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Spatial Variations in Nutrient and Microbial Transport from Feedlot Surfaces

机译:肥育场表面养分和微生物迁移的空间变化

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Nutrient and microbial transport by runoff may vary at different locations within a beef cattle feedlot. If the areas making the largest contributions to nutrient and microbial transport can be identified, it may be possible to institute site-specific management practices to reduce runoff nutrient and microbial transport. The objectives of this study were to: (1) measure selected feedlot soil properties and nutrient and microbial transport in runoff from various feedlot locations, (2) compare the effects of unconsolidated surface materials (USM) (loose manure pack) and consolidated subsurface materials (CSM) (compacted manure and underlying layers) on nutrient and microbial transport, and (3) determine if nutrient and microbial transport in runoff are correlated to selected feedlot soil characteristics. Simulated rainfall events were applied to 0.75 m wide by 2 m long plots. No significant differences (P < 0.05) in feedlot soil characteristics or nutrient transport in runoff were found between USM and CSM. However, concentrations of E. coli were significantly greater in the USM than the CSM. Pen location was found to significantly influence feedlot soil measurements of Bray-1 P, calcium, chloride, copper, electrical conductivity (EC), loss on ignition, organic N, phosphorus, potassium, sodium, sulfur, total N (TN), water-soluble P, and zinc. Runoff measurements of dissolved phosphorus (DP), EC, and NH 4 -N were significantly influenced by pen location and were correlated to selected feedlot soil characteristics. Thus, it may be possible to estimate DP, EC, and NH 4 -N in runoff from selected feedlot soil parameters.
机译:径流中营养物和微生物的运输在肉牛饲养场的不同位置可能有所不同。如果能够确定对养分和微生物运输贡献最大的区域,则有可能制定针对特定地点的管理措施以减少径流养分和微生物运输。这项研究的目的是:(1)在不同的肥育场位置测量选定的肥育场土壤性质以及径流中的养分和微生物迁移;(2)比较未固结表层物料(USM)(松散的粪肥包)和固结地下物料的影响(CSM)(紧凑的肥料和下层)对养分和微生物的转运,并且(3)确定径流中的养分和微生物的转运是否与所选肥育场土壤特性相关。模拟降雨事件适用于0.75 m宽乘2 m长的地块。 USM和CSM之间的肥育场土壤特性或径流中的养分迁移没有显着差异(P <0.05)。但是,USM中的大肠杆菌浓度明显高于CSM。笔的位置被发现会严重影响肥育场土壤中Bray-1 P,钙,氯化物,铜,电导率(EC),灼烧损失,有机氮,磷,钾,钠,硫,总氮(TN),水的测量溶于磷和锌。围栏位置显着影响了溶解磷(DP),EC和NH 4 -N的径流测量,并与选定的肥育场土壤特性相关。因此,有可能根据所选的肥育场土壤参数估算径流中的DP,EC和NH 4 -N。

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