...
首页> 外文期刊>International Journal of Agronomy >Enhanced Efficiency Liquid Nitrogen Fertilizer Management for Corn Production
【24h】

Enhanced Efficiency Liquid Nitrogen Fertilizer Management for Corn Production

机译:玉米产量增强效率液氮肥料管理

获取原文

摘要

Claypan soils have a high potential for N loss, which can lower corn (Zea mays L.) yields. Field research was conducted from 2011 to 2013 in Northeast Missouri to determine corn yield, plant population, and grain quality response to N application timings (fall vs. spring) and five N sources/placements at two different N rates (84 and 168?kg·N·ha?1) on a poorly drained claypan soil. The five N source/placement systems were no-till (NT)/surface broadcast urea ammonium nitrate (UAN) (Surface UAN) or strip-till (ST)/deep banded UAN (deep UAN), NT/surface broadcast UAN plus Nitamin Nfusion (surface NF) or ST/deep banded UAN plus Nitamin Nfusion (deep NF), and ST/deep banded anhydrous ammonia (AA) (deep AA). The field trial was a split-plot randomized complete block design with four replications. Deep UAN with a fall N application produced the highest grain yield (8.12 to 9.12?Mg·ha?1) at 84 and 168?kg·N·ha?1, but it was less effective with a spring application in 2011. Fall deep AA produced the lowest grain yields (5.97 and 6.8?Mg·ha?1) in 2013 at 84 and 168?kg·N·ha?1 potentially due to wet soil conditions at the time of application. Warmer and wetter soil conditions during April-May of 2013 resulted in relatively higher grain yields compared to cooler and drier soil conditions in 2011 with all spring-applied N source/placement treatments. Extreme drought in the 2012 growing season resulted in poor corn growth. Farmers may need to consider fall N applications on claypan soils because spring N application might be riskier since corn grain yield was generally greater than or equal to spring-applied treatments.
机译:粘土土壤具有高潜力的抗损失,可降低玉米(Zea mays L.)产量。现场研究是从2011年到2013年在东北密苏里州进行的,以确定玉米产量,植物人口和谷物质量响应N应用时间(下跌与弹簧)和五个不同的N个速率(84和168?kg ·N·HA?1)在污水不良的粘土潘。五个源/放置系统是无直到(nt)/表面广播尿素硝酸铵(uAn)或条带 - 直到(st)/深带uan(深uAn),nt / surface广播uan plus硝胺Nfusion(表面NF)或ST /深带u an Plus硝胺Nfusion(深NF)和ST /深带无水氨(AA)(深AA)。现场试验是一个分裂图随机完成块设计,具有四种复制。秋季秋季申请的深紫外线产生最高的谷物产量(8.12至9.12?mg·ha?1),在84和168?kg·n·ha?1,但2011年的春季申请效果较小。深AA在2013年产生最低的谷物产量(5.97和6.8?mg·ha?1),在84和168. kg·n·ha?1可能是由于施用时的湿土条件。与2011年4月至2011年4月至2011年5月的较温暖和潮湿的土壤条件导致2011年的冷却器和干燥的土壤条件相比,与所有春天应用的N源/放置处理相比,谷物产量相比。 2012年生长季节的极端干旱导致玉米增长不佳。农民可能需要考虑在粘土的污染物上的秋季N应用,因为Spring n应用可能是风险的,因为玉米籽粒产量通常大于或等于弹簧施加的治疗。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号