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Effect of Nitrogen Application on Yield and Quality of Silage Corn after Forage Legume-Grass

机译:施氮对豆科牧草青贮玉米产量和品质的影响

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Decomposition of forage legume-grass (FLG) sods after turnover will supply N to the next corn (Zea mays L.) crop. For optimum economic grain production typically a starter N application is sufficient. However, the impact of eliminating sidedress N on yield and quality of silage corn in the year after sod turnover (FYC) is not well documented and little is known about the effects of timing of sod turnover (fall or spring) or sod composition (percentage legume) on N fertilizer needs of FYC. In 2005 and 2006, 13 on-farm and three research station N trials were conducted throughout New York (NY) to determine (i) N needs for optimum yield and quality of FYC and (ii) the impact of FLG composition and timing of sod kill on the likeliness of an economic N fertilizer response. On-farm trials included four sidedress N rates (0, 56, 112, and 168 kg N ha-1) with a small, banded starter application (34 kg N ha-1 maximum). The three research sites also contained a no starter control. Eliminating the starter resulted in significantly lower yields while sidedress N did not increase yield at any of the 16 sites. Nitrogen application increased crude protein (CP) levels but did not affect other silage quality parameters or estimated milk production. The increase in CP came at great economic (fertilizer) and environmental (low apparent N recovery) costs. We conclude a small starter application is sufficient for optimum yield and quality of FYC regardless of timing of sod turnover or its composition.
机译:周转后草料豆草(FLG)草皮的分解将为下一个玉米(Zea mays L.)作物提供氮。为了获得最佳的经济谷物生产,典型的起子N施用就足够了。但是,关于草皮周转期(FYC)后的一年中,消除氮肥对青贮玉米产量和品质的影响尚未得到充分记录,对草皮周转时间(秋季或春季)或草皮组成(百分率)的影响知之甚少。 FYC对氮肥的需求。在2005年和2006年,整个纽约(NY)进行了13个农场和三个研究站N试验,以确定(i)FYC最佳产量和质量的N需求,以及(ii)FLG组成和草皮播种时间的影响杀死经济氮肥反应的可能性。在农场进行的试验包括使用4种补充氮肥(0、56、112和168 kg N ha-1)和少量带状发酵剂(最大34 kg N ha-1)。这三个研究地点也没有启动控制。在16个地点中的任何一个地点,取消发酵剂均会显着降低产量,而施肥N不会增加产量。施氮增加了粗蛋白(CP)含量,但不影响其他青贮饲料质量参数或估计的产奶量。 CP的增加是在巨大的经济(肥料)和环境(表观氮回收率较低)成本下实现的。我们得出结论,无论草皮周转的时间或其组成如何,小规模的发酵剂应用就足以实现FYC的最佳产量和质量。

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