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Using a Subsurface Upflow Wetland for Nutrient and Pathogen Removal in an On-site Sewage Treatment and Disposal System

机译:在地下污水处理和处置系统中使用地下溢流湿地去除营养和病原体

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The conventional decentralized sewage collection, treatment, and disposal systems are no longer able to fully respond to the needs of handling removal of nutrients.. Without proper sorption and nitrification/denitrification, a large fraction of nutrient loads such as nitrogen and phosphorus flowing into aquatic system may adversely affect the water quality and public health. Constructed wetland, a cost-effective small-scale wastewater treatment system with low energy and maintenance requirements and operational costs, may well fit the current needs. A subsurface constructed wetland system as designed as a performance-based passive on-site sewage treatment and disposal system (OSTDS) was proved effective after receiving septic wastewater flow. With the aid of a suite of locally adapted and selected plant species, such an OSTDS was configured to handle 189 cubic meters per day (50 GPD) influent using green sorption media at the test center located on the main campus of University of Central Florida (UCF). During the test run, results indicate that wetland 1, which was planted with Canna, achieved the best removal efficiency of 97.1 %, 98.3 %, 99.98 % and near 100.0 % for TN, TP, fecal coli and E.Coli, respectively.
机译:传统的分散式污水收集,处理和处置系统不再能够完全满足处理去除营养物的需求。没有适当的吸附和硝化/反硝化作用,很大一部分营养物(如氮和磷)会流入水生生物系统可能对水质和公共卫生产生不利影响。人工湿地是一种经济高效的小型废水处理系统,具有较低的能源,维护要求和运营成本,很适合当前的需求。地下污水湿地系统设计为基于性能的被动式现场污水处理和处置系统(OSTDS),在接收到化粪池污水后被证明是有效的。借助于一系列本地适应的和选定的植物物种,这样的OSTDS配置为使用位于佛罗里达州中部大学主校区的测试中心的绿色吸附介质处理每天189立方米(50 GPD)的进水。 UCF)。在测试过程中,结果表明,种植了Canna的湿地1对TN,TP,粪便大肠杆菌和大肠杆菌的最佳去除效率分别为97.1%,98.3%,99.98%和接近100.0%。

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