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Developing an efficient cover cropping system for maximum nitrogen recovery in Massachusetts.

机译:在马萨诸塞州开发一种有效的覆盖作物种植系统,以最大程度地回收氮。

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摘要

Time of planting plays a critical role in nitrogen (N) uptake by rye cover crop (CC). Even a few days of delay in planting can severely decrease CC performance. Evaluating the amount of N accumulation related to time of planting is critical to the farmer who has to optimize the winter rye planting date based on completion of corn harvest, suitable weather conditions and time availability for fall manure application. Winter rye cover crop was planted at 6 planting dates in fall from mid August to early October at weekly intervals from 2004 to 2009.;The results suggest that delay from critical planting date (CPD) will decrease rye N uptake dramatically. Suggested CPDs for northwest parts of Massachusetts are not applicable because they are too early (third to fourth week of August). CPDs for central parts of the State are from first to second week of September. Farmers in these zones can take advantage of cover crop by a better time management and planting no later than CPD. In Eastern areas of Massachusetts CPD is the third week of September. By evaluating the effect of planting date on rye growth and N accumulation throughout the State, this model provides a powerful decision making tool for increasing N recovery and reducing nutrient leaching.;Sixteen units of cost effective and accurate automated lysimeters were designed and installed to measure post-harvest nitrate leaching from a rye cover crop field during the falls and winters of 2007 to 2009. The electronic system was designed to monitor soil tension and apply the equal amount of suction to the sampling media. Hourly data from soil tension and vacuum applied to the system were collected and stored by each unit. A safety system was designed for protecting vacuum pump against unexpected major vacuum leakage events. The controller can be easily reprogrammed for different performance strategies. Other major parts of lysimeter included the power supply systems, vacuum pump, vacuum tanks, sampling jars, suction cups and plates, and electronic valves. The electronic system showed a very reliable and accurate performance in the field condition.
机译:播种时间在黑麦覆盖作物(CC)吸收氮(N)中起关键作用。即使播种延迟几天,也可能严重降低CC性能。评估与播种时间相关的氮积累量对于必须基于玉米收获的完成情况,合适的天气条件和适用于秋季肥料的时间来优化冬黑麦播种日期的农民至关重要。从8月中旬到10月初的秋季,冬季黑麦覆盖作物的播种时间为2004年至2009年,每周间隔6个播种日期。建议的马萨诸塞州西北部CPD尚不适用,因为它们过早(8月的第三至第四周)。该州中部的CPD是从9月的第一周到第二周。这些地区的农民可以通过更好的时间管理和不迟于CPD的播种来利用覆盖作物。在马萨诸塞州东部地区,CPD是9月的第三周。通过评估播种期对整个州黑麦生长和氮积累的影响,该模型提供了一个强大的决策工具,可提高氮的回收率并减少养分的淋失。;设计并安装了十六个具有成本效益和精确度的自动测渗仪进行测量在2007年至2009年的秋季和冬季,黑麦覆盖作物田的收获后硝酸盐浸出。电子系统旨在监测土壤张力,并向采样介质施加等量的吸力。每个单元每小时收集并存储来自土壤张力和真空的每小时数据。设计了一种安全系统,用于防止真空泵发生意外的重大真空泄漏事件。可以轻松地针对不同的性能策略对控制器进行重新编程。测渗仪的其他主要部件包括电源系统,真空泵,真空罐,采样罐,吸盘和吸盘以及电子阀。电子系统在现场条件下显示出非常可靠和准确的性能。

著录项

  • 作者

    Farsad, Ali.;

  • 作者单位

    University of Massachusetts Amherst.;

  • 授予单位 University of Massachusetts Amherst.;
  • 学科 Agriculture Agronomy.;Environmental Sciences.;Agriculture Soil Science.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 202 p.
  • 总页数 202
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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