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首页> 外文期刊>Crop Science >Prairie and Turfgrass Buffer Strips Modify Water Infiltration and Leachate Resulting from Impervious Surface Runoff
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Prairie and Turfgrass Buffer Strips Modify Water Infiltration and Leachate Resulting from Impervious Surface Runoff

机译:草原和草皮缓冲带可改善由于不透水地表径流导致的水渗透和渗滤液

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摘要

Concerns over NO3-N concentrations in drinking water and potential subsurface transport of P to surface waters are driving legislation on precautionary N and P application restrictions on turfgrass areas and in recommendations for vegetative plantings within urban environments. Two plant communities and three impervious:pervious surface ratios were examined for effects on leachate water quantity and quality over a 3-yr period. A Kentucky bluegrass blend (Poa pratensis L.) and a mixed forb and grass prairie were monitored for 3 yr for total leachate volumes, total dissolved N (TDN) loading, and soluble PO4-P loading. Both types of vegetation provided similar annual groundwater recharge rates. Annual TDN losses from fertilized turf and unfertilized prairie were similar during and after establishment, with postestablishment losses averaging 3.6 and 2.2 kg ha-1, respectively. Mean annual soluble PO4-P losses postestablishment were 0.6 and 0.7 kg ha-1 for fertilized turf and unfertilized prairie, respectively. When compared with the absence of a buffer area, pervious surfaces at least one-half the size of impervious surfaces resulted in at least a 50% reduction in drainage water volumes. Fertilized turfgrass and unfertilized prairie vegetation provided similar groundwater protection and recharge abilities, and both resulted in some natural biogeochemical nutrient cycling.
机译:对饮用水中NO3-N浓度以及潜在的地下P运往地表水的担忧,正在推动有关草皮草地区预防性施用N和P的限制法规,以及有关在城市环境中种植植物的建议。在三年的时间里,检查了两个植物群落和三个不渗透:透水表面比率对渗滤液水量和水质的影响。监测肯塔基州蓝草共混物(Poa pratensis L.)和混合的草和草大草原3年的总沥滤液量,总溶解氮(TDN)含量和可溶性PO4-P含量。两种植被都提供类似的年度地下水补给率。建立期间和建立之后,受精草皮和未受草大草原的年度TDN损失相似,建立后的平均损失分别为3.6和2.2 kg ha-1。建立后的受精草皮和未受草大草原的平均年均可溶性PO4-P损失分别为0.6和0.7 kg ha-1。当与没有缓冲区的情况相比时,透水表面的尺寸至少为不透水表面尺寸的一半,导致排水量至少减少了50%。施肥的草皮草和未施肥的草原植被提供了相似的地下水保护和补给能力,并且都导致了某些自然生物地球化学养分循环。

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