Spatial and temporal patterns of cattle feces deposition on rangeland

K. Tate, E. Atwill, N. McDougald, M. George
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引用次数: 77

Abstract

The objective of this study was to identify and model environmental and management factors associated with cattle feces deposition patterns across annual rangeland watersheds in the Sierra Nevada foothills. Daily cattle fecal load accumulation rates were calculated from seasonal fecal loads measured biannually on 40 m 2 permanent transects distributed across a 150.5 ha pasture in Madera County, Calif. during the 4 year period from 1995 through 1998. Associations between daily fecal load per season, livestock management, and environmental factors measured for each transect were determined using a linear mixed effects model. Cattle feces distribution patterns were significantly associated with location of livestock attractants, slope percentage, slope aspect, hydrologic position, and season. Transects located in livestock concentration areas experienced a significantly higher daily fecal load compared to transects outside of these concentration areas (P < 0.001). Percent slope was negatively associated with daily fecal load, but this association had a significant interaction with slope aspect (P = 0.02). Daily fecal load was significantly lower during the wet season compared to the dry season (P = 0.002). Daily fecal loading rates across hydrologic positions were dependent upon season. Our results illustrate the opportunities to reduce the risk of water quality contamination by strategic placement of cattle attractants, and provide a means to predict cattle feces deposition based upon inherent watershed characteristics and management factors.
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牧场牛粪便沉积的时空格局
本研究的目的是确定和模拟与内华达山脉丘陵地区年度牧场流域牛粪便沉积模式相关的环境和管理因素。在1995年至1998年的4年期间,通过在加利福尼亚州马德拉县150.5公顷牧场上分布的40平方米永久样带上每两年测量一次的季节性粪便负荷累积率来计算每日牛粪便负荷积累率。使用线性混合效应模型确定每个样带的每日粪便负荷、牲畜管理和环境因素之间的关系。牛粪便分布格局与家畜引诱剂位置、坡度百分比、坡向、水文位置和季节显著相关。位于牲畜集中区的样带的日粪便负荷显著高于这些集中区以外的样带(P < 0.001)。坡度百分比与日排便量呈负相关,但与坡向有显著的交互作用(P = 0.02)。与干季相比,湿季日粪便负荷显著降低(P = 0.002)。水文位置的日粪便负荷率取决于季节。我们的研究结果说明了通过战略放置牛引诱剂来降低水质污染风险的机会,并提供了一种基于固有流域特征和管理因素预测牛粪便沉积的方法。
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