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Farm machinery management and the impact of conservation tillage systems on soil erosion and the sustainability of wheat production in rainfed areas of northern Jordan.

机译:约旦北部雨养地区的农机管理以及耕作耕作制度对土壤侵蚀和小麦生产可持续性的影响。

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摘要

Scope and method of study. The selection of the proper machinery size and ownership costs of common farm machinery used for wheat production in Irbid/Jordan was studied. The penalty cost of planting wheat at times earlier or later than the optimum time "timeliness cost" in Irbid was also determined. A crop yield-predicting model, CERES-Wheat was used to predict wheat yield at different planting dates in Irbid. The problem of soil erosion and its effect on wheat production in Irbid area was also studied. The Environmental Policy Integrated Climate model (EPIC) was used to simulate the wheat yield and the rate of soil erosion on the Red Mediterranean soils of Irbid. The amount of soil erosion and its impact on wheat yield was simulated under different tillage systems for the period of 100 years. The conventional and conservation tillage systems were used for a wheat fallow crop rotation in the model. The Net Present Value (NPV) method was used to measure the costs and benefits of each system. The system with the highest NPV could be selected.;Findings and conclusions. The results of the CERES-Wheat model simulations were used in determining the timeliness cost. Timeliness cost was minimized by planting wheat during the mid of November. Planting one month earlier (October 15--20) led to the loss of 292 kg/ha of wheat (JD44), while planting one month later (December 20--25) caused the loss of 359 kg/ha of wheat (JD54). The results for machinery selection showed that a tractor size of 65 to 70 hp is sufficient to do the required field operations for planting a 200 ha field on time. The NPV analysis showed that for the long run it is more beneficial to the farmer to use the conventional tillage system for deep soils (1.5 m) with 10% discount rate, while it is more beneficial to use the conservation system for shallow soils (0.7 m) with a discount rate of 5%.
机译:研究范围和方法。在Irbid / Jordan,研究了用于小麦生产的普通农用机械的适当机械尺寸和拥有成本的选择。还确定了在比尔比最佳时间“及时性成本”早或晚的时间播种小麦的罚款成本。一种农作物产量预测模型CERES-Wheat用于预测厄尔比德不同播种日期的小麦产量。还研究了厄尔比德地区水土流失问题及其对小麦生产的影响。使用环境政策综合气候模型(EPIC)来模拟小麦的产量和伊比德(Irbid)地中海红色土壤上的土壤侵蚀速率。在100年的不同耕作制度下,模拟了土壤侵蚀量及其对小麦产量的影响。在模型中,常规耕种和保护性耕作系统用于小麦休闲作物轮作。净现值(NPV)方法用于衡量每个系统的成本和收益。可以选择NPV最高的系统。发现和结论。 CERES-Wheat模型仿真的结果用于确定及时性成本。通过在11月中旬播种小麦,将及时性成本降至最低。一个月前(10月15--20日)播种导致小麦损失292公斤/公顷(JD44),而一个月后(12月20--25日)播种导致小麦(JD54)损失359公斤/公顷)。机器选择的结果表明,65至70 hp的拖拉机尺寸足以完成按时播种200公顷田地所需的田间作业。净现值(NPV)分析表明,从长远来看,对深层土壤(1.5 m)使用常规耕作系统,折现率为10%,对农民更有利,而对于浅层土壤(0.7 m)折扣率为5%。

著录项

  • 作者

    Al Issa, Taha Ahmad.;

  • 作者单位

    Oklahoma State University.;

  • 授予单位 Oklahoma State University.;
  • 学科 Agriculture Agronomy.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 119 p.
  • 总页数 119
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:47:02

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