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Effects of phosphorus-based application of animal manure compost on the yield of silage corn and on soil phosphorus accumulation in an upland Andosol in Japan

机译:基于磷的动物粪肥堆肥对青贮玉米产量和日本山地Andosol土壤中磷积累的影响

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Animal manure contains significant amounts of nitrogen (N) and phosphorus (P) that can be utilized as fertilizer. However, manure application rates are generally set to meet crop N demand, which results in excess P application which increases the risk of P loss into bodies of water. We examined the application method of manure compost based on crop P demand on the dry matter yield of silage corn (Zea mays L. var. indentata), on nutrient uptake and on soil P accumulation in an upland Andosol with a high P-fixing capacity. Cattle and poultry manure composts (CMC and PMC) with different P solubility were applied to meet the crop's N requirements (N-based application) or P requirements (P-based application) in 3 consecutive years. Supplemental N was applied using polyolefin-coated urea in the P-based treatments. The dry matter yields and nutrient uptakes of silage corn in the P-based CMC and PMC application systems were similar to those in the corresponding N-based systems. The average relative efficiency of N in CMC (33%) was close to the predicted value (30%) during the study. On the other hand, the relative efficiency of N in PMC (42%) was higher than the predicted value (28%). The average relative efficiency of P from CMC and PMC was 109% and 50%, respectively. These were higher than the predicted values based on the available P proportion (the sum of water- and sodium bicarbonate-soluble P) for CMC (78%) and PMC (34%), indicating that the available P fraction in the manure composts was more effective than that in P fertilizer for corn growth or that the other P fractions were also effective for corn. P-based manure compost application lowered the soil P accumulation to between 41 and 43% of the value in the N-based accumulation (versus a value of between 31 and 40% of that value for soil Truog-P). Compared to N-based manure compost application, P-based manure compost application with supplemental N fertilizer produced similar dry matter yields of corn and suppressed soil P accumulation in the upland Andosol field.
机译:动物粪便含有大量可用作肥料的氮(N)和磷(P)。但是,通常将肥料施用量设定为满足作物的氮需求,这会导致过量的磷施用,从而增加磷损失到水体中的风险。我们根据作物磷需求量,青贮玉米(Zea mays L. var。indentata)的干物质产量,养分吸收和固氮能力高的陆地棉中土壤磷的积累情况,研究了肥料堆肥的施用方法。 。连续3年施用具有不同P溶解度的牛和家禽粪便堆肥(CMC和PMC)以满足作物的N需求(基于氮的施用)或P需求(基于P的施用)。在基于P的处理中,使用聚烯烃涂层的尿素补充N。在基于P的CMC和PMC应用系统中,青贮玉米的干物质产量和养分吸收与相应的基于N的系统相似。在研究过程中,CMC中氮的平均相对效率(33%)接近于预测值(30%)。另一方面,PMC中N的相对效率(42%)高于预测值(28%)。来自CMC和PMC的P的平均相对效率分别为109%和50%。这些高于基于CMC(78%)和PMC(34%)的可用P比例(水溶性碳酸氢钠和碳酸氢钠可溶性P的总和)的预测值,表明粪肥堆肥中的可用P分数为比磷肥对玉米生长更有效,或者其他磷组分对玉米也有效。基于P的肥料堆肥的施用使土壤P的累积量降低至基于N的累积量的41%至43%(而对于Truog-P,则仅为该值的31%至40%)。与基于氮的肥料堆肥相比,基于磷的肥料堆肥与补充氮肥的施用产生了相似的玉米干物质产量,并抑制了山地Andosol田地中的土壤P积累。

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