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Development and evaluation of a fertilizer banding opener.

机译:肥料捆扎开瓶器的开发和评估。

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摘要

Benefits of no-tillage have been widely recognized in reducing soil erosion and improving soil quality. Banding anhydrous ammonia (NH 3) with minimal soil disturbance in no-tillage system can reduce nutrient losses and greenhouse gas emissions. This study focused on developing a low-disturbance and low-cost banding opener for mid row banding NH3 in no-tillage system. The opener was characterized by double or single disks and a simple but effective leaf spring downforce system. Design parameters of the spring downforce system were selected through an optimisation process in which the opener downforce changes were minimised. The optimal design parameters were further validated through a laboratory test.;The prototype of the leaf spring opener was compared with an existing parallel linkage opener in a field condition. The results showed that the two openers had comparable performance, in terms of the cutting depths and uniformity of the cutting depths. Furthermore, the leaf spring had much lower cost. A field experiment was conducted with the opener prototype in banding NH3. The field had clay soil and wheat stubble. The treatments were different opener configurations, including two opener disk configurations (single disk and double disks) and two furrow closing wheel configurations (using furrow closing wheel and without using furrow closing wheel). The field measurements included soil surface disturbance, nitrogen trace, and nitrogen concentrations. Under the given field conditions, the double-disk opener without furrow closing wheel had the best performance with the highest soil nitrogen concentration (80.5 mug/g) and the largest area of NH3/NH 4+ trace zone in soil (4607 mm2). On the contrary, the single-disk opener without furrow closing wheel performed the worst at all aspects, except for the soil surface disturbance.
机译:免耕的好处已被广泛认可,可减少土壤侵蚀和改善土壤质量。在免耕系统中,将无水氨(NH 3)与土壤干扰最小化可以减少养分流失和温室气体排放。这项研究的重点是为免耕系统中排氮带NH3开发低干扰,低成本的带环开放剂。开瓶器的特点是双盘或单盘以及简单但有效的板簧下压力系统。通过优化过程选择弹簧下压力系统的设计参数,在该过程中,开启器下压力的变化降至最低。通过实验室测试进一步验证了最佳设计参数。在现场条件下,将板簧开启器的原型与现有的平行连杆开启器进行了比较。结果表明,在切削深度和切削深度的均匀性方面,两个开瓶器具有可比的性能。此外,板簧的成本要低得多。用开沟器原型带状NH3进行了现场试验。田地里有黏土和麦茬。处理方法是不同的开瓶器配置,包括两个开瓶器盘配置(单盘和双盘)和两个犁刀关闭轮配置(使用犁刀关闭轮而未使用犁刀关闭轮)。现场测量包括土壤表面扰动,氮迹线和氮浓度。在给定的田间条件下,不开沟封闭轮的双盘开沟器具有最好的性能,土壤氮浓度最高(80.5杯/克),土壤中NH3 / NH 4+痕量区的面积最大(4607 mm2)。相反,除了土壤表面扰动外,没有犁沟关闭轮的单盘开沟器在所有方面都表现最差。

著录项

  • 作者

    Chen, Fangliang.;

  • 作者单位

    University of Manitoba (Canada).;

  • 授予单位 University of Manitoba (Canada).;
  • 学科 Agricultural engineering.
  • 学位 M.Sc.
  • 年度 2008
  • 页码 74 p.
  • 总页数 74
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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