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Improved or Unimproved Urban Areas Effect on Soil and Water Quality

机译:改善或未改善的城市地区对土壤和水质的影响

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Construction in urban areas usually results in compacted soil, which restricts plant growth and infiltration. Nutrients may be lost in storm runoff water and sediment. The purpose of this study was to determine if existing lawns benefit from aeration and surface compost additions without the negative impact of nutrient loss in runoff. Four sets of lawns were compared, with or without compost plus aeration, as a paired comparison. Surface bulk density was significantly reduced in the treated lawns (1.32 versus 1.42 Mg·m ?3 ). Visual evaluation of soil structure showed improvement in the treated lawns. Of fifteen measurement dates over four years, four dates showed significantly higher surface soil water contents in the treated lawns compared with the untreated lawns. When compared over time, three of the four treated lawns had significantly higher soil water content than the untreated lawns. Nutrient concentrations in rainfall simulator runoff were not significantly different between treated and control lawns, which showed that compost did not negatively impact water quality. Compost and aeration helped restore soil quality for urban soils of recent construction.
机译:在城市地区施工通常会导致土壤致密,从而限制了植物的生长和渗透。暴雨径流中的水和沉积物可能会丢失营养物质。这项研究的目的是确定现有的草坪是否受益于通气和地面堆肥的添加,而不会对径流中养分流失产生负面影响。作为配对比较,比较了四组草坪,有无堆肥和通气。在经过处理的草坪上,表面堆积密度显着降低(1.32对1.42 Mg·m?3)。视觉评估土壤结构表明,经过处理的草坪有所改善。在四年中的15个测量日期中,与未处理的草坪相比,在经过处理的草坪中有四个日期显示出明显更高的地表土壤含水量。当与时间进行比较时,四个经过处理的草坪中有三个的土壤水分含量明显高于未经处理的草坪。在经过处理的草坪和对照草坪之间,降雨模拟器径流中的养分浓度没有显着差异,这表明堆肥不会对水质产生负面影响。堆肥和曝气有助于恢复最近建设的城市土壤的土壤质量。

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