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在施用粪肥的大西洋沿岸平原土壤中的磷淋失

Phosphorus leaching in manure-amended Atlantic Coastal Plain soils.

作者信息

Butler Jennifer S, Coale Frank J

机构信息

Department of Natural Resource Sciences and Landscape Architecture, 0214 H.J. Patterson Hall, University of Maryland, College Park, MD 20742, USA.

出版信息

J Environ Qual. 2005 Jan-Feb;34(1):370-81.

Abstract

Targeting the sources of phosphorus (P) and transport pathways of drainage from agricultural land will assist in the reduction of P loading to surface waters. Our research investigated the vertical movement of P from dairy manure and broiler litter through four Atlantic Coastal Plain soils. A randomized split-plot design with two main-plot tillage treatments (no tillage [NT] and chisel tillage [CH]) and five manure P rate split-plot treatments was used at each location. The split-plot P rates were 0, 100, 200, 300, and 400 kg P ha(-1) yr(-1). Four consecutive years of manure application began at all sites 5 yr before sampling. Soils were sampled to a depth of 150 cm from each split plot in seven depth increments and analyzed for soil test phosphorus (STP), water-extractable soil phosphorus (WSP), and degree of phosphorus saturation (DPS). The DPS of the 0- to 15-cm depths confirmed that at the 100 kg P ha(-1) yr(-1) application rate, all sites exceeded the threshold for P saturation (30%). At depths greater than 30 cm, DPS was typically below the 30% saturation threshold. The DPS change points ranged from 25 to 34% for the 0- to 90-cm depths. Our research concluded that the risk of P leaching through the matrix of the Atlantic Coastal Plain soils studied was not high; however, P leaching via macropore bypass may contribute to P loss from these soils.

摘要

针对农业用地磷(P)的来源及排水的运输途径,将有助于减少地表水体的磷负荷。我们的研究调查了奶牛粪便和肉鸡粪便中的磷通过四种大西洋沿岸平原土壤的垂直移动情况。在每个地点采用了随机裂区设计,主区有两种耕作处理(免耕[NT]和凿耕[CH]),裂区有五种粪肥磷施用量处理。裂区的磷施用量分别为0、100、200、300和400 kg P ha(-1) yr(-1)。在采样前5年,所有地点均开始连续四年施用粪肥。从每个裂区采集深度达150 cm的土壤样本,分七个深度增量进行分析,测定土壤有效磷(STP)、水溶性土壤磷(WSP)和磷饱和度(DPS)。0至15 cm深度的DPS证实,在100 kg P ha(-1) yr(-1)的施用量下,所有地点均超过了磷饱和阈值(30%)。在深度大于30 cm处,DPS通常低于30%的饱和阈值。0至90 cm深度的DPS变化点范围为25%至34%。我们的研究得出结论,在所研究的大西洋沿岸平原土壤基质中,磷淋溶的风险不高;然而,通过大孔隙旁路的磷淋溶可能导致这些土壤中的磷流失。

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