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Tower bio-vermifilter system for rural wastewater treatment: bench-scale, pilot-scale, and engineering applications

机译:用于农村废水处理的塔式生物滤池系统:台式,中试和工程应用

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摘要

This paper presents a systematic study of a novel tower bio-vermifilter system for rural wastewater treatment at three scales: bench-scale, pilot-scale, and engineering applications. First, three types of bioreactors were tested in the bench-scale experiments: earthworm bioreactor, soil filter, and one-stage bio-vermifilter. Experiments with the earthworm bioreactor and soil filter determined the optimum earthworm density and soil layer depth to be 12.5 g/L and 40 cm, respectively. The one-stage bio-vermifilter's poor performance in removing nitrogen and phosphorous led to several improvements in the design of the pilot tower bio-vermifilter system including the addition of one anaerobic biofilter for pretreatment, the use of two stages of bio-vermifilters, and the replacement of gravel with ceramsite in the media. Second, a pilot tower bio-vermifilter system built in Yixing City of Jiangsu province showed a good performance in the removal of chemical oxygen demand, ammonium nitrogen, and phosphorous. However, the system's removal of total nitrogen showed considerable fluctuations, possibly due to the low ratio of carbon to nitrogen in its stage two bio-vermifilter. Finally, four operating tower bio-vermifilter systems in three basins of China were evaluated and compared with two other rural sewage treatment technologies in terms of economic costs and pollutant removal performance. Comparison results show that the tower bio-vermifilter system is a versatile system that can work effectively under a variety of natural and socioeconomic conditions at a reasonable cost.
机译:本文从三个方面对台式农村污水处理的新型塔式生物滤池系统进行了系统研究:台式,中试和工程应用。首先,在实验室规模的实验中测试了三种类型的生物反应器:earth生物反应器,土壤滤池和一级生物滤池。 worm生物反应器和土壤过滤器的实验确定最佳the密度和土壤层深度分别为12.5 g / L和40 cm。一阶段式生物滤池在去除氮和磷方面表现不佳,导致中试塔式生物滤池系统的设计有了几处改进,包括增加了一个厌氧生物滤池进行预处理,使用了两级生物滤池,以及在媒体中用陶粒代替砾石。其次,在江苏宜兴市建造的中试塔生物滤池系统在去除化学需氧量,铵态氮和磷方面表现出良好的性能。但是,系统中总氮的去除显示出很大的波动,这可能是由于其第二阶段生物滤池中碳与氮的比率较低。最后,对中国三个流域的四个运行中的塔式生物滤池系统进行了评估,并将其与其他两种农村污水处理技术进行了经济成本和污染物去除性能的比较。比较结果表明,该塔式生物滤池系统是一种多功能系统,可以在各种自然和社会经济条件下以合理的成本有效运行。

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