首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Fate of Fecal Indicators in Resource-Oriented Sanitation Systems Using Nitrifying Bio-Treatment
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Fate of Fecal Indicators in Resource-Oriented Sanitation Systems Using Nitrifying Bio-Treatment

机译:使用硝化生物处理技术的资源导向型卫生系统中粪便指标的命运

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摘要

Hygienic fecal treatment in resource-oriented sanitation (ROS) systems is an important concern. Although the addition of nitrifying microorganisms is a sustainable fecal treatment method in ROS systems, it is essential to examine the cleanliness of this method. In this study, we investigated the fate of fecal indicators in source-separated fecal samples through tracking Escherichia coli and total coliforms. The effects of adding different amounts of Nitrosomonas europaea bio-seed, along with a constant amount of Nitrobacter winogradskyi bio-seed, were studied. In intact feces samples, the pathogen population underwent an initial increase, followed by a slight decrease, and eventually became constant. Although the addition of nitrifying microorganisms initially enhanced the pathogen growth rate, it caused the reduction process to become more efficient in the long-term. In addition to a constant concentration of 10,000 cells of N. winogradskyi per 1 g feces, a minimum amount of 3000 and 7000 cells of N. europaea per 1 g feces could completely remove E. coli and total coliforms, respectively, in less than 25 days. Increasing the amount of bio-seeds added can further reduce the time required for total pathogen removal.
机译:资源导向型卫生(ROS)系统中的粪便卫生处理是一个重要的问题。尽管在ROS系统中添加硝化微生物是一种可持续的粪便处理方法,但必须检查该方法的清洁度。在这项研究中,我们通过追踪大肠杆菌和总大肠菌群调查了分离粪便样品中粪便指标的命运。研究了添加不同量的欧洲硝化单胞菌生物种子以及恒定量的硝化硝化细菌生物种子的效果。在完整的粪便样本中,病原体的数量先开始增加,然后略有减少,最终保持恒定。尽管添加硝化微生物最初会提高病原体的生长速度,但从长远来看,它使还原过程变得更加有效。除了每1 g粪便中10,000个恒定浓度的Winogradskyi猪笼草外,每1 g粪便中最少有3000和7,000个欧洲猪笼草分别可以在不到25个的时间内完全清除大肠杆菌和大肠菌群天。增加生物种子的添加量可以进一步减少全部病原体去除所需的时间。

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