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Nutrient reduction evaluation of sewage effluent treatment options for small communities

机译:小社区污水处理方案的营养减少评估

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摘要

Small communities that are sewered by either package sewage treatment plants or on-site sewerage facilities are finding that the ground and surface waters are being contaminated. Nitrogen, which typically is not removed in these conventional systems, is a major concern. This project evaluated the capability of four sewage treatment technologies to reduce the amount of nitrogen being discharged in the effluent to the receiving environment. The four sewage treatment processes evaluated include a recirculating sand filter, biofilter, slow sand filter and constructed subsurface flow wetland. These processes were evaluated for their capability to reduce nitrogen, phosphorus, BOD5 and TSS. The primary objective of the project was to evaluate the capability of these treatment processes to reduce nitrogen using biological processes nitrification and denitrification. This paper reports on the performance of these processes to reduce nitrogen. The study demonstrated that the biofilter was capable of removing from a primary treated influent 40% of the total nitrogen. For the same quality influent the recirculating sand filter was capable of removing 35% of the total nitrogen. Secondary treated effluent was fed to the slow sand filter and the subsurface flow wetland. There was a 52% reduction in total nitrogen through the wetland however there was virtually no reduction in total nitrogen through the slow sand filter.
机译:被成套污水处理厂或现场污水处理设施所污水处理的小社区发现地下水和地表水受到污染。在这些常规系统中通常不能除去的氮是一个主要问题。该项目评估了四种污水处理技术的能力,以减少排放到接收环境的废水中氮的排放量。评估的四个污水处理过程包括循环砂滤池,生物滤池,慢砂滤池和人工地下流湿地。对这些工艺的还原氮,磷,BOD5和TSS的能力进行了评估。该项目的主要目的是评估使用生物过程硝化和反硝化处理这些处理过程还原氮的能力。本文报道了这些方法减少氮的性能。该研究表明,该生物滤池能够从经过初步处理的进水中去除40%的总氮。对于相同质量的进水,循环砂滤池能够去除35%的总氮。二级处理后的废水被送入慢速砂滤池和地下流湿地。通过湿地的总氮减少了52%,但是通过慢速砂滤器的总氮几乎没有减少。

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