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Nitrate potential from sludge and inorganic fertilizer in soil leachate beneath an irrigated agricultural field

机译:灌溉农田下土壤渗滤液中污泥和无机肥料的硝酸盐潜力

摘要

Two sets of continuous deep soil cores were removed from a 4 hectare field during the third year of crop treatment. Samples were removed once following sludge addition and once 6 weeks later following inorganic fertilizer application and a 30 cm pre-planting irrigation. A total of 504 soil samples were analyzed for soil texture, gravimetric moisture content, electrolytical conductivity, and pH, as well as concentrations of NO₃ , Cl⁻ , NO₂, and organic C. After three annual sludge applications, soil beneath plots amended with sludge, had higher average water-extractable NO3 concentration than plots amended with inorganic fertilizer. From one sampling date to the next, the field-averaged concentration of NO₃ increased from 282 mg 1⁻¹ to 335 mg 1⁻¹ . Results suggest a trend of increasing NO₃ in the vadose zone.
机译:在作物处理的第三年,从一个4公顷的田地中取出了两组连续的深层土壤核心。在添加污泥之后,以及在施用无机肥料和播种前30厘米的灌溉之后的6周后,都将样品移除一次。总共对504个土壤样品进行了土壤质地,重量水分含量,电解电导率和pH值以及NO 3,Cl 3,NO 2和有机C的浓度分析。在每年进行3次污泥处理后,用污泥对样地下的土壤进行了修改。 ,其平均水可提取的NO3浓度高于用无机肥料改良的地块。从一个取样日期到下一个取样日期,NO 3的平均浓度从282mg 1 -1增加到335mg 1 -1。结果表明在渗流区NO 3增加的趋势。

著录项

  • 作者

    Reid Mary Elizabeth1943-;

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  • 年度 1990
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  • 原文格式 PDF
  • 正文语种 en
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