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Nutrient and Microbial Transport from Feedlot Surfaces

机译:来自饲养表面的营养素和微生物输送

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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-specificmanagement practices to reduce runoff nutrient and microbial transport. The objectives of this study were to: a) measure selected feedlot soil properties, and nutrient and microbial transport in runoff from various feedlot locations b) 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 c) determine if nutrient and microbial transport in runoff arecorrelated 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 andCSM. 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 NH4-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:径流的营养和微生物运输可能在牛犊饲料饲料中的不同位置变化。如果可以识别为营养素和微生物运输的最大贡献提供最大贡献,则可以提高现场特定的管理实践以减少径流营养素和微生物输送。本研究的目的是:a)测量选定的饲料土壤性质,以及各种饲料位置的径流中的营养和微生物输送B)比较未核化表面材料(USM)(宽松粪便包)和整合地下材料的影响(CSM )(压实的粪便和底层)对营养和微生物传输,C)确定径流中的营养和微生物输送是否遍布选定的饲料土壤特性。模拟的降雨事件应用于0.75米宽的2米长图。在USM和CSM之间发现了在USM和CSM之间的饲料土壤特征或营养转运中没有显着差异(P <0.05)。然而,在USM中,大肠杆菌的浓度明显大于CSM。发现笔位置显着影响Bray 1-P,钙,氯化物,铜,导电性(EC),点火丧失,点火,磷,钾,钠,硫,总N(Tn)的饲料土壤测量,水溶性p和锌。溶解磷(DP),EC和NH4-N的径流测量受到PEN位置的显着影响,与选定的饲料土壤特性相关。因此,可以从所选饲料土壤参数中估计DP,EC和NH_4-N.

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