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Impact of Animal Waste Application on Runoff Water Quality in Field Experimental Plots

机译:动物粪便施用对田间试验区径流水质的影响

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摘要

Animal waste from dairy and poultry operations is an economical and commonly used fertilizer in the state of Louisiana. The application of animal waste to pasture lands not only is a source of fertilizer, but also allows for a convenient method of waste disposal. The disposal of animal wastes on land is a potential nonpoint source of water degradation. Water degradation and human health is a major concern when considering the disposal of large quantities of animal waste. The objective of this research was to determine the effect of animal waste application on biological (fecal coliform, Enterobacter spp. and Escherichia coli) and physical/chemical (temperature, pH, nitrate nitrogen, ammonia nitrogen, phosphate, copper, zinc, and sulfate) characteristics of runoff water in experimental plots. The effects of the application of animal waste have been evaluated by utilizing experimental plots and simulated rainfall events. Samples of runoff water were collected and analyzed for fecal coliforms. Fecal coliforms isolated from these samples were identified to the species level. Chemical analysis was performed following standard test protocols. An analysis of temperature, ammonia nitrogen, nitrate nitrogen, iron, copper, phosphate, potassium, sulfate, zinc and bacterial levels was performed following standard test protocols as presented in Standard Methods for the Examination of Water and Wastewater []. In the experimental plots, less time was required in the tilled broiler litter plots for the measured chemicals to decrease below the initial pre-treatment levels. A decrease of over 50% was noted between the first and second rainfall events for sulfate levels. This decrease was seen after only four simulated rainfall events in tilled broiler litter plots whereas broiler litter plots required eight simulated rainfall events to show this same type of reduction. A reverse trend was seen in the broiler litter plots and the tilled broiler plots for potassium. Bacteria numbers present after the simulated rainfall events were above 200/100 ml of sample water. It can be concluded that: 1) non-point source pollution has a significant effect on bacterial and nutrients levels in runoff water and in water resources; 2) land application of animal waste for soil fertilization makes a significant contribution to water pollution; 3) the use of tilling can significantly reduce the amount of nutrients available in runoff water.
机译:乳制品和家禽生产产生的动物粪便是路易斯安那州的一种经济且常用的肥料。将动物粪便施用到牧场上不仅是肥料的来源,而且还提供了一种方便的废物处置方法。在土地上处置动物废物是水退化的潜在面源。在考虑处理大量动物废物时,水的降解和人类健康是一个主要问题。这项研究的目的是确定动物粪便施用对生物(粪便大肠菌,肠杆菌属和大肠杆菌)和物理/化学(温度,pH,硝酸盐氮,氨氮,磷酸盐,铜,锌和硫酸盐)的影响)实验区的径流水特征。通过利用实验区和模拟降雨事件评估了动物粪便的使用效果。收集径流水样品并分析粪便大肠菌。从这些样品中分离出的粪便大肠菌被鉴定到物种水平。根据标准测试方案进行化学分析。按照《水和废水检查的标准方法》中介绍的标准测试方案对温度,氨氮,硝酸盐氮,铁,铜,磷酸盐,钾,硫酸盐,锌和细菌水平进行分析。在实验区中,在耕种的肉鸡垫料区中,所需的时间减少到低于初始预处理水平所需的时间更少。在第一和第二次降雨事件之间,硫酸盐水平下降了50%以上。在耕种的鸡粪地中仅发生四次模拟降雨事件后,观察到这种下降,而肉鸡粪地中需要八种模拟降雨事件以显示相同类型的减少。在肉鸡垫料区和耕作的肉鸡图上,钾的含量呈相反趋势。模拟降雨事件发生后,细菌数量超过200/100 ml样品水。可以得出以下结论:1)面源污染对径流水和水资源中的细菌和营养水平具有重大影响; 2)将动物粪便土地施用于土壤施肥对水污染有重大贡献; 3)使用耕作可以大大减少径流水中可用的养分。

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