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The Economic Benefit of Improving the Proximity of Tillage and Planting Operations in Cotton Production with Automatic Steering

机译:通过自动转向提高棉花生产中耕作和种植作业的邻近性的经济效益

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摘要

Producers in the Coastal Plain of the southeastern United States manage soil compaction in conservation tillage systems by in-row subsoiling prior to planting. However, planting directly over the loosened zone of soil can be difficult in high-residue conservation tillage systems where cover crop production is maximized. Tractors with automatic steering capability could assist with placement of deep tillage in close proximity to planting operations, but little is known about the accuracy necessary to maximize rooting development, reduce succeeding soil compaction, and optimize crop production. An experiment was conducted in south-central Alabama to evaluate the distance the cotton row can be from deep tillage and still affect cotton yield and economic performance. Results showed as distance between the planted row and tillage pass increased, seed cotton yields were reduced by as much as 24% to 52% and net revenues from cotton production by as much as 38% to 83%. An economic analysis of on-farm adoption showed that auto-guidance systems with accuracy of less than 2.5 cm may be the most profitable for larger farms, while systems with less than 10 cm accuracy may provide a better economic alternative for smaller farms
机译:美国东南沿海平原的生产者在种植前通过行深耕来管理保护性耕作系统中的土壤压实。然而,在高残留量保护性耕作系统中,很难将土壤直接种植在疏松的土壤上,在这种系统中,覆盖作物的产量会最大化。具有自动转向功能的拖拉机可以协助在耕种作业附近进行深耕,但是对使根系生长最大化,减少后续土壤压实并优化农作物产量所需的精度知之甚少。在阿拉巴马州中南部进行了一项实验,以评估棉花行距深耕的距离,并仍影响棉花产量和经济表现。结果表明,随着种植行距和耕作轮距之间的距离增加,籽棉产量减少多达24%至52%,棉花生产的净收入减少多达38%至83%。对农场采用的经济分析表明,精度小于2.5厘米的自动引导系统对于大型农场可能是最有利可图的,而精度小于10厘米的系统可能为小型农场提供了更好的经济选择

著录项

  • 来源
    《Applied Engineering in Agriculture》 |2009年第2期|p.133-143|共11页
  • 作者单位

    Jason S. Bergtold, Assistant Professor, Department of Agricultural Economics, Kansas State University, Manhattan, Kansas;

    Randy L. Raper, ASABE Member Engineer, Agricultural Engineer, and Eric B. Schwab, Agricultural Engineer, Agronomist, USDA-ARS, National Soils Dynamics Laboratory, Auburn, Alabama. Corresponding author: Jason S. Bergtold, Department of Agricultural Economics, Kansas State University, 304F Waters Hall, Manhattan, KS 66506-4011;

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

    Cotton yield; Soil compaction; Subsoiling; Auto-guidance; Economics; GPS;

    机译:棉花产量;土壤压实;深松土;自动引导;经济学;全球定位系统;

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