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首页> 外文期刊>Journal of the Science of Food and Agriculture >Theoretical chemical characterization of phosphate-metal-humic complexes and relationships with their effects on both phosphorus soil fixation and phosphorus availability for plants.
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Theoretical chemical characterization of phosphate-metal-humic complexes and relationships with their effects on both phosphorus soil fixation and phosphorus availability for plants.

机译:磷酸盐-金属-腐殖酸配合物的理论化学表征及其与磷土壤固着和植物磷有效性的关系。

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摘要

BACKGROUND: Previous studies showed that phosphate can be complexed by humic acids (HA) through stable metal (M) bridges (PMHA). We studied the thermodynamic properties of PMHA and their relationships with the ability of PMHA to both decrease soil P fixation and increase P availability for plants. With this aim, we studied the theoretical stability of PFeHA, PAlHA and PCaHA by molecular modelling methods in relation to the degree and intensity of P absorption in soils and the ability of plants to take up complexed P. RESULTS: A density functional theory (DFT) quantum chemical study enabled us to obtain stable structures for the three PMHA complexes in water solution. The theoretical stabilities ( Delta G0) were consistent with that for apparent stability obtained by Scatchard method, PFeHA >= PAlHA > PCaHA, though the differences were clearer by the DFT method. Also the reduction of soil P fixation and the release of P from PMHA in the presence of an anionic resin confirmed the stability order of the different PMHA. Plant studies confirmed the ability of diverse plant species to take up both P and metal complexed in PMHA. CONCLUSION: The results indicated the potential efficiency of PMHA-based fertilizers to optimize P fertilization for crops cultivated in soils with high P fixation ability.
机译:背景:先前的研究表明,磷酸盐可以通过稳定的金属(M)桥(PMHA)与腐殖酸(HA)络合。我们研究了PMHA的热力学性质及其与PMHA减少土壤固磷和增加植物对磷的利用能力的关系。为此,我们通过分子建模方法研究了PFeHA,PAlHA和PCaHA的理论稳定性,涉及土壤中P的吸收程度和强度以及植物吸收复合P的能力。结果:密度泛函理论(DFT) )量子化学研究使我们能够获得水溶液中三种PMHA配合物的稳定结构。理论稳定性(Delta G 0 )与Scatchard方法获得的表观稳定性相一致(PFeHA> = PAlHA> PCaHA),尽管通过DFT方法可以清楚地看出差异。同样,在阴离子树脂的存在下,土壤磷的固定减少和PHA中P的释放证实了不同PMHA的稳定性。植物研究证实了多种植物能够吸收PMHA中复合的P和金属。结论:结果表明,基于PMHA的肥料对高固磷能力的土壤中作物的磷肥优化潜力。

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