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SALT THRESHOLDS FOR LIQUID MANURE APPLIED TO CORN AND SOYBEAN

机译:适用于玉米和大豆的液态肥料的盐阈值

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摘要

Sprinkler application of liquid manure to growing crops is often a convenient, and agronomically acceptable, means of land application. However, manure salts can cause crop damage, and safe salt concentrations of liquid manure have not been determined. Research was conducted to better understand the relationship of salt concentration to phytotoxicity. Swine ( Sus scrofa ) manure from a below-barn storage facility was applied during the summer of 2003 to corn ( Zea mays L.) and soybean [ Glycine max L. (Merr.)] growing on a Kennebec silt loam (fine-silty, mixed, mesic Cumulic Hapludoll) soil under field conditions. The manure had a mean electrical conductivity (EC) of 20.3 dS m -1 and was diluted to EC levels of 11.7, 6.4, and 0.6 dS m -1 . The 20.3 dS m -1 and the 6.4 dS m -1 concentrations are typical of under-barn storage and anaerobic lagoons, respectively. The liquid manure was applied to crop canopies at a rate of 11.7 mm ha -1 in three increments over a 10 min period at growth stages V7 or V14 for corn, and V3 or R1 for soybean. At the 20.3 dS m -1 concentration, phytotoxic effects occurred for both crops, although the effects were minor for the corn with application at the V14 stage. At the 11.7 dS m -1 concentration, liquid manure caused leaf necrosis, stunting, and reduced leaf area in soybean, while visible phytotoxic effects were much less severe in corn. Eighty-eight percent of the soybean plants were killed by the 20.3 dS m -1 concentration when applied at the V3 stage. Soybean and corn yields were decreased for the V3 and V7 applications by 89% and 15%, respectively. With the later application of 20.3 dS m -1 concentration, soybean yield was reduced by 45%, but corn yield was not reduced. The V3 application of solutions of 11.7 and 6.4 dS m -1 caused an 8.5% decrease in soybean yields. Application of 11.7 dS m -1 liquid manure at V7 reduced corn yield by 12% but increased yield by 10% when applied at V14. Application of 6.4 dS m -1 liquid manure increased corn yield by 4% and 13% for the V7 and V14 applications, respectively, compared to the control. Under the conditions of this study, application of liquid manure of 6.4 dS m -1 or less should be safe for all stages of soybean and corn, while 11.7 dS m -1 should be safe for soybean after R1 and for corn after V7. Further research is needed to evaluate these results across several growing environments and to determine potential differences in plant damage threshold
机译:将液体肥料喷洒到生长中的农作物上通常是一种方便且在农业上可接受的土地施用方式。但是,粪肥盐可能会损害作物,尚未确定安全的液态粪肥盐浓度。进行了研究以更好地理解盐浓度与植物毒性的关系。 2003年夏季,在谷仓下的存储设施中将猪粪(Sus scrofa)施用到在肯尼贝克粉砂壤土(细粉质)上生长的玉米(Zea mays L.)和大豆[Glycine max L.(Merr。)]上。田间条件下的混合,中性,累积性累积土壤)。粪便的平均电导率(EC)为20.3 dS m -1 ,并稀释至EC值分别为11.7、6.4和0.6 dS m -1 。 20.3 dS m -1 和6.4 dS m -1 的浓度分别是谷仓下储存和厌氧泻湖的典型浓度。在玉米的生长阶段V7或V14,对于大豆的生长阶段V3或R1,在10分钟内以3个增量以11.7 mm ha -1 的速率将液态肥料施用于作物冠层。在20.3 dS m -1 浓度下,两种作物都发生了植物毒性作用,尽管在V14阶段施用对玉米来说影响很小。在11.7 dS m -1 浓度下,液肥导致大豆叶片坏死,发育迟缓和叶面积减少,而玉米的可见植物毒性作用则不那么严重。在V3阶段施用时,88%的大豆植株被20.3 dS m -1 浓度杀死。 V3和V7施用的大豆和玉米单产分别降低了89%和15%。后来应用20.3 dS m <sup> -1 浓度,大豆产量降低了45%,而玉米产量却没有降低。在11.7和6.4 dS m -1 溶液中的V3施用使大豆单产降低了8.5%。在V7处施用11.7 dS m -1 液态肥料,在V14处施用可使玉米减产12%,但增产10%。与对照相比,V7和V14施用6.4 dS m -1 液体肥料分别使玉米增产4%和13%。在本研究的条件下,对于所有阶段的大豆和玉米,施用6.4 dS m -1 或以下的液肥应该是安全的,而11.7 dS m -1 R1之后的大豆和V7之后的玉米应该是安全的。需要进一步的研究来评估几种生长环境下的结果,并确定植物危害阈值的潜在差异

著录项

  • 来源
    《Transactions of the ASAE》 |2005年第3期|p.1005-1013|共9页
  • 作者单位

    Charles A. Shapiro, Professor, Department of Agronomy and Horticulture, and William L. Kranz, ASAE Member Engineer, Associate Professor, Department of Biological Systems Engineering, University of Nebraska, Haskell Agricultural Laboratory, Concord, Nebraska;

    and Charles S. Wortmann, Assistant Professor, Department of Agronomy and Horticulture, University of Nebraska, Lincoln, Nebraska. Corresponding author: W. L. Kranz, Department of Biological Systems Engineering, University of Nebraska, Haskell Agricultural Laboratory, 57905 866 Rd., Concord, NE 68728;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Corn; Liquid manure; Phytotoxicity; Soybean; Sprinkler application;

    机译:玉米;液体肥料;植物毒性大豆喷头应用;

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