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Soil phosphorus storage capacity in manure-impacted Alaquods: implications for water table management.

机译:受肥料影响的Alaquods中的土壤磷存储能力:对地下水位管理的影响。

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摘要

Phosphorus (P) applied as fertilizers and manures can accumulate in soils if not recovered by crops. Excess P accumulated can contribute to eutrophication of surface water. Spodosols (Alaquods) have spodic (Bh) horizons enriched in organically complexed Al and Fe having high P retention capacity. Environmental risk of P loss from soil horizons can be evaluated from phosphorus saturation ratio (PSR; molar ratio of P to [Al+Fe]) and the soil phosphorus storage capacity (SPSC). A threshold PSR ("change point") above which release of P from soil to solution abruptly increases can be determined for a given population of soils. SPSC is a calculation of how much P can be added to a soil before reaching this critical PSR threshold. The primary objective of this study was to compare P release characteristics of surface and spodic horizons to allow an evaluation of soil P storage capacity of the Spodosol profile. Six Spodosol beef or dairy manure-impacted sites in Florida differentially P-impacted were sampled by horizon. Change point PSR for spodic horizons was determined using oxalate (PSRox), Mehlich-1 (PSRM1) and Mehlich-3 (PSRM3) extracts. Mean SPSC of Bh horizons (95 mg kg-1) was significantly higher than that of A horizons (-360 mg kg-1) due to much lower metal content and greater P loading in the surface horizon. Status of SPSC of any horizon may be used for predicting consequences of water table management regimes with respect to P transport; for example, maintaining water table below the Bh could favor P retention by Bh-horizons with high positive SPSC.
机译:如果无法通过农作物回收,用作肥料和肥料的磷(P)会在土壤中积累。积累的过量P可能导致地表水富营养化。 spodosols(Alaquods)具有丰富的P(Ph)视野,富含具有高P保留能力的有机复合Al和Fe。土壤中磷流失的环境风险可以通过磷饱和度比(PSR; P与[Al + Fe]的摩尔比)和土壤磷存储能力(SPSC)进行评估。可以确定阈值PSR(“变化点”),对于给定的土壤种群,可以确定该阈值PSR从土壤到溶液的释放突然增加。 SPSC是在达到此临界PSR阈值之前可以向土壤中添加多少P的计算。这项研究的主要目的是比较地表和偶发层的磷释放特征,以评估Spodosol剖面中土壤P的储存能力。通过水平采样对佛罗里达州六个受Spodosol牛肉或奶牛粪肥影响的地区进行了P差异影响。使用草酸盐(PSR ox ),Mehlich-1(PSR M1 )和Mehlich-3(PSR M3 )确定偶发视界的变化点PSR )提取物。 Bh层的平均SPSC(95 mg kg -1 )明显高于A层的(-360 mg kg -1 ),这是因为金属含量低得多,在地表水平线中加载P。任何水平的SPSC的状态都可用于预测地下水管理制度对P的运输的后果;例如,将地下水位保持在Bh以下可能会有利于SPSC高的Bh地平线保留磷。

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