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Nitrogen and phosphorus transport in runoff from compost berms on a simulated military training landscape

机译:模拟军事训练景观堆肥护坡径流中的氮磷运移

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摘要

Compost mulches have potential to significantly offset on- and off-site environmental impacts resulting from mechanical soil disturbances and training manoeuvres on military training ranges. N and P transport was investigated in runoff from compost mulch berms made from various organic waste materials in combination with each other and with soil on a simulated military training landscape in north Alabama in 2007 and 2008. Berms were constructed using composted municipal yard waste (YW), wood chips (WC), pine bark fines (PB), and soil (SL) mixed in eight different proportions. Berms made from 100% soil which had a cumulative runoff PO4-P content of 12mgL~-1 posed the greatest threat of negatively impacting the environment from inorganic P transport. Using compost mulch material with 40% soil to build berms reduced the potential for yard waste and wood chips to cause off-site negative environmental impacts from total dissolved solids, N, and P transport. Berms made from 100% pine bark fines which had cumulative runoff values of 760, 9, 22 and 5mgL~-1, respectively, of TDS, NH_4-N, NO3-N, and PO4-P had the least potential to cause negative off-site environmental impact. To prevent negative impacts of nutrient transport in runoff from berms on training landscapes, the sites need to be well buffered to hydrologically isolate them from adjoining ecosystems.
机译:堆肥覆盖物有可能大大抵消由于机械土壤干扰和军事训练场上的训练演习而对现场和场外环境造成的影响。 2007年和2008年,在阿拉巴马州北部模拟的军事训练景观上,对由各种有机废物材料制成的堆肥覆盖物护堤的径流中的氮和磷运移进行了研究。 ),木片(WC),松树皮细粉(PB)和土壤(SL)以八种不同比例混合。由100%土壤中累积的径流PO4-P含量为12mgL〜-1制成的病原菌,对无机磷的运输给环境造成最大的威胁。使用堆肥覆盖材料和40%的土壤建造堤防,可减少院子废物和木屑在总溶解固体,氮和磷运输过程中对现场造成的负面环境影响的可能性。由TDS,NH_4-N,NO3-N和PO4-P的累积径流值分别为760、9、22和5mgL〜-1的100%松树皮细粉制成的草皮产生负排量的可能性最小现场环境影响。为了防止营养物从河道的径流转移对培训景观造成负面影响,需要对这些地点进行充分的缓冲,以在水文上将其与毗邻的生态系统隔离。

著录项

  • 来源
    《Waste management & research》 |2011年第2期|p.188-196|共9页
  • 作者单位

    Department of Natural Resources and Environmental Sciences,Alabama A&M University, Normal, AL, USA;

    Department of Natural Resources and Environmental Sciences,Alabama A&M University, Normal, AL, USA;

    Department of Natural Resources and Environmental Sciences,Alabama A&M University, Normal, AL, USA;

    Department of Natural Resources and Environmental Sciences,Alabama A&M University, Normal, AL, USA;

    US Army, Engineer Research and Development Center Construction Engineering Research Laboratory, Champaign, IL, USA;

    US Army, Engineer Research and Development Center Construction Engineering Research Laboratory, Champaign, IL, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ammonium n; land degradation; nitrate n; orthophosphate; soil erosion; total dissolved solids;

    机译:铵土地退化;硝酸盐正磷酸盐;水土流失;总溶解固体;
  • 入库时间 2022-08-17 13:43:32

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