...
首页> 外文期刊>Revista ciencia agronomica >Performance of a cascade fertilizer seeder: sowing systems and mechanisms for fertilizer deposition
【24h】

Performance of a cascade fertilizer seeder: sowing systems and mechanisms for fertilizer deposition

机译:级联肥料播种机的性能:播种系统和肥料沉积机制

获取原文
   

获取外文期刊封面封底 >>

       

摘要

It is necessary to use new technologies to mitigate water scarcity in the semi-arid region. As such, the aim of this study was to evaluate the operational and energy performance of a ridge planter and fertiliser, as well as the deposition depth of maize seeds and fertiliser as a function of the sowing system, and the use of different furrowing mechanisms (disc and shank) for depositing fertilisers. The experimental design was of randomised blocks, in a 6 x 2 factorial scheme with four replications, including six sowing systems: (S1 - intercropped ridge-sown maize; S2 – monocropped ridge-sown maize; S3 - intercropped furrow-sown maize; S4 – monocropped furrow-sown maize; S5 - conventional intercropping system; S6 - conventional monocropped system) and two mechanisms for depositing the fertiliser (offset double disc and shank furrower). The statistical analysis was carried out using the SISVAR software at 5% significance. It was concluded that, irrespective of the sowing system (ridge or furrow) and mechanism employed, there is no difference in the initial plant population or in the depth of the maize seeds. However, greater attention must be paid to the depth of both the fertiliser and forage seeds when these are deposited at the same time. Sowing systems that turn the soil (furrow and ridge) consume more energy, as does the shank mechanism. Sowing system S5 affords better operating performance when used together with the disk mechanism.
机译:有必要利用新技术来减轻半干旱地区的水资源稀缺性。因此,本研究的目的是评估山脊种植者和肥料的操作和能量性能,以及作为播种系统的函数的玉米种子和肥料的沉积深度,以及使用不同的皱纹机制(圆盘和柄)用于沉积肥料。实验设计是随机块,其中6×2因子方案,有四种复制,包括六个播种系统:(S1 - 间作的脊播种玉米; S2 - 独立的脊播种玉米; S3 - 间作沟槽玉米; S4 - Monocropped Furrow-Sown玉米; S5 - 传统的间作系统; S6 - 常规的单剖水系统)和用于沉积肥料(偏移双盘和柄皱纹)的两种机制。使用Sisvar软件以5%的意义进行统计分析。结论是,无论播种系统(脊或沟槽)和机制如何,初始植物种群或玉米种子的深度都没有差异。然而,当它们同时沉积时,必须对肥料和饲料种子的深度支付更大的注意。转动土壤(沟槽和脊)的播种系统消耗更多能量,柄机制也是如此。播种系统S5在与磁盘机构一起使用时提供更好的操作性能。

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