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Effect of clay amendments on nitrogen leaching and forms in a sandy soil

机译:粘土修正对砂土氮浸出和形式的影响

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Nitrogen (N) leaching in sandy soil decreases fertiliser use efficiency and may depress plant production. Application of high cation exchange capacity (CEC) materials (e.g. high activity clay minerals) is hypothesized to reduce N leaching and increaseplant N uptake in sandy soils. However, the mechanism of leaching in sands with clay amendment is not understood. A column experiment was conducted to determine N leaching and N concentration in soil solution in a sandy soil (1.4 % clay) with three soilamendments (nil, clay soil and bentonite clay) and three fertiliser rates (0, 28 N 17 P 22 K kg/ha and 56 N 34 P 44 K kg/ha). Soil amendments were applied at the rate of 50 Mg/ha. The soil columns were leached with de-ionised water equivalent to 50 mm rainfall every 4 days. Concentrations of soil solution extracted by Rhizon samplers indicated that NH_4 leaching was decreased 38-43 % by bentonite addition but little of the soil solution N was in NO_3 form and bentonite had no effect on mobility of thisform of N. The application of bentonite was able to hold NH_4 in soil solution of top soil. Leaching of NF_4 was delayed to 15 day after fertiliser application in bentonite-amended sand.
机译:氮(N)在沙质土壤浸出减少肥料利用效率,并且可以抑制植物的生产。的高阳离子交换容量(CEC)材料(例如高活性粘土矿物)应用程序被假设为减少氮淋溶和increaseplant氮吸收在沙质土壤。然而,与粘土砂修正浸出的机理还不清楚。列实验以确定N个浸出和N浓度在沙质土壤具有三个soilamendments(零,粘土和膨润土)和三个施用量(0土壤溶液(1.4%的粘土),28 N 17第22页ķ公斤/公顷和56ñ34第44页ķ公斤/公顷)。土壤改良剂分别以50mg /公顷的比率施用。土壤柱用去离子水当量浸出到50mm降雨,每4天。由Rhizon取样提取的土壤溶液浓度表明NH_4浸出降低38-43%的膨润土另外但土壤向N是NO_3形式和膨润土的小对的THISFORM的膨润土N.本申请迁移率没有影响能在表层土壤的土壤溶液持有NH_4。 NF_4的浸出后的膨润土修订的砂施肥延迟到15天。

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