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Evaluation of several fertility management systems for an organic commercial processing vegetable rotation.

机译:几种用于有机商业加工蔬菜轮作的肥力管理系统的评估。

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摘要

Fertility management and nutrient use efficiency remain key concerns for organically managed vegetable crop production. We evaluated an organically managed processing vegetable rotation under a no-input control, composted poultry manure (CPM), plant based with field pea annual cover crop (PB), integrated plant based with field pea annual cover crop and composted poultry manure (IA) and an integrated plant based with alfalfa perennial cover crop and composted poultry manure (IP) fertility management system in Arlington, WI. Total and U.S. number one potato tuber yields were greater in non-control systems than control systems in 2008 and 2009. Potato biomass varied by year and fertility management system with non-control systems producing greater biomass than the control. Nutrient use efficiency values were reduced by low measures of crop productivity within this study. Snap bean pod yield, biomass, and nitrogen use efficiency values were affected by year or a year by fertility management system interaction, except for agronomic use efficiency and nitrogen recovery efficiency values that were not affected by year or fertility management system. Sweet corn total yield, pre-harvest biomass, and nutrient use efficiency values were affected by year, fertility management system, and a year by fertility management system by year interaction, except for partial factor productivity which was unaffected by fertility management system. Soil NO3-N concentrations in non-fertilized columns were affected by fertility management system, sampling time and a fertility management system by time interaction, while soil NH4-N concentration was affected by sampling date. Seasonal accumulated net nitrogen mineralization was affected by year and seasonal accumulated net nitrification was affected by year and fertility management system. Across 2009 and 2010, within season net nitrogen mineralization patterns within non-fertilized systems were affected by sampling date; while net nitrification rates within the 2009 and 2010 sweet corn growing season were affected by fertility management system, sampling date, and a fertility management system by sampling date interaction. These results indicate that organic growers have flexibility in the fertility management system chosen across crops, so long as total soil PAN is budgeted for the entire rotation cycle and proper budgeting is estimated for each residue incorporated.
机译:生育管理和养分利用效率仍然是有机管理蔬菜作物生产的关键问题。我们评估了无投入控制下有机管理的加工蔬菜轮作,堆肥家禽粪便(CPM),以大豌豆一年生作物为基础的植物(PB),以大豌豆一年生作物为基础的综合植物和堆肥的家禽粪便(IA)威斯康星州阿灵顿市的一家以紫花苜蓿多年生覆盖作物和堆肥家禽肥(IP)肥力管理系统为基础的综合工厂。在2008年和2009年,非对照系统的马铃薯块茎总产量和美国第一产量都高于对照系统。马铃薯生物量逐年变化,而生育管理系统也有所变化,其中非对照系统的马铃薯生物量高于对照。在这项研究中,低水平的农作物生产力降低了养分利用效率值。速食豆荚的产量,生物量和氮的利用效率值受生育管理系统的交互影响,一年或一年受到影响,但农艺利用效率和氮回收效率值不受年或生育管理系统的影响。甜玉米的总产量,收获前的生物量和养分利用效率值受年份,生育管理系统和生育管理系统逐年交互的影响,但部分要素生产力不受生育管理系统的影响。非肥料柱的土壤NO3-N浓度受肥力管理系统,采样时间和肥力管理系统的时间相互作用影响,而土壤NH4-N浓度则受采样日期影响。季节累积的净氮矿化度受年份的影响,季节累积的净硝化度受年份和肥力管理系统的影响。在2009年和2010年之间,非受精系统内的季节内净氮矿化模式受采样日期的影响。而2009年和2010年甜玉米生长期的净硝化率受生育力管理系统,采样日期以及受采样日期交互作用影响的生育力管理系统的影响。这些结果表明,有机种植者在整个作物的肥力管理系统中具有灵活性,只要在整个轮作周期中对总土壤PAN进行预算,并为掺入的每种残留物估算适当的预算。

著录项

  • 作者

    Goeser, Nicholas J.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Agriculture Agronomy.;Agriculture Soil Science.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 156 p.
  • 总页数 156
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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