDHA, S,S-EDDS, and IDHA) and natural complexing agents (gluconate and lignosulfonate). The stability and reactivity of the formulations were studied on batch experiments with calcareous soil and by speciation modeling. Formulations containing traditional ligands maintained higher Mn but lower Zn concentration in soil solution than the novel ligands. The gluconate and lignosulfonate maintained low concentrations of both Mn and Zn in soil solution. Selected formulations were applied into calcareous soil and their efficacy was evaluated in a pot experiment with soybean. The formulation containing DTPA led to the highest Zn concentration in plants, as well as the formulation containing S,S-EDDS in the short-term, which correlated with its biodegradability. The application of traditional or novel ligands in formulations did not result in sufficient plant Mn concentrations, which was related to the low Mn stability observed for all formulations under moderate oxidation conditions. The results highlight the need to consider the effect of metals and ligands interactions in multi-nutrient fertilization and the potential of S,S-EDDS to be used for Zn fertilization. Furthermore, it is necessary to explore new sources of Mn fertilization for calcareous soils that have greater stability and efficiency, or instead to use foliar fertilization.
机译:这项研究比较了含铁(Fe),锰(Mn)和锌(Zn)的多微量营养素配方与传统(EDTA,DTPA,HEEDTA和EDDHAm)或新型螯合物(o,p-EDDHA,S, S-EDDS和IDHA)和天然络合剂(葡萄糖酸盐和木质素磺酸盐)。在石灰性土壤的分批实验中并通过形态模拟研究了制剂的稳定性和反应性。与新型配体相比,含有传统配体的配方在土壤溶液中保持较高的Mn含量但降低Zn浓度。葡萄糖酸盐和木质素磺酸盐在土壤溶液中保持低浓度的锰和锌。将选定的配方施用于石灰质土壤,并在使用大豆的盆栽实验中评估其功效。含有DTPA的制剂在植物中导致最高的Zn浓度,而短期内含有S,S-EDDS的制剂与其生物降解性相关。传统或新型配体在配方中的应用不能产生足够的植物锰浓度,这与在中等氧化条件下所有配方中所观察到的低锰稳定性有关。结果强调需要考虑多种养分施肥中金属和配体相互作用的影响以及S,S-EDDS用于锌施肥的潜力。此外,有必要探索具有更高稳定性和效率的钙质土壤的锰肥新来源,或者改为使用叶面肥。

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