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Integrating maize and triticale in grass/clover based dairy systems: examining yields and autumn soil nitrate levels

机译:在基于草/三叶草乳制品系统中整合玉米和小教物:检查产量和秋季土壤硝酸盐水平

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To establish N-efficient crop rotations with perennial ryegrass/white clover, maize and triticale, a 9-year field experiment was executed on an organic experimental farm in the Netherlands. Crop rotations with different levels of slurry (dairy effluent from the free-stall barn, average dry matter content of 7%) application were tested for dry matter (DM) yield, N yield, soil mineral N in autumn, soil organic matter and soil organic N. Maize cropping and slurry application both increased annual DM yield. However, the second year of grass/ clover following maize, maize itself and slurry applications each resulted in higher soil mineral N in autumn, increasing the risk of nitrate leaching losses. A rotation of 4 years of grass/clover, 2 years of maizeand 1 year of triticale resulted in relatively high average annual DM production (12 t DM/ha/year) for Dutch conditions, with a higher potential N leaching loss in 2 out of 7 years.
机译:为了建立与多年生黑麦草/白三叶草,玉米和小教徒的N高效作物轮换,在荷兰的有机实验农场执行了9年的田间实验。 用不同水平的浆料(来自自由失速谷物的乳制品流出物,平均干物质含量为7%)施用的作物转,用于干物质(DM)产量,N产量,土壤矿物质N,土壤有机物和土壤 有机N.玉米种植和浆液应用均增加了每年增加的DM产量。 然而,玉米后的草/三叶草的第二年,玉米本身和浆液应用各自导致秋季较高的土壤矿物质,增加了硝酸盐浸出损失的风险。 4年的草/三叶草的旋转,2年的麦考师1年的小教徒导致荷兰病的年平均DM生产(12吨DM / HA /年),潜在的N潜水损失2 7年。

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