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An integrated sewage treatment pond-wetland challenges conventional process treatment performance

机译:一体化的污水处理池-湿地挑战传统工艺处理性能

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This paper presents a case example showing how integrating a constructed free water surface (FWS) wetland with sewage treatment ponds system can deliver effluent quality results that rival conventional sewage treatment plants (STP). Treatment ponds, commonly used in regional and remote communities, provide low cost and operationally simple wastewater treatment. Despite the benefits of sewage ponds, many systems struggle to achieve modern environmental standards. This paper focuses on the treatment performance of a pond-wetland STP throughout the initial 15-month establishment period of a 2,000 sqm FWS wetland at Helidon Queensland, Australia. The pre-existing STP comprised a two-stage pond with chlorination. In 2013, a two-cell FWS wetland was built to achieve long-term licence compliance at the STP for biological oxygen demand (BOD), total suspended solids (TSS) and pH. Post establishment, the effluent quality out of the wetlands was BOD <10 mg/L; SS < 20 mg/L; pH of 7–8 despite the influent BOD and TSS levels being well above the values used for the system's design. This paper demonstrates that FWS wetlands can easily integrate into existing or new sewage pond systems to deliver high quality and reliable treatment outcomes.
机译:本文以案例为例,说明如何将人工水面湿地与污水处理池系统集成在一起,可以产生与传统污水处理厂不相上下的污水质量结果。通常在区域和偏远社区使用的处理池提供低成本且操作简单的废水处理。尽管有污水池的好处,但许多系统仍在努力达到现代环境标准。本文重点研究在澳大利亚昆士兰州Helidon的2,000平方米FWS湿地建立的最初15个月中,池塘湿地STP的处理性能。先前存在的STP包括一个带氯化作用的两段式池塘。 2013年,建造了两室FWS湿地,以实现STP的长期许可证合规性,以满足生物需氧量(BOD),总悬浮固体(TSS)和pH值的要求。建立后,湿地的出水水质BOD <10 mg / L; SS <20毫克/升;尽管进水BOD和TSS的水平远高于系统设计所使用的值,但pH仍为7-8。本文证明,FWS湿地可以轻松集成到现有或新的污水池系统中,以提供高质量和可靠的处理结果。

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