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The role of SSVF and SSHF beds in concentrated wastewater treatment, design recommendation

机译:SSVF和SSHF床在浓缩废水处理中的作用,设计建议

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摘要

The return flows of reject water from sewage sludge dewatering alter the activated sludge process in a conventional WWTP and increase TN concentration in the final effluent from WWTP. The objective of the investigation carried out was to consider the application of multistage treatment wetland (MTW) for the treatment of reject water from sewage sludge dewatering in a centrifuge (RWC). This paper aims to present the design and performance of each stage of the treatment as well as the efficiency of total MTW. The full scale pilot plant for RWC, consisting of two vertical flow beds (SS VF) working in series, followed by an horizontal flow bed (SS HF), was built in 2008. The applied configuration ensured a very high removal efficiency of principal pollutant (COD - 76.0% and NH_4~+-N - 93.6%). In the investigated facilities, the SS VF beds ensured an effective removal of nitrogen compounds, especially NH _4~+-N, whereas the decomposition of hardly degradable Org-N and COD took place in SS HF. This research illustrates that the MTW could be successfully applied for the treatment of RWC.
机译:污水污泥脱水产生的废水的回流改变了常规污水处理厂的活性污泥工艺,并增加了污水处理厂最终废水中总氮的浓度。进行调查的目的是考虑将多级处理湿地(MTW)用于处理离心机(RWC)中污水污泥脱水产生的废水。本文旨在介绍治疗各阶段的设计和性能以及总MTW的效率。 RWC的大规模中试工厂由两个串联的垂直流化床(SS VF),然后是水平流化床(SS HF)组成。采用的配置确保了非常高的主要污染物去除效率(COD-76.0%和NH_4〜+ -N-93.6%)。在所研究的设施中,SS VF床确保有效去除氮化合物,尤其是NH _4〜+ -N,而难降解的Org-N和COD的分解则在SS HF中发生。该研究表明MTW可以成功地应用于RWC的治疗。

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