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Phosphorus leaching in sandy soils .I. Short-term effects of fertilizer applications and environmental conditions

机译:磷浸出在沙质土壤中。我。肥料应用和环境条件的短期影响

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摘要

The consequences of previous as well as current environmental conditions and management practices on the potential for phosphorus (P) to be lost by drainage from sandy soils in the short term (u3c 1 year) were studied in the laboratory and the field. The potential for P losses by drainage was estimated by measuring soil solution P levels and rapidly released P. Rapidly released P was measured by determining the concentration of dissolved inorganic P contained in filtered (µm) soil solutions after incubating soil at saturation for 15 min at ambient temperature. In the laboratory, sandy soils were incubated with ordinary superphosphate, coastal superphosphate (a granulated mixture of equal parts of superphospate, rock phosphate and elemental sulfur) or lime-superphosphate (a lime-reverted superphosphate with 18% kiln dust) and sequentially desorbed with deionized water. The effects of the extent of leaching, fertilizer type, application rate and the time of contact with the soil on soil solution P levels were investigated. The influence of annual pasture death and summer rainfall on rapidly released P in soils that had been pre-treated by leaching were also investigated. Phosphorus concentrations decreased logarithmically in the successive supernatants of the sequentially desorbed soils. More P was desorbed from soils incubated with superphosphate and lime-superphosphate than soil incubated with coastal superphosphate. At each level of pre-leaching, the P concentrations in the soil solution increased with increasing time. The level, to which the P concentration in the soil solution increased at each time, decreased with increased extent of pre-leaching. The addition of P fertilizers increased the concentration of P in the soil solution. The concentrations increased with increasing application rate and were much higher for superphosphate than for coastal superphosphate; however, there was little effect of contact time on soil solution P levels. Rapidly released P levels after leaching increased during a period of no further leaching. Additional moisture or plant material during this period of no further leaching increased the rate and extent to which rapidly released P increased. Monitoring of rapidly released P in the 0-2, 2-5, 5-10 and 10-20 cm layers of field plots, with and without applications of superphosphate, showed that sampling depth, water flow path, fertilizer management, rainfall pattern and background P levels would affect the estimate of short-term P losses. Rapidly released P in the 0-2 cm layer varied markedly with time and was higher (P u3c 0.05) than that in lower soil layers. Rapidly released P increased after the winter and spring rains diminished and then decreased after the rains commenced again at the end of the summer. A possible annual cycle of P in sandy soils in a mediterranean climate is postulated by considering the laboratory and field data in combination.
机译:在实验室和领域,研究了以前以及在短期( U3C 1年)中含有含沙土壤(P)缺失的磷(P)缺失的磷(P)的可能性和管理实践。用于通过排水磷流失的可能性是通过测定土壤溶液P水平估计和快速释放P.迅速释放p在测定通过测定溶解无机磷的浓度在15分钟,温育的饱和土壤后包含在过滤(微米)土壤溶液环境温度。在实验室中,将砂土与普通的过磷酸盐,沿海过磷酸盐(超倒磷酸盐,磷酸盐和元素硫的颗粒混合物)孵育或石灰 - 超磷酸盐(具有18%窑粉的石灰恢复过磷酸盐)并顺序解吸去离子水。研究了浸出,施肥,施用率和与土壤溶液P水平接触时间的影响。还调查了每年牧草死亡和夏季降雨对浸出预处理的土壤迅速释放的P.磷浓度在依次解吸的土壤的连续上清液中对数降低。从与沿海过磷酸潜在的土壤孵育的土壤吸收更多P.从孵育的土壤中解吸。在每种水平的预浸出中,土壤溶液中的P浓度随着时间的增加而增加。在每次增加土壤溶液中P浓度的水平随着预浸出的程度而降低。添加P肥料增加了土壤溶液中P的浓度。浓度的增加随着施用率的增加而增加,过磷酸盐比沿海过磷酸盐更高;然而,接触时间对土壤溶液P水平几乎没有影响。浸出后迅速释放的P水平在不进一步的浸出期间增加。在此期间额外的水分或植物材料在不进一步的浸出期间增加了迅速释放P增加的速率和程度。在0-2,2-5,5-10和10-20cm的场图中,在0-2,2-5,5-10和10-20cm层中监测,有和不使用过磷酸盐的应用,表明采样深度,水流路,施肥,降雨模式和背景技术P级别会影响短期P损耗的估计。在0-2厘米层中快速释放的P随时间明显多变,更高(P U3C 0.05)比下部土层中的更高(P U3C 0.05)。在冬季和春雨减少后,速度快速发布的P增加,然后在夏季结束时再次开始后下降。通过考虑实验室和现场数据,在地中海气候中的砂土中P的可能年周期,通过考虑实验室和现场数据。

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